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对超小型淡水绿藻 Medakamo hakoo 的基因组分析。

Genomic analysis of an ultrasmall freshwater green alga, Medakamo hakoo.

机构信息

Department of Applied Biological Science, Faculty of Science and Technology, Tokyo University of Science, Noda, Chiba, 278-8510, Japan.

Department of Biological Science and Chemistry, Faculty of Science, Graduate School of Medicine, Yamaguchi University, Yoshida, Yamaguchi, 753-8512, Japan.

出版信息

Commun Biol. 2023 Jan 23;6(1):89. doi: 10.1038/s42003-022-04367-9.

Abstract

Ultrasmall algae have attracted the attention of biologists investigating the basic mechanisms underlying living systems. Their potential as effective organisms for producing useful substances is also of interest in bioindustry. Although genomic information is indispensable for elucidating metabolism and promoting molecular breeding, many ultrasmall algae remain genetically uncharacterized. Here, we present the nuclear genome sequence of an ultrasmall green alga of freshwater habitats, Medakamo hakoo. Evolutionary analyses suggest that this species belongs to a new genus within the class Trebouxiophyceae. Sequencing analyses revealed that its genome, comprising 15.8 Mbp and 7629 genes, is among the smallest known genomes in the Viridiplantae. Its genome has relatively few genes associated with genetic information processing, basal transcription factors, and RNA transport. Comparative analyses revealed that 1263 orthogroups were shared among 15 ultrasmall algae from distinct phylogenetic lineages. The shared gene sets will enable identification of genes essential for algal metabolism and cellular functions.

摘要

超小型藻类引起了生物学家的关注,他们正在研究生命系统的基本机制。它们作为生产有用物质的有效生物的潜力在生物工业中也很有意义。尽管基因组信息对于阐明代谢和促进分子育种是必不可少的,但许多超小型藻类仍然没有遗传特征。在这里,我们展示了淡水生境中超小型绿藻 Medakamo hakoo 的核基因组序列。进化分析表明,该物种属于 Trebouxiophyceae 目中的一个新属。测序分析表明,其基因组由 15.8 Mbp 和 7629 个基因组成,是已知的 Viridiplantae 中最小的基因组之一。它的基因组与遗传信息处理、基础转录因子和 RNA 转运相关的基因相对较少。比较分析表明,来自不同进化枝的 15 种超小型藻类共有 1263 个直系同源群。共享的基因集将能够鉴定出对藻类代谢和细胞功能至关重要的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f5c/9871001/f1c586b9bbd6/42003_2022_4367_Fig1_HTML.jpg

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