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首页> 外文期刊>Journal of Thermal Biology >Generalist grasshoppers from thermally variable sites do not have higher thermal tolerance than grasshoppers from thermally stable sites - A study of five populations
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Generalist grasshoppers from thermally variable sites do not have higher thermal tolerance than grasshoppers from thermally stable sites - A study of five populations

机译:来自热可变部位的通道蚱蜢与来自热稳定地点的蚱蜢没有较高的耐热性 - 对五种种群的研究

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摘要

Thermal tolerance allows many organisms, including insects, to withstand stressful temperatures. Thermal generalists are expected to have higher thermal tolerance than specialists, but the environmental conditions leading to the evolution of a thermal generalist life history are not fully understood. Thermal variability has been put forth as an evolutionary driver of high thermal tolerance, but rarely has this been empirically tested. We used a generalist agricultural pest grasshopper, Melanoplus differentialis, to test upper and lower thermal limits of populations that experienced different levels of thermal variability.
机译:热耐受允许许多有机体,包括昆虫,以承受压力的温度。 预期热通用传导者比专家更高的耐热性,但是导致热通流寿命历史演变的环境条件尚未完全理解。 热变形是作为高耐热性的进化驱动器的含量,但很少已经经过经验测试。 我们使用了一般主义的农业害虫蚱蜢,Melanoplus差异,测试了经历不同水平的热变形水平的群体的上下热限制。

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