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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
231

Phytodiversity in Short Rotation Coppice plantations / Phytodiversität in Kurzumtriebsplantagen

Baum, Sarah 08 June 2012 (has links)
No description available.
232

Μορφολογική ασυμμετρία, αναπαραγωγική προσπάθεια, συσσώρευση ανθοκυανινών και φωτοσυνθετική ικανότητα ως δείκτες αρμοστικότητας των φυτών / Morphological asymmetry, reproductive effort, accumulation of anthocyanins and photosynthetic performance as indicators of fitness in plants

Νικηφόρου, Κωνσταντίνος 07 June 2013 (has links)
Η διακυμαινόμενη ασυμμετρία των φύλλων, δηλαδή η τυχαία απόκλιση από τη συμμετρία, θεωρείται ένα μέτρο της καταπόνησης που υπέστησαν κατά την ανάπτυξή τους. Η ασυμμετρία υποδηλώνει αναπτυξιακή αστάθεια και έχει προταθεί ότι συσχετίζεται αρνητικά με την αρμοστικότητα (fitness). Εάν η φωτοσύνθεση αποτελεί έναν έμμεσο δείκτη της αρμοστικότητας, αναμένεται, ένα φύλλο με μειωμένη αρμοστικότητα να είναι και φωτοσυνθετικά υποδεέστερο. Προς επιβεβαίωση αυτού, στην παρούσα διατριβή εξετάστηκαν εκατοντάδες άθικτα φύλλα σε συνολικά 7 διαφορετικά είδη ως προς τη διακυμαινόμενη ασυμμετρία, καθώς και ως προς τη φωτοσυνθετική τους απόδοση (δείκτες PItotal & Fv/Fm). Ο δείκτης PItotal υπολογίζεται με βάση την κινητική ανάλυση των in vivo μεταβολών του φθορισμού της χλωροφύλλης και λαμβάνεται εύκολα και γρήγορα (εντός δευτερολέπτων). Ο δείκτης αυτός θεωρείται ανάλογος της φωτοσυνθετικής αφομοίωσης του CO2 και περιγράφει την απόδοση τόσο του φωτοσυστήματος Ι (PSI) όσο και του φωτοσυστήματος ΙΙ (PSII). Ο παραδοσιακός δείκτης Fv/Fm προκύπτει άμεσα από τις in vivo μετρήσεις φθορισμού της χλωροφύλλης και υποδεικνύει τη μέγιστη φωτοχημική ικανότητα του PSII. Δύο φυτικά είδη (Pistacia lentiscus, Olea europea) επέδειξαν θετική συσχέτιση μεταξύ διακυμαινόμενης ασυμμετρίας και φωτοσυνθετικής ικανότητας, αποτελέσμα αντίθετο από τις αρχικές προβλέψεις. Το μόνο φυτικό είδος που επιβεβαίωσε την αρχική υπόθεση ήταν το Ceratonia siliqua. Στα υπόλοιπα είδη (Arbutus unedo, Cercis siliquastrum, Platanus orientalis, Populus alba) δεν υπήρξε συσχέτιση μεταξύ των δύο παραμέτρων. Τα φυτικά είδη που εμφάνισαν μεγάλες τιμές διακυμαινόμενης ασυμμετρίας ήταν και αυτά στα οποία η ασυμμετρία συχετίστηκε θετικά με τη φωτοσύνθεση. Συμπεραίνεται, εμμέσως ότι η ισχυρή ένταση της καταπόνησης κατά τα πρώιμα στάδια της ανάπτυξης των φύλλων σε μερικά φυτά ενδεχομένως να οδηγεί σε πιο σφριγηλή φωτοσύνθεση κατά την ωριμότητά τους ή σε μεγαλύτερη ικανότητα αντοχής στην καταπόνηση. Αν το συμπέρασμα είναι αληθές, τότε μπορεί μεν η συμμετρία να είναι ομορφότερη, δεν είναι όμως και αποδοτικότερη. Σε γενικές γραμμές, και με βάση τη βιβλιογραφία, ο δείκτης διακυμαινόμενης ασυμμετρίας των φύλλων δεν φαίνεται από μόνος του να επιτυγχάνει αξιόπιστη εκτίμηση της αρμοστικότητας. Για αυτό τον λόγο η χρησιμοποίησή του πρέπει να γίνεται με ιδιαίτερη προσοχή και συνάμα θα πρέπει να συνδυάζεται με σειρά άλλων δεδομένων-δεικτών. Ένας ακόμη δείκτης περιβαλλοντικής καταπόνησης μπορεί να είναι η εποχική συσσώρευση ερυθρών χρωστικών (ανθοκυανινών) που παρατηρείται στα ώριμα φύλλα ορισμένων φυτικών ειδών. Έχει προταθεί ότι οι ανθοκυανίνες των φύλλων λειτουργούν ως «ομπρέλα» προστασίας για τη φωτοσυνθετική συσκευή ενάντια στη φωτοαναστολή. Ως προς την εξέταση αυτής της υπόθεσης, η παρούσα διατριβή χρησιμοποίησε δύο πειραματόφυτα που εμφανίζουν εποχική ερυθρότητα στα φύλλα ορισμένων ατόμων τους. Αυτά είναι το Pistacia lentiscus και το Cistus creticus. Αρχικά όσον αφορά το P. lentiscus, εξετάστηκε η συσχέτιση του βαθμού φωτοπροστασίας με τις πραγματικές συγκεντρώσεις ανθοκυανινών σε φύλλα ατόμων που φύονται σε συνθήκες πεδίου. Το συγκεκριμένο εγχείρημα αποτελεί καινοτομία, αφού μέχρι σήμερα δεν έχει μελετηθεί η φωτοπροστασία σε σχέση με τη διαβάθμιση της ερυθρότητας των φύλλων. Προς αυτή τη κατεύθυνση χρησιμοποιήθηκαν μη επεμβατικές οπτικές μέθοδοι (φάσματα ανακλαστικότητας και φθορισμός χλωροφύλλης) για να αποτιμήσουν τα επίπεδα ανθοκυανινών και χλωροφυλλών καθώς και τη φωτοχημική απόδοση του PS II, σε εκατοντάδες ώριμα φύλλα του φυτικού είδους P. lentiscus (σχίνος). Ο σχίνος κατά τη χειμερινή περίοδο εμφανίζει κόκκινους (όλων των διαβαθμίσεων ερυθρού χρώματος) και πράσινους φαινότυπους. Αντίθετα με την υπόθεση που υποστηρίζει το φωτοπροστατευτικό ρόλο των ανθοκυανινών, η ένταση της ερυθρότητας συσχετίστηκε θετικά με τη φωτοαναστολή και αρνητικά με τα επίπεδα των εμπεριεχόμενων χλωροφυλλών στα φύλλα. Έτσι, ο πιθανός φωτοπροστατευτικός ρόλος των ανθοκυανινών δεν επιβεβαιώθηκε. Ωστόσο, η χειμερινή ερυθρότητα των φύλλων στο σχίνο μπορεί να χρησιμοποιηθεί ως ένας ρεαλιστικός, γρήγορος και μη επεμβατικός τρόπος εντοπισμού ατόμων «ευάλωτων» στη χειμερινή καταπόνηση. Σε μετέπειτα στάδιο στο ίδιο φυτικό είδος, εξετάστηκε in situ η σχέση της χειμερινής ερυθρότητας των φύλλων με σειρά άλλων φωτοσυνθετικών παραμέτρων. Συγκρινόμενοι με τους πράσινους φαινότυπους κατά τη διάρκεια του χειμώνα, οι ερυθροί (ανθοκυανικοί) φαινότυποι παρουσίασαν χαμηλότερες ταχύτητες αφομοίωσης CO2. Βρέθηκε ότι αυτό οφείλεται στη χαμηλή περιεκτικότητα ή/και ενεργότητα του ενζύμου καρβοξυλάση/οξυγονάση της διφωσφορικής ριβουλόζης (Rubisco) των ερυθρών φύλλων, ενώ ταυτόχρονα