School of Biological Sciences, Monash University, Clayton 3800, Victoria, Australia.
Evolution. 2011 Apr;65(4):1048-67. doi: 10.1111/j.1558-5646.2010.01196.x. Epub 2010 Dec 22.
Body size and thermal tolerance clines in Drosophila melanogaster occur along the east coast of Australia. However the extent to which temperature affects the genetic architecture underlying the observed clinal divergence remains unknown. Clinal variation in these traits is associated with cosmopolitan chromosome inversions that cline in D. melanogaster. Whether this association influences the genetic architecture for these traits in D. melanogaster is unclear. Drosophila simulans shows linear clines in body size, but nonlinear clines in cold resistance. Clinally varying inversions are absent in D. simulans. Line-cross and clinal analyses were performed between tropical and temperate populations of D. melanogaster and D. simulans from the east coast of Australia to investigate whether clinal patterns and genetic effects contributing to clinal divergence in wing centroid size, thorax length, wing-to-thorax ratio, cold and heat resistance differed under different developmental temperatures (18 °C, 25 °C, and 29 °C). Developmental temperature influenced the genetic architecture in both species. Similarities between D. melanogaster and D. simulans suggest clinally varying inversion polymorphisms have little influence on the genetic architecture underlying clinal divergence in size in D. melanogaster. Differing genetic architectures across different temperatures highlight the need to consider different environments in future evolutionary and molecular studies of phenotypic divergence.
果蝇在澳大利亚东海岸的体型和耐热性沿地理梯度变化。然而,温度对观察到的渐变分歧的遗传结构的影响程度尚不清楚。这些性状的渐变变化与在果蝇中渐变的世界性染色体倒位有关。这种关联是否影响果蝇中这些性状的遗传结构尚不清楚。果蝇 simulans 表现出体型的线性渐变,但抗寒性的非线性渐变。果蝇 simulans 中不存在渐变的倒位。为了研究对翅心大小、胸部长度、翅胸比、抗寒性和耐热性的渐变分歧有贡献的渐变模式和遗传效应是否在不同的发育温度(18°C、25°C 和 29°C)下有所不同,在澳大利亚东海岸进行了热带和温带果蝇和果蝇 simulans 的线交叉和渐变分析。发育温度影响了两个物种的遗传结构。果蝇和果蝇 simulans 之间的相似性表明,渐变的倒位多态性对果蝇中大小渐变分歧的遗传结构影响不大。不同温度下的遗传结构差异突出表明,在未来对表型分歧的进化和分子研究中需要考虑不同的环境。