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Temperature-induced shifts in associations of longevity with body size in Drosophila melanogaster

机译:温度引起的果蝇黑体长寿与体型相关性的变化

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One of the hypotheses of growing interest in studies of responses to thermal environments suggests that trade-offs and other trait associations may be altered by temperature. Here. the commonly observed positive association between body size and longevity was examined at two adult test temperatures, 14degreesC and 25degreesC. in cold-stress-selected lines (S) and their controls (C) in 25degreesC-reared Drosophila melanogaster. Thorax length (TL) and developmental time (DT) were also scored in 25degreesC-reared individuals before and after one generation of truncation selection on longevity. The topography of the selection surface that relates longevity to thorax and wing size was temperature dependent and differed both between lines and between sexes. Longevity increased monotonically with body size (TL) in C and S females at 25degreesC but, surprisingly, longevity decreased with body size in S individuals at 14degreesC, Body size did not diverge between S and C lines and showed no response to longevity selection. However, DT increased by 25degreesC-longevity selection in C individuals and decreased by 14degreesC-longevity selection in S individuals. These results suggest that trait associations (including the commonly observed trade-off between body size and DT) can greatly depend on temperature, as a shift in the sign of the correlation is possible at low temperature. Genotype X temperature interaction is an important source of variation in the relationship between soma size and longevity. [References: 49]
机译:对热环境响应研究的兴趣越来越高的一种假设表明,权衡和其他性状关联可能会因温度而改变。这里。通常在两个成人测试温度(14摄氏度和25摄氏度)下检查体重与寿命之间的正相关关系。在25摄氏度饲养的果蝇(Drosophila melanogaster)中选择冷应激品系(S)及其对照(C)。在长寿的一代截短选择前后,对25摄氏度饲养的个体的胸长(TL)和发育时间(DT)也进行了评分。选择寿命的长寿与胸部和机翼大小相关的地形是温度依赖性的,线与性别之间都不同。 C和S雌性在25°C下,寿命随着体型(TL)单调增加,但是令人惊奇的是,在14°C下,S型个体的寿命随着体型的降低而降低,S和C系之间的体型没有差异,并且对长寿选择没有反应。然而,在C个体中,DT通过选择25°C长寿而增加,而在S个体中,通过14°C选择寿命而降低。这些结果表明,性状关联(包括通常观察到的体重与DT之间的权衡)可以极大地取决于温度,因为在低温下相关性的符号可能会发生变化。 X基因型温度相互作用是躯体大小与寿命之间关系变化的重要来源。 [参考:49]

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