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一种多用途且通用的腹足纲软体动物基因组研究工具。

A polyvalent and universal tool for genomic studies in gastropod molluscs (Heterobranchia).

机构信息

Museum of Comparative Zoology, Department of Organismic and Evolutionary Biology, Harvard University, 26 Oxford Street, Cambridge, MA 02138, USA.

出版信息

Mol Phylogenet Evol. 2021 Feb;155:106996. doi: 10.1016/j.ympev.2020.106996. Epub 2020 Oct 24.

Abstract

Molluscs are the second most diverse animal phylum and heterobranch gastropods present ~ 44,000 species. These comprise fascinating creatures with huge morphological and ecological disparity. Such great diversity comes with even larger phylogenetic uncertainty and many taxa have been largely neglected in molecular assessments. Genomic tools have provided resolution to deep cladogenic events but generating large numbers of transcriptomes/genomes is expensive and usually requires fresh material. Here we leverage a target enrichment approach to design and synthesize a probe set based on available genomes and transcriptomes across Heterobranchia. Our probe set contains 57,606 70mer baits and targets a total of 2,259 ultra-conserved elements (UCEs). Post-sequencing capture efficiency was tested against 31 marine heterobranchs from major groups, including Acochlidia, Acteonoidea, Aplysiida, Cephalaspidea, Pleurobranchida, Pteropoda, Runcinida, Sacoglossa, and Umbraculida. The combined Trinity and Velvet assemblies recovered up to 2,211 UCEs in Tectipleura, up to 1,978 in Nudipleura, and up to 1,927 in Acteonoidea, the latter two being the most distantly related taxa to our core study group. Total alignment length was 525,599 bp and contained 52% informative sites and 21% missing data. Maximum-likelihood and Bayesian inference approaches recovered the monophyly of all orders tested as well as the larger clades Nudipleura, Panpulmonata, and Euopisthobranchia. The successful enrichment of diversely preserved material and DNA concentrations demonstrate the polyvalent nature of UCEs, and the universality of the probe set designed. We believe this probe set will enable multiple, interesting lines of research, that will benefit from an inexpensive and largely informative tool that will, additionally, benefit from the access to museum collections to gather genomic data.

摘要

软体动物是第二大多样性的动物门,异鳃目腹足动物有~44000 种。这些生物形态和生态差异巨大,非常迷人。这种巨大的多样性伴随着更大的系统发育不确定性,许多分类群在分子评估中基本上被忽视了。基因组工具为深入的分支事件提供了分辨率,但生成大量转录组/基因组既昂贵又通常需要新鲜的材料。在这里,我们利用目标富集方法,根据异鳃目各纲的现有基因组和转录组设计并合成了一个探针集。我们的探针集包含 57606 个 70mer 诱饵,共靶向 2259 个超保守元件(UCE)。对来自主要类群的 31 种海洋异鳃动物进行了测序后捕获效率测试,包括 Acochlidia、Acteonoidea、Aplysiida、Cephalaspidea、Pleurobranchida、Pteropoda、Runcinida、Sacoglossa 和 Umbraculida。在 Tectipleura 中,联合 Trinity 和 Velvet 组装最多可以恢复 2211 个 UCE,在 Nudipleura 中最多可以恢复 1978 个,在 Acteonoidea 中最多可以恢复 1927 个,后两者是与我们核心研究组关系最远的分类群。总比对长度为 525599bp,包含 52%信息位点和 21%缺失数据。最大似然法和贝叶斯推断方法都恢复了所测试的所有目以及更大的进化枝 Nudipleura、Panpulmonata 和 Euopisthobranchia 的单系性。对各种保存材料和 DNA 浓度的成功富集表明 UCE 具有多用途性,并且所设计的探针集具有普遍性。我们相信,这个探针集将使多个有趣的研究领域受益,该探针集价格低廉且信息丰富,此外,还可以利用博物馆藏品来收集基因组数据。

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