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No evidence for extensive horizontal gene transfer in the genome of the tardigrade Hypsibius dujardini

机译:暂无证据证明缓坡杜鹃花(Hypsibius dujardini)基因组中广泛的水平基因转移

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摘要

Tardigrades are meiofaunal ecdysozoans that are key to understanding the origins of Arthropoda. Many species of Tardigrada can survive extreme conditions through cryptobiosis. In a recent paper [Boothby TC, et al. (2015) Proc Natl Acad Sci USA 112(52):15976–15981], the authors concluded that the tardigrade Hypsibius dujardini had an unprecedented proportion (17%) of genes originating through functional horizontal gene transfer (fHGT) and speculated that fHGT was likely formative in the evolution of cryptobiosis. We independently sequenced the genome of H. dujardini. As expected from whole-organism DNA sampling, our raw data contained reads from nontarget genomes. Filtering using metagenomics approaches generated a draft H. dujardini genome assembly of 135 Mb with superior assembly metrics to the previously published assembly. Additional microbial contamination likely remains. We found no support for extensive fHGT. Among 23,021 gene predictions we identified 0.2% strong candidates for fHGT from bacteria and 0.2% strong candidates for fHGT from nonmetazoan eukaryotes. Cross-comparison of assemblies showed that the overwhelming majority of HGT candidates in the Boothby et al. genome derived from contaminants. We conclude that fHGT into H. dujardini accounts for at most 1–2% of genes and that the proposal that one-sixth of tardigrade genes originate from functional HGT events is an artifact of undetected contamination.
机译:缓坡动物是半足的蜕皮动物,是理解节肢动物起源的关键。 Tardigrada的许多物种都可以通过隐生病生存在极端条件下。在最近的一篇论文中[Boothby TC,et al。 (2015)Proc Natl Acad Sci USA 112(52):15976-15981],作者得出结论,缓坡杜鹃花(Hypsibius dujardini)具有空前的比例(17%)来自功能性水平基因转移(fHGT)的基因,并推测fHGT是可能在密码病的发展中形成。我们独立地对H. dujardini的基因组进行了测序。正如全生物DNA采样所期望的那样,我们的原始数据包含来自非目标基因组的读数。使用宏基因组学方法进行过滤后,产生了135 Mb的杜氏假丝酵母基因组装配草图,其装配指标优于先前发布的装配。可能还会有其他微生物污染。我们发现不支持广泛的fHGT。在23,021个基因预测中,我们从细菌中鉴定了0.2%的fHGT候选物,而从非metazoan真核生物中鉴定了0.2%的fHGT候选物。程序集的交叉比较显示,Boothby等人中绝大多数的HGT候选程序。来自污染物的基因组。我们得出的结论是,进入杜氏假丝酵母的fHGT最多占基因的1-2%,而提议的tardigrade基因的六分之一来自功能性HGT事件是一种未被发现的污染产物。

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