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Early vertebrate whole genome duplications were predated by a period of intense genome rearrangement

机译:早期的脊椎动物全基因组重复发生在一段时间的强烈基因组重排之前

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摘要

Researchers, supported by data from polyploid plants, have suggested that whole genome duplication (WGD) may induce genomic instability and rearrangement, an idea which could have important implications for vertebrate evolution. Benefiting from the newly released amphioxus genome sequence (Branchiostoma floridae), an invertebrate that researchers have hoped is representative of the ancestral chordate genome, we have used gene proximity conservation to estimate rates of genome rearrangement throughout vertebrates and some of their invertebrate ancestors. We find that, while amphioxus remains the best single source of invertebrate information about the early chordate genome, its genome structure is not particularly well conserved and it cannot be considered a fossilization of the vertebrate preduplication genome. In agreement with previous reports, we identify two WGD events in early vertebrates and another in teleost fish. However, we find that the early vertebrate WGD events were not followed by increased rates of genome rearrangement. Indeed, we measure massive genome rearrangement prior to these WGD events. We propose that the vertebrate WGD events may have been symptoms of a preexisting predisposition toward genomic structural change.
机译:研究人员在多倍体植物的数据支持下表明,全基因组复制(WGD)可能会导致基因组不稳定和重排,这一观点可能对脊椎动物的进化产生重要影响。得益于新近发布的两栖动物基因组序列(佛罗里达州分支杆菌),研究人员希望该无脊椎动物可以代表祖先的胆酸盐基因组,我们利用基因邻近保守性来估计整个脊椎动物及其一些无脊椎动物祖先的基因组重排率。我们发现,尽管文昌鱼仍然是有关早期氯酸盐基因组的无脊椎动物信息的最佳单一来源,但其基因组结构并不是特别保守,因此不能认为是脊椎动物重复复制基因组的化石。与以前的报告一致,我们在早期的脊椎动物中发现了两个WGD事件,在硬骨鱼中发现了另一个。但是,我们发现早期的脊椎动物WGD事件并未跟随着基因组重排率的提高。确实,我们在这些WGD事件之前测量了大规模的基因组重排。我们建议脊椎动物WGD事件可能已经是对基因组结构变化的预先存在的倾向的症状。

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