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PROTHONOTARY WARBLER NESTLING DIET AND GROWTH IN RESPONSE TO VARIATION IN AQUATIC AND TERRESTRIAL FOOD AVAILABILITYDodson, Jenna C 01 January 2015 (has links)
Food supply has been suggested as the main determinant of reproductive success in birds. Riparian species can take advantage of seasonal pulses of both terrestrial and aquatic prey, though aquatic resources are often overlooked in studies of diet and reproductive ecology. This study investigates the flux of both aquatic (mayfly) and terrestrial (caterpillar) prey resources and nestling diet of the Prothonotary Warbler throughout the breeding season in two eastern Virginia sites. One site had significantly higher aquatic prey (mayfly) availability. Nestling diet was generally reflective of prey availability, and nestlings grew faster at the site with high aquatic prey availability. At the site with low aquatic prey availability, nestling growth rates and condition were positively correlated with the amount of aquatic prey in the diet. Our results provide evidence that aquatic subsidies are an important resource for nestlings, and are crucial to understanding the breeding ecology of riparian species.
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Contribution des insectes aquatiques émergeant des rivières à la fourniture de services écosystémiques pour l’agriculture / Ecosystem services provided to agriculture by aquatic insects emerging from riversRaitif, Julien 18 December 2018 (has links)
La connexion entre milieux aquatiques et terrestres a suscité l’intérêt de la communauté scientifique, notamment l’effet du transfert d’énergie et de matière sur le fonctionnement des écosystèmes adjacents. Beaucoup d’études se sont intéressées aux apports d’insectes aquatiques ailés dans les écosystèmes naturels, mais peu à leur impact en milieu agricole. En modifiant la production secondaire d’invertébrés aquatiques, les pratiques agricoles sont à même d’intensifier ou diminuer l’effet de ces apports aquatiques dans les terres agricoles et par conséquent la fourniture de services écosystémiques utiles à l’agriculture. Nous avons collecté des données d’émergences et de dispersion d’insectes aquatiques depuis plusieurs rivières dans des paysages agricoles. Les principaux groupes d’insectes émergents sont les trichoptères (56%), chironomidés (25%) et éphéméroptères (19%). Nous estimons la biomasse sèche émergente entre 1445 et 7374 mg m-2 an-1 selon les sites. Une majorité de ces insectes aquatiques se déposent sur une bande entre 0 et 10 mètres du bord de la rivière mais une proportion importante (45%) se dépose dans les cultures après 20 mètres. Nous apportons de nouvelles et prometteuses connaissances suggérant que les insectes aquatiques participent à la fourniture de plusieurs services écosystémiques (fertilisation, contrôle biologie, épuration de l’eau et pollinisation). En paysage agricole, une communauté d’insectes riche et abondant est nécessaire à la mise en place d’un système agricole durable. Nous pensons que le rôle des insectes aquatiques est à ce titre important et suggérons de nouvelles pistes de recherches pour l’agroécologie. / The connection between aquatic and terrestrial habitats has increased scientific interest in ecological subsidies, focusing on how the transfer of matter and energy between adjacent ecosystems can modify the ecosystems functioning. Much attention has focused on aquatic subsidies associated with winged aquatic insects in pristine areas, but their implication in agricultural landscapes is rarely considered. By altering the production of benthic macroinvertebrates, agricultural practices can increase or decrease the strength of aquatic subsidies and subsequently the provision of several ecosystem services to agriculture. We have monitored the emergence and inland dispersal of adult aquatic insects from several agricultural streams. Most emerging dry mass (DM) belong to Trichoptera (56%), Chironomidae (25%) and Ephemeroptera (19%). We estimate that annual emerging dry mass of aquatic insects ranged between 1445 and 7374 mg m-2 y-1 depending on stream. The majority of aquatic insects emerging falls between 0 and 10 meters from stream hedges. However, a great proportion (45%) though disperses and eventually falls after 20 meters from the stream. We provide new and promising evidence suggesting that winged stream insects can support several ecosystem services (soil fertilization, crop pest control, water purification and pollination). In agricultural landscapes, a rich and abundant insect community is necessary to promote sustainable practices, and we believe the role of aquatic subsidies in providing ecosystem services to agriculture is a new and promising field of research in agroecology.
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