η στοματική αγωγιμότητα δεν φάνηκε να είναι περιοριστική για τη φωτοσύνθεση. Συγχρόνως, οι ερυθροί φαινότυποι βρέθηκε ότι περιέχουν λιγότερο άζωτο σε σχέση με τους πράσινους. Το εύρημα αυτό πιθανώς συνδέεται με την παρατηρούμενη χαμηλή περιεκτικότητα του ενζύμου Rubisco και τον μειωμένο φωτοσυνθετικό ρυθμό των ερυθρών φύλλων. Η περιορισμένη ικανότητα των αντιδράσεων καρβοξυλίωσης να χρησιμοποιήσουν αναγωγική δύναμη και ηλεκτρόνια, ενδεχομένως εξηγεί και τη μειωμένη απόδοση παγίδευσης φωτονίων του PSII που σημειώνεται στους ερυθρούς φαινοτύπους. Σε οποιαδήποτε περίπτωση, η ανάπτυξη της ανθοκυανικής «ομπρέλας» δεν φαίνεται να αποσοβεί το κίνδυνο φωτοαναστολής της φωτοσύνθεσης στον ερυθρό φαινότυπο του σχίνου. Ως παραπροϊόν της εργασίας με το P. lentiscus, εξετάστηκε η πιθανή επίδραση των φυσικών διακυμάνσεων του αζώτου των φύλλων του στις φωτεινές αντιδράσεις της φωτοσύνθεσης. Συγκεκριμένα, εξετάστηκαν οι φυσιολογικές διακυμάνσεις του αζώτου ώριμων φύλλων σε συνδυασμό με την ανάλυση των αντίστοιχων καμπυλών ταχείας ανόδου του φθορισμού της χλωροφύλλης. Η μαθηματική ανάλυση των καμπυλών έγινε σύμφωνα με το λεγόμενο «JIP-test», γεγονός που επέτρεψε την εκτίμηση της εν δυνάμει δραστηριότητας των δύο φωτοσυστημάτων. Τα αποτελέσματα υπέδειξαν εξάρτηση από την εποχή, επιτρέποντας την εξαγωγή του συμπεράσματος ότι η έλλειψη αζώτου επηρεάζει επιλεκτικά και αρνητικά το PSI, ενώ η αρνητική επίδραση στο PSII περιορίζεται μόνο κατά τη δυσμενή-χειμερινή περίοδο του έτους. Ένας δεύτερος Μεσογειακός θάμνος που εξετάστηκε ήταν το είδος Cistus creticus. Όπως και ο σχίνος, το είδος αυτό επιδεικνύει χαρακτηριστική ενδοειδική ποικιλομορφία στην έκφραση του ανθοκυανικού χαρακτήρα στα φύλλα του. Συγκεκριμένα, μερικά άτομα κοκκινίζουν το χειμώνα, ενώ γειτονικά τους κάτω από τις ίδιες περιβαλλοντικές συνθήκες παραμένουν πράσινα. Η ερυθρότητα των φύλλων διατηρείται μέχρι τα μέσα της άνοιξης. Αυτό το σύστημα απεδείχθη κατάλληλο, όχι μόνο για τη μελέτη του φυσιολογικού ρόλου των ανθοκυανινών αλλά και για τη προσέγγιση οικολογικών ερωτημάτων που σχετίζονται με την αρμοστικότητα (fitness) των δύο φαινότυπων. Επίσης, απεδείχθη πως η φυλλική ερυθρότητα μπορεί να χρησιμοποιηθεί ως ένας οπτικός δείκτης καταπόνησης. Ως τελικές παράμετροι αρμοστικότητας χρησιμοποιήθηκαν, η αναπαραγωγική προσπάθεια ως ο αριθμός ανθέων ανά άτομο, η αναπαραγωγική επιτυχία ως ο αριθμός σπερμάτων ανά άτομο καθώς και η επικονιστική επιτυχία ως ο αριθμός καρπών ανά αριθμό ανθέων και ως ο αριθμός σπερμάτων ανά καρπό. Η μελέτη αυτή, συνδιαζόμενη με σειρά φυσιολογικών δεικτών που εξέτασαν άλλα μέλη της ερευνητικής ομάδας του εργαστηρίου μας έδειξαν ότι, παρόλο που οι φυσιολογικοί δείκτες εμφανίζουν τον ερυθρό φαινότυπο υποδεέστερο, αντίθετα οι αναπαραγωγικοί δείκτες (αποτελέσματα παρούσας διατριβής) δεν παρουσίασαν διαφορές. Εν τέλει, μπορεί ίσως να λεχθεί πως η παρουσία της ερυθρότητας υποδεικνύει μεν «ασθενέστερα» άτομα (που με τη βοήθεια των ανθοκυανινών ίσως επιτυγχάνουν κάποια αντιστάθμιση αυτών των ενδογενών φυσιολογικών και γενετικών αδυναμιών τους), όχι όμως τόσο ασθενικά ώστε να επηρεάζεται αρνητικά η αναπαραγωγική τους επιτυχία και αρμοστικότητα. / Fluctuating asymmetry, small nondirectional deviations from perfect symmetry, has been proposed as a useful indicator of environmental stress. The developmental instability of an organism may induce asymmetric characters. Hence, a high degree of developmental instability, morphologically manifested as fluctuating asymmetry, may indicate less fitness. According to that, less fit individuals are expected to have asymmetric leaves and this may have a negative impact in their photosynthetic yield. In this investigation, fluctuating asymmetry and two photosynthetic indices (PItotal, Fv/Fm) has been measured in a great number of leaves in 7 plant species. PItotal, is an index which expresses the relative photosynthetic performance. It is calculated from the kinetics of fast chlorophyll a fluorescence rise curves according to the so-called «JIP-test». It is considered to be positively correlated to CO2 assimilation rates, hence to productivity based on photosynthesis. Fv/Fm, is a second photosynthetic index which indicates the maximum photosystem II (PSII) photochemical efficiency. Fluctuating asymmetry was positively correlated to both photosynthetic indices in two plant species (Pistacia lentiscus, Olea europea). These results do not support the initial hypothesis of this investigation. Contrary, the species Ceratonia siliqua shows a negative correlation between fluctuating asymmetry and the two photosynthetic indices. Furthermore, in four plant species (Arbutus unedo, Cercis siliquastrum, Platanus orientalis, Populus alba), fluctuating asymmetry and photosynthetic performance were not correlated. It happened that the two species deviating from the initial hypothesis (P. lentiscus and O. europea) display the maximum mean fluctuating asymmetry values among all species included in this investigation. In conclusion, it seems that in some plants whose leaves have experienced high stress as young are more photosynthetically potent as mature. Moreover, these results suggest that the relation between fluctuating asymmetry and photosynthesis is species-specific. Finally, the