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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.
11

Respostas produtivas e expressão gênica induzidas por períodos de fornecimento de ractopamina para suínos em terminação / Production responses and gene expression induced by ractopamine feeding duration for finishing pigs

Almeida, Vivian Vezzoni de 31 August 2012 (has links)
O agonista beta-adrenérgico ractopamina (RAC) modifica a composição da carcaça suína por aumentar a massa muscular e reduzir a deposição de gordura. O objetivo neste estudo foi avaliar os efeitos do tempo de fornecimento de RAC sobre o desempenho, concentração de ureia plasmática (CUP), características de carcaça e expressão gênica dos receptores beta- adrenérgicos (beta-AR) e das isoformas da cadeia pesada de miosina (MyHC) em suínos em terminação. Oitenta suínos, machos castrados (PV inicial = 69,42 ± 1,24 kg), foram utilizados em um experimento em blocos completos casualizados com cinco tratamentos, oito repetições por tratamento e dois animais por unidade experimental (baia). Os tratamentos consistiram de rações sem RAC (controle) ou com 10 ppm de RAC fornecidas por 7, 14, 21 ou 28 dias préabate. O PV individual e o consumo de ração por baia foram obtidos para determinar o ganho diário de peso (GDP), o consumo diário de ração (CDR) e a conversão alimentar (CA). Amostras de sangue foram coletadas para determinação da CUP. No final do experimento, os animais (PV final = 102,46 ± 1,44 kg) foram abatidos e amostras de pelos e do músculo Longissimus dorsi coletadas. As carcaças foram avaliadas 24 horas post-mortem. As amostras de pelos foram utilizadas para detecção da mutação no gene do receptor de rianodina do tipo 1 (RYR1). A expressão gênica dos beta-AR (subtipos beta1 e beta2) e das isoformas MyHC (I, IIa, IIx/d e IIb) foi quantificada nas amostras de músculo. As análises estatísticas foram realizadas apenas com os animais homozigotos dominantes para a mutação no gene do RYR1. O aumento no período de fornecimento de RAC não afetou (P > 0,05) o PV final, o GDP e o CDR, porém resultou em melhora linear (P < 0,01) na CA. Melhoras (P < 0,05) nas médias semanais de GDP e CA foram observadas durante os primeiros 21 dias de fornecimento de RAC, no entanto, o crescimento animal declinou (P < 0,05) na 4ª semana de tratamento. A CUP apresentou efeito quadrático (P < 0,01) com o aumento na duração do fornecimento de RAC. Houve aumento linear (P <= 0,01) no peso da carcaça quente, na profundidade do músculo Longissimus dorsi, na área de olho de lombo e na relação carne:gordura com o aumento na duração do tratamento com RAC. Não foram detectados efeitos da RAC (P > 0,05) sobre a expressão gênica dos beta1-AR e das isoformas MyHC IIa e MyHC IIx/d, porém o aumento no período de fornecimento de RAC tendeu a reduzir linearmente (P = 0,08) a expressão gênica dos beta2-AR. Embora os níveis de RNAm da isoforma MyHC I tenham sido reduzidos linearmente (P < 0,01), a expressão gênica da isoforma MyHC IIb aumentou linearmente (P < 