首页> 外文期刊>Evolution: International Journal of Organic Evolution >Different cell size and cell number contribution in two newly established and one ancient body size cline of Drosophila subobscura
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Different cell size and cell number contribution in two newly established and one ancient body size cline of Drosophila subobscura

机译:果蝇亚纲的两个新近建立的和一个古老的人体大小谱系中不同的细胞大小和细胞数量贡献

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摘要

Latitudinal genetic clines in body size occur in many ectotherms including Drosophila species. In the wing of D. melanogaster, these clines are generally based on latitudinal variation in cell number. In contrast, differences in wing area that evolve by thermal selection in the laboratory are in general based on cell size. To investigate possible reasons for the different cellular bases of these two types of evolutionary response, we compared the newly established North and South American wing size clines of Drosophila subobscura. The new clines are based on latitudinal variation in cell area in North America and cell number in South America. The ancestral European cline is also based on latitudinal variation in cell number. The difference in the cellular basis of wing size variation in the American clines, which are roughly the same age, together with the similar cellular basis of the new South American cline and the ancient European one, suggest that the antiquity of a cline does not explain its cellular basis. Furthermore, the results indicate that wing size as a whole, rather than its cellular basis, is under selection. The different cellular bases of different size clines are most likely explained either entirely by chance or by different patterns of genetic variance-or its expression-in founding populations. [References: 36]
机译:包括果蝇在内的许多外热都出现了体型的遗传遗传突变。在黑腹果蝇(D. melanogaster)的侧翼中,这些系通常基于细胞数量的纬度变化。相反,在实验室中通过热选择产生的机翼面积差异通常基于细胞大小。为了调查这两种类型的进化反应的不同细胞基础的可能原因,我们比较了新近建立的果蝇亚果蝇的北美和南美翼大小的种系。新的谱系基于北美细胞面积的纬度变化和南美细胞数量的变化。欧洲祖先氏族也基于细胞数量的纬度变化。在美国,年龄大致相同的氏族,其机翼大小变异的细胞基础的差异,以及新的南美氏族和古代欧洲氏族的相似的细胞基础,表明该氏族的古代并不能解释它的细胞基础。此外,结果表明,正在选择机翼的整体大小,而不是其蜂窝基础。不同大小的细胞系的不同细胞碱基很可能完全是偶然地或通过创始群体的遗传变异或其表达的不同模式来解释的。 [参考:36]

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