首页> 外文期刊>Evolution: International Journal of Organic Evolution >Heat tolerance in Drosophila subobscura along a latitudinal gradient: Contrasting patterns between plastic and genetic responses
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Heat tolerance in Drosophila subobscura along a latitudinal gradient: Contrasting patterns between plastic and genetic responses

机译:沿横向梯度的果蝇亚耐热的耐热性:塑性和遗传反应之间的对比模式

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Susceptibility to global warming relies on how thermal tolerances respond to increasing temperatures through plasticity or evolution. Climatic adaptation can be assessed by examining the geographic variation in thermal-related traits. We studied latitudinal patterns in heat tolerance in Drosophila subobscura reared at two temperatures. We used four static stressful temperatures to estimate the thermal death time (TDT) curves, and two ramping assays with fast and slow heating rates. Thermal death time curves allow estimation of the critical thermal maximum (CTmax), by extrapolating to the temperature that would knock down the flies almost instantaneously, and the thermal sensitivity to increasing stressful temperatures. We found a positive latitudinal cline for CTmax, but no clinal pattern for knockdown temperatures estimated from the ramping assays. Although high-latitude populations were more tolerant to an acute heat stress, they were also more sensitive to prolonged exposure to less stressful temperatures, supporting a trade-off between acute and chronic heat tolerances. Conversely, developmental plasticity did not affect CTmax but increased the tolerance to chronic heat exposition. The patterns observed from the TDT curves help to understand why the relationship between heat tolerance and latitude depends on the methodology used and, therefore, these curves provide a more complete and reliable measurement of heat tolerance.
机译:全球变暖的易感性取决于热耐受性如何通过可塑性或演化来响应不断升高的温度。可以通过检查热相关性状的地理变化来评估气候适应性。我们研究了在两个温度下饲养的果蝇近缘耐热性的纬度模式。我们使用四个静态应力温度来估算热死时间(TDT)曲线,并使用两个具有快速加热速率和缓慢加热速率的升温分析。热死亡时间曲线可通过推断几乎瞬间将果蝇击倒的温度以及对压力不断升高的温度的热敏感性来估算临界热最大值(CTmax)。我们发现CTmax的阳性纬度谱线呈阳性,但没有根据升温分析估计的敲低温度呈倾斜模式。尽管高纬度人群对急性热应激的耐受性更高,但它们对长时间暴露于较低压力温度也更加敏感,从而支持了急性和慢性热耐受性之间的权衡。相反,发育可塑性不影响CTmax,但增加了对慢性热暴露的耐受性。从TDT曲线观察到的模式有助于理解为什么耐热性和纬度之间的关系取决于所使用的方法,因此,这些曲线提供了更完整和可靠的耐热性测量。

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