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倒位对种内和种间重组和分歧的影响。

Effects of inversions on within- and between-species recombination and divergence.

机构信息

Biology Department, Duke University, USA.

出版信息

Genome Biol Evol. 2011;3:830-41. doi: 10.1093/gbe/evr081. Epub 2011 Aug 9.

Abstract

Chromosomal inversions disrupt recombination in heterozygotes by both reducing crossing-over within inverted regions and increasing it elsewhere in the genome. The reduction of recombination in inverted regions facilitates the maintenance of hybridizing species, as outlined by various models of chromosomal speciation. We present a comprehensive comparison of the effects of inversions on recombination rates and on nucleotide divergence. Within an inversion differentiating Drosophila pseudoobscura and Drosophila persimilis, we detected one double recombinant among 9,739 progeny from F(1) hybrids screened, consistent with published double-crossover frequencies observed within species. Despite similar rates of exchange within and between species, we found no sequence-based evidence of ongoing gene exchange between species within this inversion, but significant exchange was inferred within species. We also observed greater differentiation at regions near inversion breakpoints between species versus within species. Moreover, we observed strong "interchromosomal effect" (higher recombination in inversion heterozygotes between species) with up to 9-fold higher recombination rates along collinear segments of chromosome two in hybrids. Further, we observed that regions most susceptible to changes in recombination rates corresponded to regions with lower recombination rates in homokaryotypes. Finally, we showed that interspecies nucleotide divergence is lower in regions with greater increases in recombination rate, potentially resulting from greater interspecies exchange. Overall, we have identified several similarities and differences between inversions segregating within versus between species in their effects on recombination and divergence. We conclude that these differences are most likely due to lower frequency of heterokaryotypes and to fitness consequences from the accumulation of various incompatibilities between species. Additionally, we have identified possible effects of inversions on interspecies gene exchange that had not been considered previously.

摘要

染色体倒位通过减少倒位区域内的交叉互换并增加基因组其他区域的交叉互换来破坏杂合子中的重组。各种染色体物种形成模型都概述了,倒位区域重组的减少有利于杂交种的维持。我们对倒位对重组率和核苷酸分化的影响进行了全面比较。在区分果蝇 pseudoobscura 和 Drosophila persimilis 的倒位中,我们在筛选的 F(1)杂种 9739 个后代中检测到一个双重组体,与在种内观察到的已发表的双交叉互换频率一致。尽管种内和种间的交换率相似,但我们在该倒位内没有发现种间基因交换的序列证据,但在种内推断出了显著的交换。我们还观察到,与种内相比,在物种之间的倒位断点附近的区域,分化程度更大。此外,我们观察到,在杂种中,两条染色体上的共线性片段之间存在强烈的“染色体间效应”(种间倒位杂合体中的重组率更高),最高可达 9 倍。此外,我们观察到,最容易受到重组率变化影响的区域与同核型中重组率较低的区域相对应。最后,我们表明,在重组率增加较大的区域,种间核苷酸分化较低,这可能是由于种间交换增加所致。总的来说,我们在倒位对重组和分化的影响方面,识别出了在种内和种间分离的倒位之间的几个相似之处和差异。我们得出的结论是,这些差异最可能是由于异核型的频率较低,以及种间积累的各种不兼容对适应度的影响所致。此外,我们还发现了以前未曾考虑过的倒位对种间基因交换的可能影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a6f/3171675/9b0c9a75930f/gbeevr081f01_3c.jpg

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