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黑腹果蝇适应性基因型-环境互作的数量性状基因座定位

QTL mapping of genotype-environment interaction for fitness in Drosophila melanogaster.

作者信息

Fry J D, Nuzhdin S V, Pasyukova E G, Mackay T F

机构信息

Department of Genetics, North Carolina State University, Raleigh 27695, USA.

出版信息

Genet Res. 1998 Apr;71(2):133-41. doi: 10.1017/s0016672398003176.

Abstract

A fundamental assumption of models for the maintenance of genetic variation by environmental heterogeneity is that selection favours alternative alleles in different environments. It is not clear, however, whether such antagonistic pleiotropy is common. We mapped quantitative trait loci (QTLs) causing variation for reproductive performance in each of three environmental treatments among a set of 98 recombinant inbred (RI) lines derived from a cross between two D. melanogaster laboratory strains. The three treatments were standard medium at 25 degrees C, ethanol-supplemented medium at 25 degrees C, and standard medium at 18 degrees C. The RI lines showed highly significant genotype-environment interaction for the fitness measure. Of six QTLs with significant effects on fitness in at least one of the environments, five had significantly different effects at the different temperatures. In each case, the QTL by temperature interaction arose because the QTL had stronger effects at one temperature than at the other. No evidence for QTLs with opposite fitness effects in different environments was found. These results, together with those of recent studies of crop plants, suggest that antagonistic pleiotropy is a relatively uncommon form of genotype-environment interaction for fitness, but additional studies of natural populations are needed to confirm this conclusion.

摘要

通过环境异质性维持遗传变异的模型的一个基本假设是,选择在不同环境中有利于不同的等位基因。然而,这种拮抗性多效性是否普遍尚不清楚。我们在一组由两个黑腹果蝇实验室菌株杂交产生的98个重组近交(RI)系中,绘制了在三种环境处理中的每一种中导致繁殖性能变异的数量性状基因座(QTL)。这三种处理分别是25摄氏度的标准培养基、25摄氏度添加乙醇的培养基和18摄氏度的标准培养基。RI系在适合度测量方面表现出高度显著的基因型-环境相互作用。在至少一种环境中对适合度有显著影响的六个QTL中,有五个在不同温度下有显著不同的影响。在每种情况下,QTL与温度的相互作用是因为该QTL在一个温度下的影响比在另一个温度下更强。未发现不同环境中具有相反适合度效应的QTL的证据。这些结果与最近对作物植物的研究结果一起表明,拮抗性多效性是适合度的基因型-环境相互作用的一种相对不常见的形式,但需要对自然种群进行更多研究来证实这一结论。

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