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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Dissection of Hybrid Incompatibilities Between Drosophila simulans and D. mauritiana. I. Differential Accumulation of Hybrid Male Sterility Effects on the X and Autosomes
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Genetic Dissection of Hybrid Incompatibilities Between Drosophila simulans and D. mauritiana. I. Differential Accumulation of Hybrid Male Sterility Effects on the X and Autosomes

机译:果蝇和D. Mauritiana的杂种不相容性的遗传解剖。 I.杂交阳性育种效应对X和纯度染色物的差异累积

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The genetic basis of hybrid incompatibility in crosses between Drosophila mauritiana and D. simulans was investigated to gain insight into the evolutionary mechanisms of speciation. In this study, segments of the D. mauritiana third chromosome were introgressed into a D. simulans genetic background and tested as homozygotes for viability, male fertility, and female fertility. The entire third chromosome was covered with partially overlapping segments. Many segments were male sterile, while none were female sterile or lethal, confirming previous reports of the rapid evolution of hybrid male sterility (HMS). A statistical model was developed to quantify the HMS accumulation. In comparison with previous work on the X chromosome, we estimate that the X has ~2.5 times the density of HMS factors as the autosomes. We also estimate that the whole genome contains ~15 HMS “equivalents”— i.e ., 15 times the minimum number of incompatibility factors necessary to cause complete sterility. Although some caveats for the quantitative estimate of a 2.5-fold density difference are described, this study supports the notion that the X chromosome plays a special role in the evolution of reproductive isolation. Possible mechanisms of a “large X ” effect include selective fixation of new mutations that are recessive or partially recessive and the evolution of sex-ratio distortion systems.
机译:研究了果蝇毛里塔尼亚岛和D.杂交杂交不相容性的遗传基础。研究了模拟人类的杂交态度,以了解物种的进化机制。在这项研究中,D. Mauritiana第三染色体的区段血栓溶于D. Simulans遗传背景,并作为纯合子的纯合,用于活力,男性生育和女性生育率。整个第三染色体被部分重叠的段覆盖。许多段是雄性不育,而没有女性无菌或致命的,确认先前报道杂交雄性不育(HMS)的快速演变。开发了统计模型来量化HMS累积。与以前的X染色体上的工作相比,我们估计X具有〜2.5倍的HMS因子密度作为自动体的密度。我们还估计全基因组含有〜15小时“等同物” - 即,15倍,造成完全无菌所需的最小不相容性因子的最小数量。尽管描述了用于2.5倍密度差异的定量估计的一些警告,但是该研究支持X染色体在生殖隔离的演变中发挥着特殊作用的观点。 “大X”效果的可能机制包括选择性固定新突变,其是隐性或部分隐性的和性别比失真系统的演变。

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