results show that fluctuating asymmetry may not be a reliable index of developmental instability and stress exposure in plants. Leaf anthocyanins are believed to afford protection against photoinhibition, yet the dependence of protection on actual anthocyanin concentrations has not been investigated. To that aim, non-invasive optical methods (spectral reflectance and chlorophyll fluorescence) were used to assess levels of anthocyanins and chlorophylls as well as photosystem II (PSII) photochemical efficiency in hundreds of leaves from the mastic tree (Pistacia lentiscus). This species displays a continuum of leaf tints during winter from fully green to fully red under field conditions. Contrary to expectations based on the photoprotective hypothesis, the strength of leaf redness was positively correlated to the extent of mid-winter chronic photoinhibition and negatively correlated to leaf chlorophyll contents. Hence, a photoprotective role for anthocyanins is not substantiated. Instead, we argue that winter leaf redness may be used reliably, quickly and non-invasively to locate vulnerable individuals in the field. Given that winter-red leaf phenotypes in the mastic tree are more vulnerable to chronic photoinhibition during the cold season, we asked whether corresponding limitations in leaf gas exchange and carboxylation reactions could also be manifested. During the cold («red») season, net CO2 assimilation rates (A) and stomatal conductances (gs) in the red phenotype were considerably lower than the green phenotype, while leaf internal CO2 concentration (Ci) was higher. The differences were abolished in the «green» period of the year, the dry summer included. Analysis of A versus Ci curves indicated that CO2 assimilation during winter in the red phenotype was limited by Rubisco content and/or activity rather than stomatal conductance. Concomitant to that, leaf nitrogen levels in the red phenotype were considerably lower during the red-leaf period. Hence, we suggest that the inherently low leaf nitrogen levels are linked to the low net photosynthetic rates of the red plants through a decrease in Rubisco content. Accordingly, the reduced capacity of the carboxylation reactions to act as photosynthetic electron sinks may explain the corresponding loss of PSII photon trapping efficiency, which cannot be fully alleviated by the screening effect of the accumulated anthocyanins. In a next step we examined whether leaf nitrogen level affects photosynthetic light reactions. Although it is amply documented that CO2 assimilation rates are positively correlated to leaf nitrogen, corresponding studies on a link between this nutrient and photosynthetic light reactions are scarce, especially under natural field conditions. In this final investigation with mastic tree, we exploited natural variation in nitrogen content of mature leaves of P. lentiscus in conjunction with fast chlorophyll a fluorescence rise (the OJIP curves) analysed according to the so-called «JIP-test», as this was recently modified to allow also for the assessment of events in or around photosystem I (PSI). The results depended on the sampling season, with low nitrogen leaves displaying lower efficiencies for electron flow from intermediate carriers to final PSI acceptors and lower relative pool sizes of these acceptors, both during the autumn and winter. However, parameters related to the PSII activity (i.e. quantum yields for photon trapping and electron flow along PSII, efficiency of a trapped exciton to move an electron from QA- to intermediate carriers) were limited by low nitrogen only during the winter period. As a result, parameters like the quantum yield of total electron flow along both photosystems as well as the total photosynthetic performance index (PItotal) were positively correlated to leaf nitrogen independently of season. We conclude that nitrogen deficiency under field conditions preferentially affects PSI activity while the effects on PSII are evident only during the stressful period of the year. In the last part of this dissertation we asked whether the leaf anthocyanic trait confers long term benefits to the plant and to that aim parameters directly related to fitness, i.e. reproductive effort and success as well as seed germinability were registered in winter-red and green phenotypes of Cistus creticus growing in the field under apparently similar conditions. The results indicated that both phenotypes displayed similar flower numbers, pollination success and seed yield, mass and germinability. As judged by the similar final reproductive output, vulnerability to the winter stress does not render the red phenotype less fit, nor anthocyanin accumulation render it more fit. Although an apparent compensating function for anthocyanins may be inferred, it can not be linked to a protection against photoinhibition of photosynthesis. Moreover, the photosynthetic inferiority of the red phenotype although linked to slightly reduced leaf number, (results from other members of our laboratory) it was not limiting for reproductive effort and success. Regardless of function, winter leaf redness may indicate photosynthetically weak, yet not necessarily less fit individuals in C. creticus.
