992 resultados para BEHAVIORAL ECOLOGY


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Neste artigo, abordo o capítulo VII de "A Origem das Espécies" (Instinto), no qual Charles Darwin efetua uma aplicação da teoria da evolução por seleção natural ao domínio dos instintos, inaugurando a análise biológica do comportamento. Darwin pretendeu mostrar a possibilidade de uma evolução gradual no caso de exemplos complexos como o parasitismo de ninhada do cuco, o hábito escravagista de formigas e a construção das células do favo de abelhas melíferas. Atribuiu ao comportamento um caráter funcional, comparou espécies próximas para reconstituir etapas evolucionárias, colocou os cálculos de custo e benefício e de otimização subjacentes à seleção do comportamento, indicou aspectos de competição entre espécies e de manipulação de umas por outras, e utilizou o pensamento da seleção de grupo para dar conta da presença de indivíduos estéreis em insetos eusociais. Mais do que soluções e resultados, Darwin traz, no capítulo Instinto, argumentos e uma proposta paradigmática para a análise dos comportamentos típicos da espécie, verdadeiro ponto de partida para as abordagens atuais da etologia e da ecologia comportamental.

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Sperm competition exerts strong selection on males to produce spermatozoa with an optimal morphology that maximizes their fertilization success. Long sperm were first suggested to be favored because they should swim faster. However, studies that investigated the relationship between sperm length and sperm competitive ability or sperm swimming velocity yielded contradictory results. More recently, ratios of the different sections of a spermatozoon (the head, midpiece, and flagellum) were suggested to be more crucial in determining swimming velocity. Additionally, sperm ability to remain and survive in the female storage organs may also influence fertilization success, so that optimal sperm morphology may rather maximize sperm longevity than velocity. In this study, we investigated how sperm morphology is related to sperm velocity and sperm longevity in the house sparrow Passer domesticus. Sperm velocity was found to be correlated with head/flagellum ratio. Sperm with small heads relative to their flagellum showed higher swimming velocity. Additionally, shorter sperm were found to live longer. Finally, we found sperm morphological traits to vary substantially within males and the head/flagellum ratio to be unrelated to total sperm length. We discuss the hypothesis that the substantial within-male variation in sperm morphology reflects a male strategy to produce a diversity of sperm from long, fast-swimming to short, long-living sperm to maximize their fertilization success in a context of sperm competition.

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Early developmental conditions have major implications for an individual's fitness. In species where offspring are born simultaneously, the level of sibling competition for food access is intense. In birds, high sibling competition may subject nestlings to decreased growth rate as a result of limited food and increased levels of oxidative stress through high metabolic activity induced by begging behaviors. We manipulated the level of sibling competition in a natural population of great tits and assessed the consequences for nestling body condition and resistance to oxidative stress. In a full factorial design, we both augmented brood size to increase sibling competition and supplemented the male parents with physiological doses of carotenoids thereby doubling the natural carotenoid intake, aiming at increasing the males' investment in current reproduction and thereby decreasing sibling competition. Nestling body mass was reduced by the brood enlargement and enhanced by the carotenoid supplementation of fathers. Nestling resistance to oxidative stress, measured as total antioxidant defenses in whole blood, was not influenced by the treatments. Because nestlings experience high metabolic activities, an absence of an effect of sibling competition on free radicals production seems unlikely. Nestling body mass decreased and resistance to oxidative stress tended to increase with initial brood size, and hence these correlational effects suggest a trade-off between morphological growth and development of the antioxidant system. However, the result of the experimental treatment did not support this trade-off hypothesis. Alternatively, it suggests that nestling developed compensatory mechanisms that were not detected by our antioxidant capacity measure.