首页> 外文期刊>Evolution: International Journal of Organic Evolution >SIMILARITIES AND DIFFERENCES IN ALTITUDINAL VERSUS LATITUDINAL VARIATION FOR MORPHOLOGICAL TRAITS IN DROSOPHILA MELANOGASTER
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SIMILARITIES AND DIFFERENCES IN ALTITUDINAL VERSUS LATITUDINAL VARIATION FOR MORPHOLOGICAL TRAITS IN DROSOPHILA MELANOGASTER

机译:果蝇形态特征的海拔高度变化与海拔高度变化的相似性和差异

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摘要

Understanding how natural environments shape phenotypic variation is a major aim in evolutionary biology. Here, we have examined clinal, likely genetically based variation in morphology among 19 populations of the fruit fly (Drosophila melanogaster) from Africa and Europe, spanning a range from sea level to 3000 m altitude and including locations approximating the southern and northern range limit. We were interested in testing whether latitude and altitude have similar phenotypic effects, as has often been postulated. Both latitude and altitude were positively correlated with wing area, ovariole number, and cell number. In contrast, latitude and altitude had opposite effects on the ratio between ovariole number and body size, which was negatively correlated with egg production rate per ovariole. We also used transgenic manipulation to examine how increased cell number affects morphology and found that larger transgenic flies, due to a higher number of cells, had more ovarioles, larger wings, and, unlike flies from natural populations, increased wing loading. Clinal patterns in morphology are thus not a simple function of changes in body size; instead, each trait might be subject to different selection pressures. Together, our results provide compelling evidence for profound similarities as well as differences between phenotypic effects of latitude and altitude.
机译:了解自然环境如何影响表型变异是进化生物学的主要目标。在这里,我们研究了来自非洲和欧洲的19个果蝇(果蝇)种群的形态特征,这些遗传特征可能是基于遗传的变异,其范围从海平面到3000 m高度,包括接近南部和北部范围限制的位置。正如通常所假设的,我们对测试纬度和海拔是否具有相似的表型效应感兴趣。纬度和高度均与机翼面积,卵巢数目和细胞数目呈正相关。相反,纬度和海拔高度对卵巢数与体型之间的比率有相反的影响,与每个卵巢的产卵率呈负相关。我们还使用转基因操作来检查增加的细胞数如何影响形态,并发现由于细胞数量增加,较大的转基因果蝇具有更多的卵泡,较大的机翼,并且与自然种群的果蝇不同,机翼负荷增加。因此,形态上的斜纹图案不是改变体型的简单函数;相反,每个特质都可能受到不同的选择压力。总之,我们的结果提供了令人信服的证据,证明纬度和海拔的表型效应之间存在深远的相似性和差异。

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