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Recombination rate predicts inversion size in Diptera.

机译:重组率预测双翅目的倒置大小。

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摘要

Most species of the Drosophila genus and other Diptera are polymorphic for paracentric inversions. A common observation is that successful inversions are of intermediate size. We test here the hypothesis that the selected property is the recombination length of inversions, not their physical length. If so, physical length of successful inversions should be negatively correlated with recombination rate across species. This prediction was tested by a comprehensive statistical analysis of inversion size and recombination map length in 12 Diptera species for which appropriate data are available. We found that (1) there is a wide variation in recombination map length among species; (2) physical length of successful inversions varies greatly among species and is inversely correlated with the species recombination map length; and (3) neither the among-species variation in inversion length nor the correlation are observed in unsuccessful inversions. The clear differences between successful and unsuccessful inversions point to natural selection as the most likely explanation for our results. Presumably the selective advantage of an inversion increases with its length, but so does its detrimental effect on fertility due to double crossovers. Our analysis provides the strongest and most extensive evidence in favor of the notion that the adaptive value of inversions stems from their effect on recombination.
机译:果蝇属和双翅目属的大多数物种对于副中心反转是多态的。一个普遍的观察是成功的反演是中等大小的。我们在这里检验以下假设:所选属性是反演的重组长度,而不是其物理长度。如果是这样,成功反转的物理长度应与物种间的重组率负相关。通过对12个双翅类物种的反向大小和重组图长度进行全面的统计分析,测试了这一预测,并获得了适当的数据。我们发现(1)物种之间的重组图长度存在很大差异; (2)成功反转的物理长度在物种之间差异很大,并且与物种重组图长度成反比; (3)在不成功的反演中,没有观察到物种间的反演长度变化或相关性。成功和不成功的反演之间的明显差异表明,自然选择是我们结果的最可能解释。推测反转的选择优势随着其长度的增加而增加,但由于两次交换,其对生育力的有害影响也随之增加。我们的分析提供了最有力和最广泛的证据,支持以下观点:反转的适应性价值源于它们对重组的影响。

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