233

Avaliação do metabolismo oxidativo em Pitcairnia encholirioides L. B. Sm. (Bromeliaceae) in vitro e ex vitro e sob desidratação

Resende, Cristiano Ferrara de 05 March 2012 (has links)
Submitted by Renata Lopes (renatasil82@gmail.com) on 2016-05-23T12:29:44Z No. of bitstreams: 1 cristianoferraraderesende.pdf: 2182147 bytes, checksum: a1f62e02cb7c97296c57ea6461357835 (MD5) / Rejected by Adriana Oliveira (adriana.oliveira@ufjf.edu.br), reason: Primeira letra de cada palavra chave em maiúsculo, a não ser que seja nome próprio on 2016-07-02T11:34:23Z (GMT) / Submitted by Renata Lopes (renatasil82@gmail.com) on 2016-07-04T10:21:07Z No. of bitstreams: 1 cristianoferraraderesende.pdf: 2182147 bytes, checksum: a1f62e02cb7c97296c57ea6461357835 (MD5) / Approved for entry into archive by Adriana Oliveira (adriana.oliveira@ufjf.edu.br) on 2016-07-13T16:11:52Z (GMT) No. of bitstreams: 1 cristianoferraraderesende.pdf: 2182147 bytes, checksum: a1f62e02cb7c97296c57ea6461357835 (MD5) / Made available in DSpace on 2016-07-13T16:11:53Z (GMT). No. of bitstreams: 1 cristianoferraraderesende.pdf: 2182147 bytes, checksum: a1f62e02cb7c97296c57ea6461357835 (MD5) Previous issue date: 2012-03-05 / CAPES - Coordenação de Aperfeiçoamento de Pessoal de Nível Superior / Bromeliaceae é uma família essencialmente neotropical, cujos representantes são muito utilizados para fins paisagísticos. Uma das principais fontes de abastecimento do mercado consumidor de bromélias é o extrativismo o que, associado à destruição do ambiente natural, tem levado a perdas irreparáveis na biodiversidade da família, especialmente na Mata Atlântica, onde cerca de 40% das espécies encontram-se sob alguma categoria de ameaça. Pitcairnia encholirioides L. B. Sm. é uma espécie “criticamente em perigo” de extinção, sendo conhecida somente uma população dessa espécie, com cerca de 900 indivíduos, encontrada em 2004 em um afloramento rochoso muito degradado e sujeito ao fogo e ao pisoteio de animais, no município de Santa Maria Madalena, RJ. A utilização das técnicas de micropropagação pode reverter os riscos de extinção garantindo taxas elevadas de multiplicação, fornecendo material necessário ao mercado consumidor, evitando, dessa forma, o extrativismo das plantas nos seus locais de origem. A instalação e a conservação in vitro de bancos de germoplasma possuem especial importância, garantindo a sobrevivência de espécies raras e/ou endêmicas e fornecendo plantas para iniciativas de reintrodução. A etapa final da micropropagação é a aclimatização ex vitro, realizada após os procedimentos de multiplicação e enraizamento in vitro. A aclimatização é um período crítico para as plantas devido à perda de água, o que causa estresse hídrico e, como consequência, estresse oxidativo, podendo provocar problemas metabólicos e perdas elevadas. No presente trabalho, Pitcairnia encholirioides foi cultivada in vitro por 150 dias em meio de cultura adicionado de dois reguladores de crescimento (GA3 ou ANA), além de duas concentrações de sacarose (15 ou 30 g L-1) e sob dois tipos de vedação dos tubos de ensaio (vedação hermética com tampas e filme de PVC ou vedação com tampas que permitiam trocas gasosas), totalizando 8 tratamentos, período após o qual as plantas foram transferidas para condições ex vitro, em casa de vegetação, permanecendo por mais 180 dias. Dois desses tratamentos foram selecionados para as análises de desidratação, quando suas plantas foram submetidas a 30, 42 ou 54 dias sem irrigação, além do controle irrigado periodicamente, sendo posteriormente reidratadas durante 90 dias. Após os períodos de cultivo in vitro e permanência das plantas em casa de vegetação, foram realizadas análises dos conteúdos de prolina, proteínas totais, atividades das enzimas do metabolismo antioxidativo SOD, CAT, POD e PPO, além 2 dos teores de pigmentos fotossintetizantes. Além desses parâmetros, após desidratação e reidratação foram também avaliados os teores de carboidratos. De maneira geral, o cultivo in vitro em meio adicionado da menor concentração de sacarose e em tubos vedados hermeticamente se mostrou prejudicial, o que foi evidenciado pelo menor acúmulo de prolina, aumentos nas atividades das enzimas antioxidativas e menor acúmulo de pigmentos fotossintéticos. Após o período de aclimatização, não foram encontradas diferenças entre os tratamentos para a maioria dos parâmetros analisados, ou os dados oscilaram de maneira a não permitir uma generalização quanto aos efeitos residuais da sacarose, do tipo de tampa e dos reguladores de crescimento utilizados durante o cultivo in vitro. No período em que as plantas foram submetidas à desidratação progressiva, houve maior acúmulo de prolina e proteínas solúveis totais, além de aumento nos teores de pigmentos fotossintéticos nos tecidos provenientes de plantas cultivadas in vitro em meio contendo 30 g L-1 de sacarose e GA3. Houve também, em geral, queda mais acentuada nas atividades das enzimas em meio suplementado com a menor concentração de sacarose e ANA, além de oscilações nos teores de pigmentos. As relações entre os pigmentos sofreram leve redução em ambos os tratamentos, e os teores de carboidratos solúveis totais, sacarose, açúcares redutores e amido aumentaram com o prolongamento do estresse. Após a reidratação, todas as plantas demonstraram elevada capacidade de recuperação, apresentando em todas as análises realizadas valores muito similares aos das plantas do controle, não submetidas à desidratação. Os resultados obtidos no trabalho permitem concluir que o cultivo in vitro em meio adicionado de 30 g L-1 de sacarose e em tubos de ensaio que permitem trocas gasosas é o mais apropriado para plantas de P. encholirioides. Ademais, a concentração de sacarose adicionada ao meio de cultura também influencia o desenvolvimento das plantas após aclimatização, sendo encontrados melhores resultados em plantas cultivadas nos meios de cultura suplementados com a maior concentração desse carboidrato. Acredita-se que as plantas cultivadas nessas condições apresentariam maior capacidade de sobrevivência ao transplantio e maior resistência a períodos prolongados de estresse hídrico, aos quais, frequentemente, estão submetidas no ambiente natural. / Bromeliaceae is essentially a neotropical family, whose representatives are widely used for landscaping. One major source of supply for the consumer market is the extraction, which coupled with the destruction of the natural environment, has led to irreparable losses in biodiversity of the family, especially in the Atlantic Forest, where about 40% of bromeliad species are under some category of threat. Pitcairnia encholirioides L. B. Sm. is a critically endangered species. In 2004, a unique population of this species was found, with about 