0,01) com o aumento na duração do tratamento com RAC. Portanto, as melhores respostas de desempenho e carcaça ocorreram quando a RAC foi fornecida por 21 e 28 dias, respectivamente. Além disso, o agonista alterou a expressão gênica das isoformas MyHC, e é possível que a ação da RAC esteja relacionada com a população de beta2-AR. / The beta-adrenergic agonist ractopamine (RAC) modifies the swine carcass composition by increasing muscle mass and decreasing fat deposition. The objective in this study was to evaluate the effects of RAC feeding duration on performance, plasma urea nitrogen (PUN) concentration, carcass traits, and gene expression of beta-adrenergic receptors (beta-AR) and myosin heavy chain (MyHC) isoforms in finishing pigs. Eighty barrows (initial BW = 69.42 ± 1.24 kg) were used in a randomized complete block design experiment with five treatments, eight replicates per treatment, and two animals per experimental unit (pen). The dietary treatments consisted of diets containing no RAC (control) or 10 ppm RAC fed for 7, 14, 21, or 28 days before slaughter. Individual pig BW and pen feed disappearance were obtained to determine average daily gain (ADG), average daily feed intake (ADFI), and feed to gain ratio (F:G). Blood samples were collected for determination of PUN concentrations. At the end of the experiment, pigs (final BW = 102.46 ± 1.44 kg) were slaughtered and hair and Longissimus dorsi muscle samples collected. The carcasses were evaluated 24 hours postmortem. Hair samples were used to detect the mutation of the ryanodine receptor type 1 (RYR1) gene. Gene expression of beta-AR (beta1- and beta2-subtypes) and MyHC isoforms (I, IIa, IIx/d, and IIb) was quantified in the muscle samples. Statistical analyses were performed using only the homozygous dominant pigs for the RYR1 gene mutation. Increasing RAC feeding period did not affect (P > 0.05) final BW, ADG, and ADFI, but resulted in a linear improvement (P < 0.01) in F:G. Average weekly improvements (P < 0.05) in ADG and F:G were observed during the first 21 days of RAC feeding, however, animal growth declined (P < 0.05) in the 4th week of treatment. The PUN concentrations showed a quadratic effect (P < 0.01) as RAC feeding duration increased. There were linear increases (P <= 0.01) in hot carcass weight, Longissimus dorsi muscle depth, loin eye area, and muscle to fat ratio as RAC treatment duration increased. No effects of RAC feeding (P > 0.05) were detected for beta1-AR and for isoforms of MyHC IIa and MyHC IIx/d gene expression, but increasing RAC feeding period tended to linearly decrease (P = 0.08) beta2-AR gene expression. Even though mRNA levels of MyHC I isoform decreased linearly (P < 0.01), gene expression of MyHC IIb isoform increased linearly (P < 0.01) as RAC treatment duration increased. Therefore, greater growth and carcass responses occurred when RAC was fed for 21 and 28 days, respectively. Furthermore, the agonist altered the MyHC gene expression and the RAC action may be related to the beta2-AR population.
12

