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首页> 外文期刊>Journal of Insect Physiology >Ontogenetic stage-dependent effect of temperature on developmental and metabolic rates in a holometabolous insect.
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Ontogenetic stage-dependent effect of temperature on developmental and metabolic rates in a holometabolous insect.

机译:温度对整体代谢昆虫发育和代谢率的阶段性影响。

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摘要

Different hypotheses attempt to explain how different stages of organisms with complex life cycles respond to environmental changes. Most studies have focused at the among-species level showing similar responses to temperature throughout ontogeny. However, there is no agreement about the pattern expected at the intraspecific scale where a strong selective effect is expected. In this paper, we studied the effects of thermal treatments on a life history trait (developmental rate) and a physiological trait (metabolic rate) during development in the fruitfly Drosophila buzzatii. First, we estimated the rate of development during larval life (LDR) and the pupal stage (PDR) in flies derived from two natural populations exposed to several thermal treatments. Our results showed that the developmental rate ratio, LDR/PDR, did not vary between populations, and that the effects of thermal treatments were stage specific. Second, we studied the relationship between developmental rate (DR) and metabolic rate (MR) in each life cycle stage. We found that allometric relationships between DR and MR varied throughout ontogeny, a pattern that shed light on the mechanisms responsible for thermal plasticity. We conclude that, although different populations may show developmental rate isomorphy; larvae and pupae may choose alternative "decisions" in terms of life-history evolution and physiological traits when confronted to different thermal environments.
机译:不同的假设试图解释具有复杂生命周期的有机体的不同阶段如何响应环境变化。大多数研究集中在种间水平上,显示整个个体发育过程中对温度的响应相似。但是,对于在种内规模上预期会有强选择效应的预期模式,人们并没有达成共识。在本文中,我们研究了热处理对果蝇果蝇发育过程中的生活史特征(发育速率)和生理特征(代谢速率)的影响。首先,我们估算了来自经过两次热处理的两个自然种群的果蝇在幼虫寿命(LDR)和the期(PDR)的发育速度。我们的结果表明,不同人群之间的发育速率比LDR / PDR没有变化,并且热处理的效果是特定于阶段的。其次,我们研究了每个生命周期阶段的发育率(DR)与代谢率(MR)之间的关系。我们发现DR和MR之间的异形关系在整个个体发育过程中都发生了变化,这种模式揭示了造成热可塑性的机制。我们得出的结论是,尽管不同的人群可能显示出发育率同构;当面对不同的热环境时,幼虫和p可能会根据生活史演变和生理特征选择其他“决定”。

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