900 individuals in a very degraded rocky outcrop, subject to fire and trampling by animals, located in Santa Maria Madalena, RJ. The use of micropropagation can guarantee high multiplication rates, providing necessary material for the consumer market, effectively obviating the extraction of plants in their places of origin. In addition, installation and in vitro conservation of germplasm banks have special importance, ensuring the survival of rare species and/or endemic and providing micropropagated plants for reintroduction initiatives. Following the procedures of in vitro multiplication and rooting, the final stage of micropropagation is the ex vitro acclimatization, a critical period for the plants due to water loss, which causes water stress and, consequently, oxidative stress, which can cause metabolic problems and high losses. In this study, Pitcairnia encholirioides was grown for 150 days in vitro in a culture medium supplemented with two growth regulators (GA3 or NAA), and two concentrations of sucrose (15 or 30 g L-1) in two types of sealing of test tubes (hermetic seal with lids and PVC film and seal with lids that allowed gas exchange), totaling eight treatments, after which the plants were transferred to ex vitro conditions in a greenhouse, staying for more than 180 days. Two of these treatments were selected for analysis of dehydration when their plants were subjected to 30, 42 or 54 days without irrigation, apart from control irrigated periodically, being subsequently rehydrated for 90 days. After periods of in vitro cultivation and maintenance of the plants in the greenhouse, they were analyzed for proline content, total protein, activities of antioxidant metabolism enzymes SOD, CAT, POD and PPO, besides the content of photosynthetic pigments. Apart from these parameters, after dehydration and rehydration, levels of carbohydrates were also assessed. In general, the in vitro culture in medium containing the lowest concentration of sucrose and hermetically sealed tubes proved to be harmful, which was evidenced by lower levels of proline, increased 4 activity of antioxidant enzymes and lower accumulation of photosynthetic pigments. After the acclimatization period, no differences were found between treatments for most parameters, or data varied so as to not allow a generalization about the residual effects of sucrose, the type of cover and of the growth regulators used in the in vitro cultivation. During the period in which the plants were subjected to water stress, higher accumulation of proline and total soluble proteins occurred, and also increased levels of photosynthetic pigments in tissues from plants grown in vitro in medium containing 30 g L-1 sucrose and GA3. There was also, in general, sharper decrease in enzyme activity in medium with the lowest concentration of sucrose and NAA, as well as fluctuations in pigment. Relations between pigments suffered slight reduction in both treatments, and total soluble carbohydrates, sucrose, reducing sugars and starch increased with increasing stress. After rehydration, all plants showed high resilience, presenting for all analyzes values very similar to those of control plants not subjected to dehydration. The results indicate that the in vitro culture in medium supplemented with 30 g L-1 sucrose and tubes that allow gas exchange are the most appropriate. Moreover, the concentration of sucrose added to the culture medium also influences the development of plants after acclimatization, with best results found in plants grown in media supplemented with higher amount of this carbohydrate. It is believed that plants grown under these conditions would have higher capacity of resistance to transplanting and could survive for prolonged periods of water stress, which are often subjected in the natural environment.
234

Development of Biotechnological Tools for the Genetic Improvement of Pepino (Solanum Muricatum) and Tree Tomato (S.betaceum)

Pacheco Toabanda, Juan Enrique 07 November 2022 (has links)
Tesis por compendio / [ES] El pepino dulce (Solanum muricatum) y el tomate de árbol (S. betaceum) pertenecen al grupo de cultivos de la familia Solanaceae. Estos dos cultivos son originarios de América del Sur y actualmente se cultivan en varios países con climas tropicales, subtropicales y mediterráneos. Han sido infrautilizados durante mucho tiempo y han cobrado relevancia solo en los últimos años debido a su alta calidad nutricional. El pepino dulce exhibe niveles significativos de potasio, vitamina C y carotenoides y se informa que presenta propiedades antioxidantes, antidiabéticas, antiinflamatorias y antitumorales. Sus frutos se pueden consumir tanto como postre o en ensaladas. El tomate de árbol también destaca por su alto contenido en compuestos bioactivos como carotenoides, antocianinas, flavonoides y vitaminas. Varios productos como jugos, mermeladas, salsas y productos farmacéuticos son elaborados a partir de sus frutos. Debido a que estos cultivos se han introducido en nuevas regiones, donde pueden estar expuestos a estreses bióticos y abióticos que pueden amenazar su producción, y dado que el pepino dulce se ve especialmente afectado por la escasez de agua, fue necesario realizar un estudio para determinar la respuesta de siete cultivares de pepino dulce a parámetros fisiológicos y bioquímicos al estrés por sequía. Este trabajo puede ayudar a desarrollar programas de selección y mejoramiento que permitan generar nuevas variedades más tolerantes a la sequía. Por otro lado, en los países de clima mediterráneo, el pepino dulce se cultiva como cultivo protegido, aplicando las mismas técnicas agrícolas que otras solanáceas como el tomate y el pimiento. Estos sistemas agrícolas también brindan condiciones óptimas para el desarrollo de enfermedades como Fusarium oxysporum f. sp. lycopersici (FOL), Verticillium dahliae (VE), virus del mosaico del pepino (PepMV) y virus del mosaico del tomate (ToMV), que potencialmente podrían causar grandes daños a los cultivos de pepino dulce. Por tal motivo, se realizó un estudio para evaluar la respuesta de una colección de pepino dulce y sus parientes silvestres contra estas cuatro enfermedades, y encontrar fuentes de resistencia/tolerancia a estos patógenos. Aunque el tomate de árbol es un cultivo frutal importante debido a su valor nutricional y efectos beneficiosos para la salud, actualmente no hay información genómica y transcriptómica disponible públicamente. Por lo tanto, fue fundamental secuenciar el transcriptoma de dos cultivares de tomate de árbol con frutos morados (A21) y frutos anaranjados (A23). Estos dos cultivares han sido ampliamente utilizados y cultivados comercialmente en países de la región andina como Ecuador y Colombia. La obtención del