Efeitos do período de administração de cloridrato de zilpaterol e do tempo de confinamento no desempenho, características de carcaça e qualidade de carne de bovinos Nelore / Effects of zilpaterol hydrochloride feeding time and feedlot days on performance, carcass characteristics and meat quality of Nellore bulls

Santos, Antonio Carlos Ramos dos 27 February 2015 (has links)
O objetivo desta pesquisa foi avaliar os efeitos do período de administração de cloridrato de zilpaterol (CZ) e do tempo de confinamento no desempenho, características de carcaça, rendimento de cortes cárneos comerciais e na qualidade de carne de bovinos Nelore. Foram utilizados 96 bovinos machos não castrados da raça Nelore, com peso vivo inicial de 377 ± 25,1 kg. O delineamento utilizado foi o de blocos completos casualizados em esquema fatorial 4 × 2, sendo quatro períodos de administração com CZ (0, 20, 30 ou 40 dias) e dois tempos de confinamento (90 ou 117 dias). O período de suplementação com CZ (8,33 mg/kg de matéria seca total) iniciou-se 23, 33 e 43 dias antes do abate. Nos últimos três dias que antecederam o abate todos os animais foram alimentados com a dieta sem CZ, respeitando o período de carência do produto. O contrafilé (músculo Longissimus thoracis et lumborum) de todas as meias-carcaças esquerdas foi amostrado para as análises de qualidade de carne. Com exceção da área do olho de lombo obtida por ultrassom (P = 0,02) e área do olho de lombo medida na carcaça resfriada (P = 0,05), não houve interação entre período de administração de CZ e tempo de confinamento (P > 0,10). O aumento do período de suplementação com CZ proporcionou aumento linear da eficiência alimentar (P < 0,01), peso de carcaça quente (P < 0,01), rendimento de carcaça quente (P < 0,01) e rendimento de carne desossada (P < 0,01). Os bifes de contrafilé de animais suplementados com CZ apresentaram maior conteúdo percentual de proteína (P < 0,01), enquanto que a espessura de gordura subcutânea (P = 0,04) e o conteúdo percentual de lipídios intramusculares (P < 0,01) diminuíram com administração de CZ. O valor percentual de ácidos graxos poliinsaturados totais aumentou (P = 0,01) com a administração de CZ, sendo atribuído principalmente ao aumento percentual do ácido linoleico (18:2 cis-9, cis-12; P = 0,01) e ácido araquidônico (20:4 n-6; P < 0,01). A força de cisalhamento das amostras de contrafilé aumentou (P < 0,01) com a inclusão de CZ na dieta, sendo esse resultado independente do tempo de maturação (7, 14, 21 ou 28 dias post-mortem). Observou-se interação entre período de administração de CZ e tempo de maturação (14 ou 28 dias post-mortem) para escore de maciez inicial (P = 0,03) e escore de tecido conjuntivo (P < 0,01), onde o processo de maturação melhorou mais a carne de animais controle do que a carne de animais suplementados com CZ. Mesmo com a diminuição da maciez, os bifes de animais suplementados com CZ foram considerados macios pelos provadores do painel sensorial. O CZ melhora a eficiência de produção de carne de bovinos Nelore, proporcionando aumento na massa muscular dos animais tratados sem alterar o consumo de matéria seca. Por outro lado, o tratamento dos animais com CZ reduz a maciez e a velocidade do processo de amaciamento do contrafilé. / The objective of this research was to evaluate the effects of zilpaterol hydrochloride (ZH) feeding time and feedlot days on performance, carcass characteristics, yield commercial cuts and meat quality of Nellore bulls. Ninety six Nellore bulls with initial body weight of 377 ± 25.1 kg were used in a randomized complete block in 4 × 2 factorial design, with four periods of ZH feeding (0, 20, 30 or 40 d) and 90 or 117 d in the feedlot. The supplementation period with ZH (8.33 mg/kg of dietary dry matter basis) started 23, 33 or 43 d before slaughter. In the last three days prior to slaughter all the animals were fed the diet without ZH, respecting the product grace period. Strip loin (m. Longissimus thoracis et lumborum) of all left-carcases were sampled for meat quality analysis. With the exception of LM area obtained both by ultrasound (P = 0.02) and by refrigerated carcasses (P = 0.05), there was no interaction between periods ZH feeding and days in the feedlot (P > 0.10). The increase of the supplementation period with ZH linearly increased feed efficiency (P < 0.01), hot carcass weight (P < 0.01), hot carcass yield (P < 0.01) and boning yield (P < 0.01). Beef strip loin steaks from animals supplemented with ZH presented a higher percentage of protein content (P < 0.01), while the 12th-rib fat (P = 0.04) and the percentage content of intramuscular fat (P < 0.01) decreased with ZH feeding. The percentage of polyunsaturated fatty acids increased (P = 0.01) with the ZH feeding and was mainly attributed to the increase of linoleic acid (18:2 cis-9, cis-12; P = 0.01) and arachidonic acid (20:4 n-6, P < 0.01). The Warner-Bratzler shear force (P < 0.01) from the strip loin samples increased with the inclusion of dietary ZH and this result was independent of the aging time (7, 14, 21 or 28 d postmortem). There was interaction between ZH feeding period and maturation time (14 or 28 d postmortem) to initial tenderness score (P = 0.03) and connective tissue score (P < 0.01), showing that the maturation process improved meat tenderness of control animals rather than ZH animals. Despite the initial meat tenderness decrease, strip loin steaks of animals supplemented with ZH were still considered tender by trained evaluators. ZH improves Nellore bulls meat production efficiency, providing an increase in muscle mass of the treated animals with no change in dry matter intake. However, treatment of animals with ZH reduces the tenderness and the speed of the strip loin maturation process.
13

Efeitos dos hormônios tireoidianos sobre a regulação da expressão de proteínas envolvidas com a lipólise no tecido adiposo branco subcutâneo e visceral. / Effects of thyroid hormones on the regulation of the expression of proteins involved on lipolysis in subcutaneous and visceral white adipose tissue.

