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The Population Genomics of Trans-Specific Inversion Polymorphisms in Anopheles gambiae

机译:冈比亚按蚊反特异反转多态性的种群基因组学

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摘要

In the malaria mosquito Anopheles gambiae polymorphic chromosomal inversions may play an important role in adaptation to environmental variation. Recently, we used microarray-based divergence mapping combined with targeted resequencing to map nucleotide differentiation between alternative arrangements of the 2La inversion. Here, we applied the same technique to four different polymorphic inversions on the 2R chromosome of An. gambiae. Surprisingly, divergence was much lower between alternative arrangements for all 2R inversions when compared to the 2La inversion. For one of the rearrangements, 2Ru, we successfully mapped a very small region (∼100 kb) of elevated divergence. For the other three rearrangements, we did not identify any regions of significantly high divergence, despite ample independent evidence from natural populations of geographic clines and seasonal cycling, and stable heterotic polymorphisms in laboratory populations. If these inversions are the targets of selection as hypothesized, we suggest that divergence between rearrangements may have escaped detection due to retained ancestral polymorphism in the case of the youngest 2R rearrangements and to extensive gene flux in the older 2R inversion systems that segregate in both An. gambiae and its sibling species An. arabiensis.
机译:在疟疾冈比亚按蚊中,多态性染色体倒置可能在适应环境变化中起重要作用。最近,我们使用了基于微阵列的发散图和定向重测序相结合的方法来绘制2La倒位其他排列方式之间的核苷酸差异图。在这里,我们将相同的技术应用于An 2R染色体上的四个不同的多态性倒置。冈比亚令人惊讶的是,与2La反转相比,所有2R反转的替代方案之间的差异要小得多。对于2Ru的重排之一,我们成功地绘制了一个很小的区域(〜100 kb)升高的发散度。对于其他三个重排,尽管有足够的独立证据来自地理种群和季节循环的自然种群,以及实验室种群中稳定的异质多态性,但我们并未发现任何差异显着的区域。如果这些倒位是假设的选择目标,我们建议由于最年轻的2R重排的情况下保留的祖先多态性和较旧的2R倒位系统中广泛的基因通量而导致的重排之间的差异可能逃脱了检测。 。冈比亚及其兄弟种阿拉伯

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