primer transcriptoma de tomate de árbol ha permitido realizar un estudio comparativo entre el tomate de árbol y sus especies cercanas, tomate y patata, identificar genes implicados en la ruta de biosíntesis de carotenoides y desarrollar marcadores de polimorfismo de nucleótido único (SNP). En general, esta Tesis Doctoral aporta información relevante sobre la respuesta del pepino a diversos estreses ambientales, que puede ser utilizada para el desarrollo de nuevas variedades de pepino resistentes a múltiples estreses. Mientras que en tomate de árbol, el desarrollo de herramientas genómicas acelerará los programas de mejoramiento. / [CA] El cogombre dolç (Solanum muricatum) i tomata d'arbre (S. betaceum) pertanyen al grup de cultius de la família Solanaceae. Aquests dos cultius són originaris d'Amèrica del Sud i actualment es cultiven en diversos països amb climes tropicals, subtropicals i mediterranis. Han sigut infrautilitzats durant molt de temps i han cobrat rellevància només en els últims anys a causa de la seua alta qualitat nutricional. El cogombre dolç exhibeix nivells significatius de potassi, vitamina C i carotenoides i s'informa que presenta propietats antioxidants, antidiabètiques, antiinflamatòries i antitumorals. Els seus fruits es poden consumir tant com postres o en ensalades. La tomaca d'arbre també destaca pel seu alt contingut en compostos bioactivos com carotenoides, antocianinas, flavonoides i vitamines. Dels seus fruits s'elaboren diversos productes com a sucs, melmelades, salses i productes farmacèutics. Pel fet que aquests cultius s'han introduït en noves regions on poden estar exposats a estressos biòtics i abiòtics que poden amenaçar la seua producció, atés que el cogombre es veu especialment afectat per l'escassetat d'aigua, va ser necessari realitzar un estudi per a determinar la resposta de set cultivars de cogombre dolç a paràmetres fisiològics i bioquímicos a l'estrés per sequera. Aquest treball pot ajudar a desenvolupar programes de selecció i millorament que permeten generar noves varietats més tolerants a la sequera. D'altra banda, als països de clima mediterrani, el cogombre dolç es cultiva com a cultiu protegit, aplicant les mateixes tècniques agrícoles que unes altres solanáceas com la tomaca i el pimentó. Aquests sistemes agrícoles també brinden condicions òptimes per al desenvolupament de malalties com Fusarium oxysporum f. sp. lycopersici (FOL), Verticillium dahliae (VE), virus del mosaic del cogombre (PepMV) i virus del mosaic de la tomaca (ToMV), que potencialment podrien causar grans danys als cultius de cogombre dolç. Per tal motiu, es va realitzar un estudi per a avaluar la resposta d'una col·lecció de cogombre dolç i els seus parents silvestres contra aquestes quatre malalties, i trobar fonts de resistència/tolerància a aquests patògens. Encara que la tomaca d'arbre és un cultiu fruiter important a causa del seu valor nutricional i efectes beneficiosos per a la salut, actualment no hi ha informació genòmica i transcriptómica disponible públicament. Per tant, va ser fonamental seqüenciar el transcriptoma de dues cultivars de tomaca d'arbre amb fruits morats (A21) i fruits ataronjats (A23). Aquestes dues cultivars han sigut àmpliament utilitzats i cultivats comercialment en països de la regió andina com l'Equador i Colòmbia. L'obtenció del primer transcriptoma de tomaca d'arbre ha permés realitzar un estudi comparatiu entre la tomaca d'arbre i les seues espècies pròximes, tomaca i creïlla, identificar gens implicats en la ruta de biosíntesi de carotenoides i desenvolupar marcadors de polimorfisme de nucleòtid únic (SNP). En general, aquesta Tesi Doctoral aporta informació rellevant sobre la resposta del cogombre a diversos estressos ambientals, que pot ser utilitzada per al desenvolupament de noves varietats de cogombre resistents a múltiples estressos. Mentre que en tomaca d'arbre, el desenvolupament d'eines genòmiques accelerarà els programes de millorament. / [EN] Pepino (Solanum muricatum) and tree tomato (S. betaceum) belong to the group of crops of the Solanaceae family. These two crops are native to South America and currently are grown in various countries with tropical, subtropical and Mediterranean climates. They have been underutilized for a long time and have become relevant only in recent years due to their high nutritional quality. Pepino exhibit significant levels of potassium, vitamin C and carotenoids and it is reported to present antioxidant, antidiabetic, anti-inflammatory and antitumor properties. Its fruits can be consumed both as a dessert or in salads. Tree tomato also highlights high content of bioactive compounds such as carotenoids, anthocyanins, flavonoids and vitamins. Severals products such as juices, jams, sauces and pharmaceutical products are made from its fruits. Due to these crops have been introduced into new regions, where they may be exposed to biotic and abiotic stresses that can threaten their production, and since pepino is specially affected by water scarcity, a study was needed to determine the response of seven pepino cultivars to physiological and biochemical parameters to drought stress. This work can help develop selection and improvement programs that allow the generation of new varieties that are more tolerant to drought. On the other hand, in countries with a Mediterranean climate, pepino is grown as a protected crop, applying the same agricultural techniques as other solanaceous plants such as tomato and pepper. These agricultural systems also provide optimal conditions for the development of diseases such as Fusarium oxysporum f. sp. lycopersici (FOL), Verticillium dahliae (VE), pepino mosaic virus (PepMV) and tomato mosaic virus (ToMV), which could potentially cause great damage to pepino crops. For this reason, a study was performed to evaluate the response of a collection of pepino and their wild relatives against these four diseases, and find sources of resistance/tolerance to those pathogens. Although tree tomato is an important fruit crop due to its nutritional value and beneficial health effects, there is currently no publicly available genomic and transcriptomic information. Therefore, it was essential to sequence the transcriptome of two tree tomato cultivars with purple fruits (A21) and orange fruits (A23). These two cultivars have been widely used and cultivated commercially in countries of the Andean region such as Ecuador and Colombia. Obtaining the first tree tomato transcriptome has made it possible to perform a comparative study between tree tomato and its close species, tomato and potato, identify genes involved in the carotenoid biosynthesis pathway, and develop single nucleotide polymorphism (SNP) markers. In general, this Doctoral Thesis provides relevant information on the response of pepino to various environmental stresses, which can be used for the development of new varieties of pepino resistant to multiple stresses. While in tree tomato, the development of genomic tools will accelerating up breeding programs. / Pacheco Toabanda, JE. (2022). Development of Biotechnological Tools for the Genetic Improvement of Pepino (Solanum Muricatum) and Tree Tomato (S.betaceum) [Tesis doctoral]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/189205 / Compendio
