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首页> 外文期刊>The Journal of Experimental Biology >The relative contributions of developmental plasticity and adult acclimation to physiological variation in the tsetse fly, Glossina pallidipes (Diptera, Glossinidae)
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The relative contributions of developmental plasticity and adult acclimation to physiological variation in the tsetse fly, Glossina pallidipes (Diptera, Glossinidae)

机译:发育可塑性和成年适应对采采蝇苍蝇(Glossina pallidipes(Diptera,Glossinidae))生理变化的相对贡献

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Recent reviews of the adaptive hypotheses for animal responses to acclimation have highlighted the importance of distinguishing between developmental and adult ( non-developmental) phenotypic plasticity. There has been little work, however, on separating the effects of developmental plasticity from adult acclimation on physiological traits. Therefore, we investigated the relative contributions of these two distinct forms of plasticity to the environmental physiology of adult tsetse flies by exposing developing pupae or adult flies to different temperatures and comparing their responses. We also exposed flies to different temperatures during development and reexposed them as adults to the same temperatures, to investigate possible cumulative effects. Critical thermal maxima were relatively inflexible in response to acclimation temperatures ( 21, 25, 29 degrees C) with plasticity type accounting for the majority of the variation ( 49 - 67%, nested ANOVA). By contrast, acclimation had a larger effect on critical thermal minima with treatment temperature accounting for most of the variance ( 84 - 92%). Surprisingly little of the variance in desiccation rate could be explained by plasticity type ( 30 - 47%). The only significant effect of acclimation temperature on standard ( resting) metabolic rate of adult flies was at 21 degrees C, resulting in treatment temperature, rather than plasticity type, accounting for the majority of the variance ( 30 - 76%). This study demonstrates that the stage at which acclimation takes place has significant, though often different, effects on several adult physiological traits in G. pallidipes, and therefore that it is not only important to consider the form of plasticity but also the direction of the response and its significance from a life- history perspective.
机译:对动物对驯化反应的适应性假设的最新评论强调了区分发育表型和成年(非发育)表型可塑性的重要性。然而,关于将发育可塑性与成年适应对生理性状的影响分开的工作很少。因此,我们通过将发育中的p或成年蝇暴露于不同温度并比较它们的响应,研究了这两种不同形式的可塑性对成年采采蝇蝇的环境生理的相对贡献。我们还将果蝇在发育过程中暴露于不同的温度下,并在成年后将它们重新暴露于相同的温度下,以研究可能的累积效应。临界热最大值相对于适应温度(21、25、29摄氏度)相对不灵活,可塑性类型占变化的大部分(49-67%,嵌套方差分析)。相比之下,适应对临界热最小值的影响更大,其中处理温度占据了大部分差异(84-92%)。出乎意料的是,干燥速率的变化几乎不能用可塑性类型解释(30-47%)。适应温度对成年蝇的标准(静止)新陈代谢速率的唯一显着影响是在21摄氏度下,导致处理温度而不是可塑性类型,这是大部分变化(30-76%)。这项研究表明适应的阶段对苍白G.pallidipes的几种成年生理特征具有重要的影响,尽管通常是不同的,因此,不仅要考虑可塑性的形式而且要考虑反应的方向也很重要。以及从生活史角度来看的意义。

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