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Evaluating responses to temperature during pre-metamorphosis and carry-over effects at post-metamorphosis in the wood tiger moth (Arctia plantaginis)

机译:评估木老虎蛾(Arctia plantaginis)在变态前的温度响应和变态后的残留效应

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摘要

Insect metamorphosis is one of the most recognized processes delimiting transitions between phenotypes. It has been traditionally postulated as an adaptive process decoupling traits between life stages, allowing evolutionary independence of pre- and post-metamorphic phenotypes. However, the degree of autonomy between these life stages varies depending on the species and has not been studied in detail over multiple traits simultaneously. Here, we reared full-sib larvae of the warningly coloured wood tiger moth (Arctia plantaginis) in different temperatures and examined their responses for phenotypic (melanization change, number of moults), gene expression (RNA-seq and qPCR of candidate genes for melanization and flight performance) and life-histories traits (pupal weight, and larval and pupal ages). In the emerging adults, we examined their phenotypes (melanization and size) and compared them at three condition proxies: heat absorption (ability to engage flight), flight metabolism (ability to sustain flight) and overall flight performance. We found that some larval responses, as evidenced by gene expression and change in melanization, did not have an effect on the adult (i.e. size and wing melanization), whereas other adult traits such as heat absorption, body melanization and flight performance were found to be impacted by rearing temperature. Adults reared at high temperature showed higher resting metabolic rate, lower body melanization, faster heating rate, lower body temperature at take-off and inferior flight performance than cold-reared adults. Thus, our results did not unambiguously support the environment-matching hypothesis. Our results illustrate the importance of assessing multiple traits across life stages as these may only be partly decoupled by metamorphosis.This article is part of the theme issue ‘The evolution of complete metamorphosis'.
机译:昆虫变态是界定表型之间过渡的最公认的过程之一。传统上将其假设为适应过程,将生命阶段之间的性状脱钩,从而允许亚变态前表型和后变态表型的进化独立性。然而,这些生命阶段之间的自主程度因物种而异,因此尚未同时针对多种性状进行详细研究。在这里,我们在不同温度下饲养了警告色木虎蛾(Arctia plantaginis)的全同胞幼虫,并检查了它们对表型(变黑变化,换毛数),基因表达(RNA-seq和qPCR候选变黑基因)的反应和飞行性能)以及生活史特征(pu体重,幼虫和p年龄)。在新兴成年人中,我们检查了它们的表型(黑色素化和大小),并在三种状况下进行了比较:热量吸收(参与飞行的能力),飞行代谢(维持飞行的能力)和总体飞行性能。我们发现,一些幼虫反应,如基因表达和黑色素变化所证明,对成年没有影响(即大小和机翼黑色素化),而发现其他一些成人特征,例如热量吸收,身体黑色素化和飞行性能受饲养温度的影响。与寒冷饲养的成年人相比,在高温下饲养的成年人表现出更高的静息代谢率,较低的黑化率,更快的升温速率,起飞时的体温较低以及飞行性能较差。因此,我们的结果并未明确支持环境匹配假设。我们的结果说明了评估生命各个阶段的多个特征的重要性,因为这些特征可能仅部分与变态相关。本文是主题“完全变态的演变”的一部分。

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