Silva, Mariana de França Oliveira da 21 August 2015 (has links)
Os hormônios tireoidianos (HT) executam um papel lipolítico importante no Tecido Adiposo Branco (TAB), sendo este efeito mediado por meio do aumento da expressão de receptores beta adrenérgicos na membrana do adipócito, o que aumenta a sensibilidade deste tecido as catecolaminas. Sabe-se que os principais efetores da ação lipolítica nesse tecido são a lipase hormônio sensível (LHS) e a lipase dos triglicerídeos dos adipócitos (ATGL), as quais hidrolisam os triglicerídeos em ácidos graxos e glicerol. Além disso, outros componentes estão envolvidos na atividade lipolítica, como as perilipinas, proteínas estas que envolvem a gota de gordura, formando uma barreira contra a ação da LHS e ATGL, de modo que precisam ser fosforiladas para que a LHS e ATGL possam exercer seu efeito lipolítico. Considerando: (a) a importância do tecido adiposo na homeostase energética e como fonte de citocinas, as quais estão relacionadas com a sensibilidade tecidual à insulina; (b) que a função e o metabolismo do tecido adiposo variam com a sua distribuição regional, e (c) que as ações lipolíticas dos HT, importantes reguladores da homeostase energética, têm sido muito pouco exploradas, pretendemos investigar, em ratos, (i) se os HT interferem na expressão da LHS, ATGL, perilipina A e dos receptores beta3 adrenérgicos no tecido adiposo branco, e (ii) se essas ações diferem nos distintos depósitos de gordura, o que poderia ampliar o campo de conhecimento sobre os efeitos lipolíticos destes hormônios e a nossa compreensão sobre a contribuição deles nas complicações associadas à obesidade e suas co-morbidades. / Thyroid hormones (TH) play an important lipolytic role in white adipose tissue (WAT). This effect is mediated by increased expression of beta-adrenergic receptors on adipocytes membrane, which increases the sensitivity of that tissue to catecholamines. It is known that the main effectors of the lipolytic action in WAT enzymatic activity, especially: hormone sensitive lipase (HSL) and adipose triglyceride lipase (ATGL), which hydrolyze triglycerides into fatty acids and glycerol. In addition, other components are involved in the lipolytic activity, such as perilipin. These proteins support the fat droplet, forming a protective barrier against HSL and ATGL action. Considering: (a) the importance of adipose tissue in energy homeostasis and as a source of cytokines which are related to insulin tissue sensitivity; (b) function and metabolism of adipose tissue vary with their regional distribution; and (c) lipolytic actions of HT, important regulators of energy homeostasis, have been little explored, we investigated in rats with hypothyroidism and submitted to T3 treatment: (i) TH effects on the expression of hormone sensitive lipase (HSL), adipose triglyceride lipase (ATGL),perilipin A and beta-3 adrenergic receptors in WAT, and (ii) if this action are different on subcutaneous and visceral fat depot. This study has increased our understanding about the contribution of these hormones on WAT metabolism and metabolic disease as obesity.
14

Charakterisierung kardialer β-Adrenozeptoren in B.U.T. Big 6 Puten in Abhängigkeit von Alter und Geschlecht: Bedeutung für die Entstehung kardiovaskulärer Erkrankungen / Age and sex dependent characterization of cardiac

Hoffmann, Sandra 10 May 2017 (has links) (PDF)
Einleitung: / Introduction:
15

Regulation of Connexin40 Gap Junctions

Sheela, Thomas Vinaya 31 August 2008 (has links)
Gap junctions provide direct electrical and biochemical communication between cardiomyocytes in the heart. Connexin40 (Cx40) is the major connexin in the atria of the heart and little is known regarding its regulation. Thus, the goal was to investigate the regulation of Cx40 in both physiological and pathophysiological conditions. The first objective of this thesis was to determine whether Cx40 gap junctions were regulated by â-adrenergic receptor activation. Cx40 has previously been shown to be acutely activated by cAMP, this cAMP-induced increase in Cx40-mediated cell-to-cell dye transfer has been shown to be effected through the â-adrenergic receptor-adenylyl cyclase- Protein Kinase A (PKA) pathway in Cx40-transfected HeLa cells. The second objective of this thesis was to determine whether Cx40 gap junctions were regulated by intracellular Ca2+ concentration ([Ca2+]i ). [Ca2+]i was increased by addition of the ionophore ionomycin and elevating extracellular calcium [Ca2+]o from 1.8 mM to 21.8 mM. This resulted in an elevation of [Ca2+]i and effected an inhibition of Cx40-mediated cell-to-cell dye transfer (IC50 of 500 ± 0.72 nM) which was Calmodulin-dependent. The third objective of this thesis was to determine whether Cx40 gap junctions were regulated by ischemia. Inducing ischemia chemically by inhibiting the electron transport chain with sodium cyanide and glycolysis with iodoacetate and 2-deoxyglucose effected an inhibition of Cx40-mediated cell-to-cell dye transfer that was shown to be Calmodulin dependent. The main conclusions of this thesis were: (1) â-adrenergic receptor activation increases Cx40-mediated cell-to-cell dye transfer which requires the activation of PKA; (2) A sustained elevation in [Ca2+]i causes a partial inhibition of Cx40 gap junction-mediated cell-to-cell dye transfer which was Ca2+-and Calmodulin dependent; (3) Chemical ischemia causes a partial inhibition of Cx40 gap junction-mediated cell-to-cell dye transfer which was shown to be Calmodulin-dependent.
16

