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质体基因组和蛋白质阐明了真眼点藻及其细菌内共生体的进化。

Plastid Genomes and Proteins Illuminate the Evolution of Eustigmatophyte Algae and Their Bacterial Endosymbionts.

机构信息

Department of Biology and Ecology Faculty of Science, University of Ostrava, Ostrava, Czech Republic.

Faculty of Science, Institute of Environmental Technologies, University of Ostrava, Ostrava, Czech Republic.

出版信息

Genome Biol Evol. 2019 Feb 1;11(2):362-379. doi: 10.1093/gbe/evz004.

Abstract

Eustigmatophytes, a class of stramenopile algae (ochrophytes), include not only the extensively studied biotechnologically important genus Nannochloropsis but also a rapidly expanding diversity of lineages with much less well characterized biology. Recent discoveries have led to exciting additions to our knowledge about eustigmatophytes. Some proved to harbor bacterial endosymbionts representing a novel genus, Candidatus Phycorickettsia, and an operon of unclear function (ebo) obtained by horizontal gene transfer from the endosymbiont lineage was found in the plastid genomes of still other eustigmatophytes. To shed more light on the latter event, as well as to generally improve our understanding of the eustigmatophyte evolutionary history, we sequenced plastid genomes of seven phylogenetically diverse representatives (including new isolates representing undescribed taxa). A phylogenomic analysis of plastid genome-encoded proteins resolved the phylogenetic relationships among the main eustigmatophyte lineages and provided a framework for the interpretation of plastid gene gains and losses in the group. The ebo operon gain was inferred to have probably occurred within the order Eustigmatales, after the divergence of the two basalmost lineages (a newly discovered hitherto undescribed strain and the Pseudellipsoidion group). When looking for nuclear genes potentially compensating for plastid gene losses, we noticed a gene for a plastid-targeted acyl carrier protein that was apparently acquired by horizontal gene transfer from Phycorickettsia. The presence of this gene in all eustigmatophytes studied, including representatives of both principal clades (Eustigmatales and Goniochloridales), is a genetic footprint indicating that the eustigmatophyte-Phycorickettsia partnership started no later than in the last eustigmatophyte common ancestor.

摘要

真眼点藻,一类不等鞭毛藻(黄藻),不仅包括被广泛研究的生物技术上重要的物种——拟球藻属,还包括一个快速扩展的、生物学特征了解甚少的分支多样性。最近的发现增加了我们对真眼点藻的了解。一些物种被证明含有细菌内共生体,代表了一个新的属——候选 Phycorickettsia,并且一个来自内共生体谱系的功能不明的操纵子(ebo)通过水平基因转移获得,在其他真眼点藻的质体基因组中也被发现。为了更深入地了解后者,以及更全面地了解真眼点藻的进化历史,我们对七个系统发育多样化的代表物的质体基因组进行了测序(包括代表未描述分类群的新分离物)。质体基因组编码蛋白的系统基因组分析解决了主要真眼点藻分支之间的系统发育关系,并为解释该组中质体基因的获得和丢失提供了框架。ebo 操纵子的获得可能发生在 Eustigmatales 目内,在两个最基部的分支(一个新发现的迄今未描述的菌株和 Pseudellipsoidion 组)分化之后。在寻找可能补偿质体基因丢失的核基因时,我们注意到一个质体靶向酰基辅酶 A 载体蛋白的基因,该基因显然是通过水平基因转移从 Phycorickettsia 获得的。在所有研究的真眼点藻中都存在这个基因,包括两个主要分支(Eustigmatales 和 Goniochloridales)的代表物,这是一个遗传痕迹,表明真眼点藻- Phycorickettsia 伙伴关系早在最后一个真眼点藻共同祖先就开始了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e9b/6367104/a31f0c952cf8/evz004f1.jpg

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