首页> 外文期刊>The Journal of Experimental Biology >Divergent strategies for adaptations to stress resistance in two tropical Drosophila species: effects of developmental acclimation in D. bipectinata and the invasive species D. malerkotliana.
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Divergent strategies for adaptations to stress resistance in two tropical Drosophila species: effects of developmental acclimation in D. bipectinata and the invasive species D. malerkotliana.

机译:适应两种热带果蝇物种的抗逆性的不同策略:双歧双歧杆菌和入侵物种双歧杆菌D. malerkotliana发育适应的影响。

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摘要

Previous studies on two tropical Drosophila species (D. malerkotliana and D. bipectinata) have shown lower resistance to stress-related traits but the rapid colonization of D. malerkotliana in the past few decades is not consistent with its sensitivity to desiccation and cold stress. We tested the hypothesis that developmental acclimation at two growth temperatures (17 and 25 degrees C) can confer adaptations to desiccation and thermal stresses. We found divergence in developmental plastic effects on cuticular traits, i.e. a significant increase of body melanisation (~2-fold) and of cuticular lipid mass (~3-fold) in D. malerkotliana but only 1.5-fold higher cuticular lipid mass in D. bipectinata when grown at 17 degrees C compared with 25 degrees C. A comparison of the water budget of these two species showed significantly higher effects of developmental acclimation on body water content, rate of water loss and dehydration tolerance resulting in higher desiccation resistance in D. malerkotliana than in D. bipectinata. When grown in cooler conditions (17 degrees C), D. malerkotliana had greater resistance to cold as well as desiccation stress. In contrast, heat resistance of D. bipectinata was higher when grown at 25 degrees C. These laboratory observations are supported by data on seasonally varying populations. Furthermore, adult D. malerkotliana acclimated to different stresses showed greater resistance to those stresses than D. bipectinata adults. Thus, significant increase in stress resistance of D. malerkotliana through developmental acclimation may be responsible for its invasion and ecological success on different continents compared with D. bipectinata.
机译:先前对两种热带果蝇(D. malerkotliana和D. bipectinata)的研究表明,对胁迫相关性状的抵抗力较低,但在过去的几十年中D. malerkotliana的快速定植与其对干燥和冷胁迫的敏感性不一致。我们测试了以下假设:在两个生长温度(17和25摄氏度)下的发育适应可以赋予对干旱和热应力的适应性。我们发现发育塑性对表皮性状的影响存在差异,即D. malerkotliana中的身体黑色素化(〜2倍)和表皮脂质量(〜3倍)显着增加,但D中的表皮脂质量仅高1.5倍在25摄氏度和17摄氏度下生长的双歧杆菌。对这两种物种的水预算的比较显示,发育适应对人体水分,失水率和脱水耐受性的影响显着更高,从而导致D的抗旱性更高。马来酸比在双歧杆菌中。当在凉爽的条件下(17摄氏度)生长时,马来酸假丝酵母对寒冷以及干燥压力具有更大的抵抗力。相反,当在25摄氏度下生长时,双歧双歧杆菌的耐热性更高。这些实验室观察得到季节性变化种群数据的支持。此外,适应不同压力的成虫D. malerkotliana显示出比双歧果蝇D. bipectinata成虫更大的抵抗力。因此,与双歧杆菌相比,通过发育适应性显着提高了D. malerkotliana的抗逆性可能是其在不同大陆上的入侵和生态成功的原因。

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