Suppr超能文献

粘孢子虫微胶原蛋白和线虫半乳凝集素的多样性和进化。

Diversity and evolution of myxozoan minicollagens and nematogalectins.

机构信息

Department of Zoology, Tel Aviv University, Tel Aviv, Israel.

出版信息

BMC Evol Biol. 2014 Sep 29;14:205. doi: 10.1186/s12862-014-0205-0.

Abstract

BACKGROUND

Myxozoa are a diverse group of metazoan parasites with a very simple organization, which has for decades eluded their evolutionary origin. Their most prominent and characteristic feature is the polar capsule: a complex intracellular structure of the myxozoan spore, which plays a role in host infection. Striking morphological similarities have been found between myxozoan polar capsules and nematocysts, the stinging structures of cnidarians (corals, sea anemones and jellyfish) leading to the suggestion that Myxozoa and Cnidaria share a more recent common ancestry. This hypothesis has recently been supported by phylogenomic evidence and by the identification of a nematocyst specific minicollagen gene in the myxozoan Tetracapsuloides bryosalmonae. Here we searched genomes and transcriptomes of several myxozoan taxa for the presence of additional cnidarian specific genes and characterized these genes within a phylogenetic context.

RESULTS

Illumina assemblies of transcriptome or genome data of three myxozoan species (Enteromyxum leei, Kudoa iwatai, and Sphaeromyxa zaharoni) and of the enigmatic cnidarian parasite Polypodium hydriforme (Polypodiozoa) were mined using tBlastn searches with nematocyst-specific proteins as queries. Several orthologs of nematogalectins and minicollagens were identified. Our phylogenetic analyses indicate that myxozoans possess three distinct minicollagens. We found that the cnidarian repertoire of nematogalectins is more complex than previously thought and we identified additional members of the nematogalectin family. Cnidarians were found to possess four nematogalectin/ nematogalectin-related genes, while in myxozoans only three genes could be identified.

CONCLUSIONS

Our results demonstrate that myxozoans possess a diverse array of genes that are taxonomically restricted to Cnidaria. Characterization of these genes provide compelling evidence that polar capsules and nematocysts are homologous structures and that myxozoans are highly degenerate cnidarians. The diversity of minicollagens was higher than previously thought, with the presence of three minicollagen genes in myxozoans. Our phylogenetic results suggest that the different myxozoan sequences are the results of ancient divergences within Cnidaria and not of recent specializations of the polar capsule. For both minicollagen and nematogalectin, our results show that myxozoans possess less gene copies than their cnidarian counter parts, suggesting that the polar capsule gene repertoire was simplified with their reduced body plan.

摘要

背景

粘孢子虫是一类具有非常简单组织的后生动物寄生虫,其进化起源几十年来一直难以捉摸。它们最显著和特征性的特征是极囊:粘孢子虫孢子的一种复杂的细胞内结构,在宿主感染中起作用。粘孢子虫极囊与刺胞动物(珊瑚、海葵和水母)的刺丝囊之间存在惊人的形态相似性,这导致人们提出粘孢子动物和刺胞动物具有更近的共同祖先。这一假设最近得到了基因组学证据的支持,并通过在粘孢子动物 Tetracapsuloides bryosalmonae 中鉴定出一种刺丝囊特异性的微胶原基因得到了证实。在这里,我们在几个粘孢子动物分类群的基因组和转录组中搜索了额外的刺胞动物特异性基因的存在,并在系统发育背景下对这些基因进行了特征描述。

结果

使用 tBlastn 搜索,以刺丝囊特异性蛋白作为查询,从三种粘孢子动物(Enteromyxum leei、Kudoa iwatai 和 Sphaeromyxa zaharoni)的转录组或基因组的 Illumina 组装以及神秘的刺胞动物寄生虫 Polypodium hydriforme(Polypodiozoa)的转录组或基因组数据中挖掘到了一些线虫凝集素和微胶原的直系同源物。我们的系统发育分析表明,粘孢子动物具有三种不同的微胶原。我们发现,刺胞动物的线虫凝集素库比以前认为的更为复杂,并且我们鉴定出了线虫凝集素家族的其他成员。刺胞动物有四个线虫凝集素/线虫凝集素相关基因,而粘孢子动物只能鉴定出三个基因。

结论

我们的研究结果表明,粘孢子动物拥有一系列在分类学上仅限于刺胞动物的多样化基因。这些基因的特征描述提供了令人信服的证据,证明极囊和刺丝囊是同源结构,粘孢子动物是高度退化的刺胞动物。微胶原的多样性比以前认为的要高,粘孢子动物中有三个微胶原基因。我们的系统发育结果表明,不同的粘孢子动物序列是刺胞动物内部古老分歧的结果,而不是极囊的近期特化的结果。对于微胶原和线虫凝集素,我们的结果表明,粘孢子动物的基因拷贝数比它们的刺胞动物对应物少,这表明极囊基因库随着它们的身体计划的简化而简化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffc5/4195985/4297e956f2ad/12862_2014_205_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验