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从扁形动物门扁形虫的基因组看早期动物进化。

Insights into early animal evolution from the genome of the xenacoelomorph worm .

机构信息

Center for Life's Origins and Evolution, Department of Genetics, Evolution and Environment, University College London, London, United Kingdom.

worm~lab, Institute of Zoology, University of Cologne, Cologne, Germany.

出版信息

Elife. 2024 Aug 7;13:e94948. doi: 10.7554/eLife.94948.

Abstract

The evolutionary origins of Bilateria remain enigmatic. One of the more enduring proposals highlights similarities between a cnidarian-like planula larva and simple acoel-like flatworms. This idea is based in part on the view of the Xenacoelomorpha as an outgroup to all other bilaterians which are themselves designated the Nephrozoa (protostomes and deuterostomes). Genome data can provide important comparative data and help understand the evolution and biology of enigmatic species better. Here, we assemble and analyze the genome of the simple, marine xenacoelomorph , a key species for our understanding of early bilaterian evolution. Our highly contiguous genome assembly of has a size of ~111 Mbp in 18 chromosome-like scaffolds, with repeat content and intron, exon, and intergenic space comparable to other bilaterian invertebrates. We find to have a similar number of genes to other bilaterians and to have retained ancestral metazoan synteny. Key bilaterian signaling pathways are also largely complete and most bilaterian miRNAs are present. Overall, we conclude that has a complex genome typical of bilaterians, which does not reflect the apparent simplicity of its body plan that has been so important to proposals that the Xenacoelomorpha are the simple sister group of the rest of the Bilateria.

摘要

两侧对称动物的进化起源仍然是个谜。其中一个更持久的观点强调了刺胞动物样的浮浪幼虫和简单的无腔扁虫之间的相似性。这个想法部分基于这样一种观点,即 Xenacoelomorpha 是所有其他两侧对称动物的外群,而这些动物本身被指定为 Nephrozoa(原口动物和后口动物)。基因组数据可以提供重要的比较数据,并有助于更好地了解神秘物种的进化和生物学。在这里,我们组装和分析了简单的海洋 Xenacoelomorpha 的基因组,这是我们理解早期两侧对称动物进化的关键物种。我们的高度连续的基因组组装大小约为 111 Mbp,有 18 个染色体样支架,重复含量、内含子、外显子和基因间空间与其他无脊椎后生动物相当。我们发现 Xenacoelomorpha 与其他两侧对称动物的基因数量相似,并保留了祖先后生动物的基因排列顺序。关键的两侧对称动物信号通路也基本完整,大多数两侧对称动物的 miRNA 也存在。总的来说,我们的结论是 Xenacoelomorpha 具有典型的复杂基因组,这与其身体结构的明显简单性不一致,而这种身体结构的简单性对于 Xenacoelomorpha 是其余两侧对称动物的简单姊妹群的观点非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a79/11521371/efa8477ddb91/elife-94948-fig1.jpg

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