235

Improving photofermentative hydrogen production through metabolic engineering and DOE (Design of Experiments)

Liu, Yuan 03 1900 (has links)
A l’heure actuelle, les biocarburants renouvelables et qui ne nuit pas à l'environnement sont à l'étude intensive en raison de l'augmentation des problèmes de santé et de la diminution des combustibles fossiles. H2 est l'un des candidats les plus prometteurs en raison de ses caractéristiques uniques, telles que la densité d'énergie élevée et la génération faible ou inexistante de polluants. Une façon attrayante pour produire la H2 est par les bactéries photosynthétiques qui peuvent capter l'énergie lumineuse pour actionner la production H2 avec leur système de nitrogénase. L'objectif principal de cette étude était d'améliorer le rendement de H2 des bactéries photosynthétiques pourpres non sulfureuses utilisant une combinaison de génie métabolique et le plan des expériences. Une hypothèse est que le rendement en H2 pourrait être améliorée par la redirection de flux de cycle du Calvin-Benson-Bassham envers du système de nitrogénase qui catalyse la réduction des protons en H2. Ainsi, un PRK, phosphoribulose kinase, mutant « knock-out » de Rhodobacter capsulatus JP91 a été créé. L’analyse de la croissance sur des différentes sources de carbone a montré que ce mutant ne peut croître qu’avec l’acétate, sans toutefois produire d' H2. Un mutant spontané, YL1, a été récupéré qui a retenu l'cbbP (codant pour PRK) mutation d'origine, mais qui avait acquis la capacité de se développer sur le glucose et produire H2. Une étude de la production H2 sous différents niveaux d'éclairage a montré que le rendement d’YL1 était de 20-40% supérieure à la souche type sauvage JP91. Cependant, il n'y avait pas d'amélioration notable du taux de production de H2. Une étude cinétique a montré que la croissance et la production d'hydrogène sont fortement liées avec des électrons à partir du glucose principalement dirigés vers la production de H2 et la formation de la biomasse. Sous des intensités lumineuses faibles à intermédiaires, la production d'acides organiques est importante, ce qui suggère une nouvelle amélioration additionnel du rendement H2 pourrait être possible grâce à l'optimisation des processus. Dans une série d'expériences associées, un autre mutant spontané, YL2, qui a un phénotype similaire à YL1, a été testé pour la croissance dans un milieu contenant de l'ammonium. Les résultats ont montré que YL2 ne peut croître que avec de l'acétate comme source de carbone, encore une fois, sans produire de H2. Une incubation prolongée dans les milieux qui ne supportent pas la croissance de YL2 a permis l'isolement de deux mutants spontanés secondaires intéressants, YL3 et YL4. L'analyse par empreint du pied Western a montré que les deux souches ont, dans une gamme de concentrations d'ammonium, l'expression constitutive de la nitrogénase. Les génomes d’YL2, YL3 et YL4 ont été séquencés afin de trouver les mutations responsables de ce phénomène. Fait intéressant, les mutations de nifA1 et nifA2 ont été trouvés dans les deux YL3 et YL4. Il est probable qu'un changement conformationnel de NifA modifie l'interaction protéine-protéine entre NifA et PII protéines (telles que GlnB ou GlnK), lui permettant d'échapper à la régulation par l'ammonium, et donc d'être capable d'activer la transcription de la nitrogénase en présence d'ammonium. On ignore comment le nitrogénase synthétisé est capable de maintenir son activité parce qu’en théorie, il devrait également être soumis à une régulation post-traductionnelle par ammonium. Une autre preuve pourrait être obtenue par l'étude du transcriptome d’YL3 et YL4. Une première étude sur la production d’ H2 par YL3 et YL4 ont montré qu'ils sont capables d’une beaucoup plus grande production d'hydrogène que JP91 en milieu d'ammonium, qui ouvre la porte pour les études futures avec ces souches en utilisant des déchets contenant de l'ammonium en tant que substrats. Enfin, le reformage biologique de l'éthanol à H2 avec la bactérie photosynthétique, Rhodopseudomonas palustris CGA009 a été examiné. La production d'éthanol avec fermentation utilisant des ressources renouvelables microbiennes a été traitée comme une technique mature. Cependant, la plupart des études du reformage de l'éthanol à H2 se sont concentrés sur le reformage chimique à la vapeur, ce qui nécessite généralement une haute charge énergetique et résultats dans les émissions de gaz toxiques. Ainsi le reformage biologique de l'éthanol à H2 avec des bactéries photosynthétiques, qui peuvent capturer la lumière pour répondre aux besoins énergétiques de cette réaction, semble d’être plus prometteuse. Une étude précédente a démontré la production d'hydrogène à partir d'éthanol, toutefois, le rendement ou la durée de cette réaction n'a pas été examiné. Une analyse RSM (méthode de surface de réponse) a été réalisée dans laquelle les concentrations de trois facteurs principaux, l'intensité lumineuse, de l'éthanol et du glutamate ont été variés. Nos résultats ont montré que près de 2 moles de H2 peuvent être obtenus à partir d'une mole d'éthanol, 33% de ce qui est théoriquement possible. / Currently, renewable and environmentally friendly biofuels are under intensive study due to increasing health concerns and diminishing fossil fuels. H2 is one of the most promising candidates due to its unique characteristics, such as a high energy density and low to non-existent generation of pollutants. One attractive way to produce H2 is through photosynthetic bacteria which can capture light energy to drive H2 production with their nitrogenase system. The major aim of this study was to improve H2 yield of the purple non-sulfur photosynthetic bacteria using a combination of metabolic engineering and design of experiments. One hypothesis was that H2 yield could be improved by redirection of Calvin-Benson-Bassham cycle flux to the nitrogenase system which catalyzes the reduction of protons to H2. Thus, a PRK, phosphoribulose kinase, knock out mutant of Rhodobacter capsulatus JP91 was created. Analysis of growth with different carbon sources showed that this mutant could only grow in acetate medium without, however, producing any H2. A spontaneous