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首页> 外文期刊>Journal of Insect Physiology >Latitudinal clines in heat tolerance, protein synthesis rate and transcript level of a candidate gene in Drosophila melanogaster.
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Latitudinal clines in heat tolerance, protein synthesis rate and transcript level of a candidate gene in Drosophila melanogaster.

机译:经纬线在果蝇中候选基因的耐热性,蛋白质合成速率和转录水平。

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The occurrence of climatic adaptation in Drosophila melanogaster is highlighted by the presence of latitudinal clines in several quantitative traits, particularly clines in adult heat knockdown tolerance that is higher in tropical populations. However the presence of latitudinal patterns in physiological characteristics that may underlie these traits have rarely been assessed. Protein synthesis has been implicated as an important physiological process that influences thermal tolerance, and this has not been examined in a clinal context. Here, we characterise latitudinal variation in D. melanogaster from eastern Australia in both adult heat knockdown tolerance and rates of protein synthesis following rearing at both 25 degrees C, approximating summer conditions, and 18 degrees C approximating winter development. We also examined clinal variation in the predominant nuclear transcript of the heat-inducible RNA gene hsr-omega, which has been implicated in regulating protein synthesis. We find significant clines in heat-hardened tolerance when cultured at both 18 and 25 degrees C - tolerance increased towards the low latitude tropics. Rates of protein synthesis measured in ovarian tissue also associated negatively with latitude, however the presence of the clines depended on rearing temperature and heat stress conditions. Finally, omega-n levels measured without heat stress showed a positive linear cline. When measured after a mild heat stress higher levels of omega-n were detected and the clinal pattern became parabolic - mid-latitude populations had lower levels of the transcript. While congruent latitudinal trends were detected for these three traits, only a low level of positive association was detected between protein synthesis and thermal tolerance providing little evidence that these traits are related at the level of cellular physiology. However the new clinal patterns of protein synthesis and hsr-omega variation suggest that these variables exert important influences on traits involved with latitudinal climatic adaptation.
机译:果蝇在几个数量性状上的存在突出了果蝇的气候适应性,特别是在热带种群中成年耐热击倒耐受性较高的种。但是,很少评估可能存在这些特征的生理特征中的纬度模式。蛋白质合成被认为是影响热耐受性的重要生理过程,并且尚未在临床背景下对其进行研究。在这里,我们表征了来自澳大利亚东部的黑腹果蝇的成年热击倒耐受性和蛋白质合成速率的纬度变化,在25°C,近似夏季条件和18°C近似于冬季发育的条件下饲养。我们还检查了热诱导RNA基因hsr-omega的主要核转录本中的淋巴结变异,这与调节蛋白质的合成有关。我们发现,在18和25摄氏度的温度下进行培养时,热硬化耐受性均显着提高-对低纬度热带地区的耐受性增加。在卵巢组织中测得的蛋白质合成速率也与纬度呈负相关,但是,血统的存在取决于饲养温度和热应激条件。最后,在没有热应力的情况下测得的ω-n水平显示出正线性线性。在轻度热应激后进行测量时,检测到较高水平的ω-n,并且斜纹样变为抛物线形-中纬度人群的转录本水平较低。虽然在这三个性状上发现了一致的纬度趋势,但是在蛋白质合成和热耐受性之间仅检测到低水平的正相关,几乎没有证据表明这些性状与细胞生理学水平相关。但是,新的蛋白质合成和hsr-ω变异的最终模式表明,这些变量对与纬度气候适应有关的性状产生重要影响。

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