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Can artificially selected phenotypes influence a component of field fitness? Thermal selection and fly performance under thermal extremes

机译:人工选择的表型会影响田间适应性吗?极端温度下的热力选择和飞行性能

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摘要

Artificially selected lines are widely used to investigate the genetic basis of quantitative traits and make inferences about evolutionary trajectories. Yet, the relevance of selected traits to field fitness is rarely tested. Here, we assess the relevance of thermal stress resistance artificially selected in the laboratory to one component of field fitness by investigating the likelihood of adult Drosophila melanogaster reaching food bait under different temperatures. Lines resistant to heat reached the bait more often than controls under hot and cold conditions, but less often at intermediate temperatures, suggesting a fitness cost of increased heat resistance but not at temperature extremes. Cold-resistant lines were more common at baits than controls under cold as well as hot field conditions, and there was no cost at intermediate temperatures. One of the replicate heat-resistant lines was caught less often than the others under hot conditions. Direct and correlated patterns of responses in laboratory tests did not fully predict the low performance of the heat selected lines at intermediate temperatures, nor the high performance of the cold selected lines under hot conditions. Therefore, lines selected artificially not only behaved partly as expected based on laboratory assays but also evolved patterns only evident in the field releases.
机译:人工选择的系被广泛用于研究数量性状的遗传基础,并推断进化轨迹。但是,很少测试所选性状与田间适应性的相关性。在这里,我们通过研究成年果蝇在不同温度下到达食物诱饵的可能性,来评估在实验室中人工选择的抗热应激能力与田间适应性的一个相关性。在炎热和寒冷的条件下,耐热的线到达诱饵的频率比对照组高,但在中间温度下的传递频率较低,这表明增加耐热性的适应性成本而不是在极端温度下。诱饵中的耐寒性比在寒冷以及野外条件下的对照更为常见,在中间温度下没有成本。在高温条件下,一条重复的耐热线被捕获的频率比其他几条更少。实验室测试中直接和相关的响应模式无法完全预测中温下热选管线的性能低下,也不能完全预测高温下冷选管线的高性能。因此,人工选择的品系不仅部分表现出基于实验室测定的预期效果,而且还表现出仅在田间释放中明显的进化模式。

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