mutant, YL1, was recovered which retained the original cbbP (encoding PRK) mutation, but which had gained the ability to grow on glucose and produce H2. A study of H2 production under different illumination levels showed that the yield of YL1 was 20-40% greater than the wild type JP91 strain. However, there was no appreciable improvement of the H2 production rate. A kinetic study showed that growth and hydrogen production are strongly linked with electrons from glucose being mostly directed to H2 production and biomass formation. Under low to intermediate light intensities, the production of organic acids was significant, suggesting further improvement of H2 yield is possible by process optimization. In a related series of experiments, another spontaneous mutant, YL2, which has a similar phenotype to YL1, was tested for growth in ammonium-containing media. The results showed that YL2 could only grow with acetate as carbon source, again, without producing any H2. Prolonged incubation in media not supporting growth of YL2 enabled the isolation of two interesting secondary spontaneous mutants, YL3 and YL4. Western blot analysis showed that both strains had constitutive nitrogenase expression under a range of ammonium concentrations. The genomes of YL2, YL3 and YL4 were sequenced in order to find the mutations responsible for this phenomenon. Interestingly, mutations of nifA1 and nifA2 were found in both YL3 and YL4. It is likely that a conformational change of NifA alters the protein-protein interaction between NifA and PII proteins (such as GlnB or GlnK), enabling it to escape regulation by ammonium and thus to be capable of activating nitrogenase transcription in the presence of ammonium. It is not clear how the synthesized nitrogenase is able to maintain its activity since in theory it should also be subject to posttranslational regulation by ammonium. Further evidence could be obtained by studying the transcriptome of YL3 and YL4. An initial study of H2 production by YL3 and YL4 showed that they are capable of much greater hydrogen production than JP91 in ammonium medium, which opens the door for future studies with these strains using ammonium-containing wastes as substrates. Finally, the biological reformation of ethanol to H2 with the photosynthetic bacterium, Rhodopseudomonas palustris CGA009 was examined. Ethanol production with microbial fermentation using renewable resources has been treated as a mature technique. However, most studies of the reformation of ethanol to H2 have focused on chemical steam reforming, which usually requires a high energy input and results in toxic gas emission. Thus biological reformation of ethanol to H2 with photosynthetic bacteria, which can capture light to meet the energy requirement of this reaction, seems to be more promising. A previous study had demonstrated hydrogen production from ethanol, however, the yield or the duration of this reaction were not examined. A RSM (response surface methodology) analysis was carried out in which three key factors, light intensity, ethanol and glutamate concentrations were varied. Our results showed that nearly 2 moles of H2 could be obtained from one mole of ethanol, 33% of what is theoretically possible.
236

Multispectral imaging of Sphagnum canopies: measuring the spectral response of three indicator species to a fluctuating water table at Burns Bog

Elves, Andrew 02 May 2022 (has links)
Northern Canadian peatlands contain vast deposits of carbon. It is with growing urgency that we seek a better understanding of their assimilative capacity. Assimilative capacity and peat accumulation in raised bogs are linked to primary productivity of resident Sphagnum species. Understanding moisture-mediated photosynthesis of Sphagnum spp. is central to understanding peat production rates. The relationship between depth to water table fluctuation and spectral reflectance of Sphagnum moss was investigated using multispectral imaging at a recovering raised bog on the southwest coast of British Columbia, Canada. Burns Bog is a temperate oceanic ombrotrophic bog. Three ecohydrological indicator species of moss were chosen for monitoring: S. capillifolium, S. papillosum, and S. cuspidatum. Three spectral vegetation indices (SVIs) were used to characterize Sphagnum productivity: the normalized difference vegetation index 660, the chlorophyll index, and the photochemical reflectance index. In terms of spectral sensitivity and the appropriateness of SVIs to species and field setting, we found better performance for the normalized difference vegetation index 660 in the discrimination of moisture mediated species-specific reflectance signals. The role that spatiotemporal scale and spectral mixing can have on reflectance signal fidelity was tested. We were specifically interested in the relationship between changes in the local water table and Sphagnum reflectance response, and whether shifting between close spatial scales can affect the statistical strength of this relationship. We found a loss of statistical significance when shifting from the species-specific cm2 scale to the spectrally mixed dm2 scale. This spatiospectral uncoupling of the moisture mediated reflectance signal has implications for the accuracy and reliability of upscaling from plot based measurements. In terms of species-specific moisture mediated reflectance signals, we were able to effectively discriminate between the three indicator species of Sphagnum along the hummock-to-hollow gradient. We were also able to confirm Sphagnum productivity and growth outside of the vascular growing season, establishing clear patterns of reflectance correlated with changes in the local moisture regime. The strongest relationships for moisture mediated Sphagnum productivity were found in the hummock forming species S. capillifolium. Each indicator Sphagnum spp. of peat has distinct functional traits adapted to its preferred position along the ecohydrological gradient. We also discovered moisture mediated and species-specific reflectance phenologies. These phenospectral characteristics of Sphagnum can inform future monitoring work, including the creation of a regionally specific phenospectral library. It’s recommended that further close scale multispectral monitoring be carried out incorporating more species of moss, as well as invasive and upland species of concern. Pervasive vascular reflectance bias in remote sensing products has implications for the reliability of peatland modelling. Avoiding vascular bias, targeted spectral monitoring of Sphagnum indicator species provides a more reliable measure for the modelling of peatland productivity and carbon assimilation estimates. / Graduate

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