The effects of prenatal hypoxia on the levels of the α-subunits of G proteins in the heart of the Broiler chicken (Gallus gallus)

Rashdan, Nabil January 2010 (has links)
Environmental stress during embryonic development could lead to growth restriction of the embryo, and act as a risk factor for the development of cardiovascular disease in adult life. A common environmental stressor that causes growth restriction is prenatal hypoxia, which has been shown to adversely affect adult health in mammalian models. Prenatal hypoxia causes an increase in catecholamines which results in over stimulation of the cardiac β-adrenergic receptors. Previous work on chickens has shown that prenatal hypoxia causes an increase in the sensitivity of β-adrenergic receptors to epinephrine in the embryonic heart. The sensitivity of these receptors was found to be decreased in prenatal hypoxic juvenile. Prenatal hypoxia has no significant effect on the density of these receptors in neither the embryo nor the juvenile. The lack of change in receptor density implies that the effects of hypoxia are further down stream in the signalling cascade. The β2 adrenergic receptor can couple to both the stimulatory Gα subunit (Gsα) and the inhibitory Gα subunit (Giα). We hypothesized that prenatal hypoxia would cause an increase in the Gsα in the sensitized embryos, while increasing Giα in the desensitized juveniles. This study evaluated the relative levels of Gsα and Giα in the hypoxic chicken embryo, and in the prenatally hypoxic juvenile, Using western blotting. Hypoxia considerably increased Giα in the chicken embryo while having no effect on Gsα. In the prenatally hypoxic juvenile Gsα was significantly increased while no changes were found in Giα. This dissociation between the levels of Gα subunit and receptor sensitivity implies that that hypoxia affects the signaling cascade downstream of the Gα subunit.
17

De- and Resensitisation of Cardiac β-Adrenergic Receptor Signaling : A Modelling Approach

Lundengård, Karin January 2011 (has links)
Desensitisation is defined as a failure of a signaling pathway to respond to chronic or repeated stimulation. The β-adrenergic receptor signaling pathway of the healthy adult heart is known to desensitise, and then regain the sensitivity to stimulation if given enough time to rest between stimulations (resensitisation). The fetal heart does not desensitise, and in animal models of heart failure, a permanent desensitisation have been observed. No isolated element of the signaling pathway have yet been proven to be the sole modulator of the desensitisation behavior. Therefore a mathematical model of the signaling pathway has been constructed, minimized against theoretical desensitisation data and tested for resensitisation. The minimal models and the original model were capable of describing the theoretical de- and resensitisation of the pathway, and only one receptor type with three states was required in the minimal models, but one feedback from the kinases either to phosphorylation of the receptor or to breakdown of cAMP. The original model was also capable of describing experimental data of contraction force from chicken cardiac tissue. The cardiac tissue displays the peak behavior of the desensitisation when stimulated with ISO for ten minutes, and resensitises in less than 5 minutes.
18

