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Habitat Variability Correlates with Duplicate Content of Drosophila Genomes

机译:生境变异性与果蝇基因组重复内容相关。

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摘要

The factors limiting the habitat range of species are crucial in understanding their biodiversity and response to environmental change. Yet the genetic and genomic architectures that produce genetic variation to enable environmental adaptation have remained poorly understood. Here we show that the proportion of duplicated genes (PD) in the whole genomes of fully sequenced Drosophila species is significantly correlated with environmental variability within the habitats measured by the climatic envelope and habitat diversity. Furthermore, species with a low PD tend to lose the duplicated genes owing to their faster evolution. These results indicate that the rapid relaxation of functional constraints on duplicated genes resulted in a low PD for species with lower habitat diversity, and suggest that the maintenance of duplicated genes gives organisms an ecological advantage during evolution. We therefore propose that the PD in a genome is related to adaptation to environmental variation.
机译:限制物种栖息地范围的因素对于理解物种的生物多样性和对环境变化的响应至关重要。然而,产生遗传变异以实现环境适应的遗传和基因组架构仍然知之甚少。在这里,我们显示了在果蝇完全测序后的整个基因组中,重复基因(PD)的比例与气候范围和生境多样性所衡量的生境内的环境变异性显着相关。此外,具有低PD的物种由于其更快的进化而倾向于丢失重复的基因。这些结果表明,对复制基因的功能限制的快速放松导致具有较低栖息地多样性的物种的PD降低,并且表明复制基因的维持在进化过程中为生物提供了生态优势。因此,我们提出基因组中的PD与适应环境变化有关。

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