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A comprehensive assessment of geographic variation in heat tolerance and hardening capacity in populations of Drosophila melanogaster from eastern Australia

机译:对澳大利亚东部果蝇果蝇耐热性和硬化能力地理变异的综合评估

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摘要

We examined latitudinal variation in adult and larval heat tolerance in Drosophila melanogaster from eastern Australia. Adults were assessed using static and ramping assays. Basal and hardened static heat knockdown time showed significant linear clines; heat tolerance increased towards the tropics, particularly for hardened flies, suggesting that tropical populations have a greater hardening response. A similar pattern was evident for ramping heat knockdown time at 0.06 °C min⁻¹ increase. There was no cline for ramping heat knockdown temperature (CTmax) at 0.1 °C min⁻¹ increase. Acute (static) heat knockdown temperature increased towards temperate latitudes, probably reflecting a greater capacity of temperate flies to withstand sudden temperature increases during summer in temperate Australia. Larval viability showed a quadratic association with latitude under heat stress. Thus, patterns of heat resistance depend on assay methods. Genetic correlations in thermotolerance across life stages and evolutionary potential for critical thermal limits should be the focus of future studies.
机译:我们检查了来自澳大利亚东部果蝇的成虫和幼虫耐热性的纬度变化。使用静态和倾斜分析评估成年人。基础和硬化的静态热击倒时间显示出明显的线性上升趋势;对热带地区的耐热性提高了,特别是对于坚硬的果蝇,这表明热带种群对硬化的反应更大。在0.06°C min -1的增加下,热击穿时间的增加也呈现出类似的模式。在上升0.1°C min -1时,没有上升热击穿温度(CTmax)上升的趋势。急性(静态)热降温温度向温带纬度增加,这可能反映了温带果蝇抵御澳大利亚温带夏季夏季温度突然升高的能力。在热胁迫下,幼虫的生存能力与纬度呈二次关系。因此,耐热模式取决于测定方法。整个生命周期中耐热性的遗传相关性和临界热极限的进化潜力应成为未来研究的重点。

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