Metoprolol Impairs Mesenteric and Posterior Cerebral Artery Function in Mice

El Beheiry, Mostafa Hossam 31 December 2010 (has links)
Background/Rationale: In addition to their established cardioprotective role, β-adrenergic antagonists also increase the risk of stroke and mortality. We propose that a vascular mechanism could contribute to cerebral tissue ischemia in β-blocked patients. Methods: Cardiac output (CO), mean arterial pressure (MAP) and microvascular brain oxygen tension (PBrmvO2) were measured in anesthesized mice treated with metoprolol (3mg•kg-1, i.v.). Dose-response curves (DRCs) for adrenergic-agonists were generated in mesenteric resistance arteries (MRAs; isoproterenol, clenbuterol) and posterior cerebral arteries (PCAs; phenylephrine, isoproterenol) before and after metoprolol treatment. Results: Metoprolol reduced CO, maintained MAP and increased systemic vascular resistance (SVR) resulting in a decreased PBrmvO2 in mice. Metoprolol attenuated β-adrenergic mediated vasodilation in both MRAs and PCAs. Conclusions: Metoprolol reduced brain perfusion in mice. A decrease in CO contributed however, metoprolol also inhibited β-adrenergic vasodilation of mesenteric and cerebral arteries. This provides evidence in support of a vascular mechanism for cerebral ischemia in β-blocked patients.
19

Metoprolol Impairs Mesenteric and Posterior Cerebral Artery Function in Mice

El Beheiry, Mostafa Hossam 31 December 2010 (has links)
Background/Rationale: In addition to their established cardioprotective role, β-adrenergic antagonists also increase the risk of stroke and mortality. We propose that a vascular mechanism could contribute to cerebral tissue ischemia in β-blocked patients. Methods: Cardiac output (CO), mean arterial pressure (MAP) and microvascular brain oxygen tension (PBrmvO2) were measured in anesthesized mice treated with metoprolol (3mg•kg-1, i.v.). Dose-response curves (DRCs) for adrenergic-agonists were generated in mesenteric resistance arteries (MRAs; isoproterenol, clenbuterol) and posterior cerebral arteries (PCAs; phenylephrine, isoproterenol) before and after metoprolol treatment. Results: Metoprolol reduced CO, maintained MAP and increased systemic vascular resistance (SVR) resulting in a decreased PBrmvO2 in mice. Metoprolol attenuated β-adrenergic mediated vasodilation in both MRAs and PCAs. Conclusions: Metoprolol reduced brain perfusion in mice. A decrease in CO contributed however, metoprolol also inhibited β-adrenergic vasodilation of mesenteric and cerebral arteries. This provides evidence in support of a vascular mechanism for cerebral ischemia in β-blocked patients.
20

The influence of growth-promoting technologies on the biological structures responsible for cooked meat tenderness

Ebarb, Sara Michelle January 1900 (has links)
Master of Science / Department of Animal Sciences and Industry / John Michael Gonzalez / The objective of this body of work was to examine effects of growth-promoting technologies (GP) on Longissimus lumborum meat tenderness, focusing on alterations of muscle fiber cross-sectional area (CSA) and collagen solubility. Two studies were conducted and analyzed as randomized complete block designs with repeated measures with GP and day of postmortem aging (DOA) as main effects. Treatments consisted of: a control (CON), implant only (IMP), and implant and [beta]-adrenergic agonist (COMBO). The [beta]-adrenergic agonist utilized for the first was zilpaterol hydrochloride, while the second study examined ractopamine hydrochloride. Objective tenderness of strip loin steaks was measured through Warner-Bratzler shear force (WBSF) after 2 (study 2) or 3 (study 1), 7, 14, 21, or 35 d of postmortem aging. Muscle fiber CSA and collagen solubility were analyzed via immunohistochemistry and hydroxyproline content, respectively. For the first study there was a treatment × DOA interaction (P < 0.01) for WBSF. Compared to CON steaks, IMP steaks had greater (P = 0.01) WBSF on d 3, but were similar (P = 0.21) by d 14. The COMBO steaks remained less tender at all-time points (P < 0.04) except d 21 (P = 0.13) when compared to the CON. Growth-promoting treatment increased the CSA of all three muscle fiber types (P < 0.01), but had no effect on collagen solubility measures (P > 0.21). The second study observed no treatment × DOA interaction (P = 0.54) for WBSF, but GP increased (P < 0.01) WBSF across all DOA. Growth-promoting treatment tended to increase the CSA of type I and IIX fibers (P < 0.10), and increased (P < 0.01) type IIA fiber CSA. In agreement with the first study, there was no treatment × DOA interaction or treatment effect on collagen solubility (P > 0.75). The addition of GP to feedlot heifer production increased WBSF of strip loin steaks and fiber CSA, but did not impact collagen characteristics.

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