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系统发育分析和海洋产油种 Nannochloris sp. “desiccata”(绿藻门,绿藻纲)的重新分类,该种先前被称为 Chlorella desiccata,得到了高质量基因组组装的支持。

Phylogenetic analyses and reclassification of the oleaginous marine species Nannochloris sp. "desiccata" (Trebouxiophyceae, Chlorophyta), formerly Chlorella desiccata, supported by a high-quality genome assembly.

机构信息

Bioscience Division, Los Alamos National Laboratory, PO Box 1663, Los Alamos, New Mexico, 87545, USA.

出版信息

J Phycol. 2022 Jun;58(3):436-448. doi: 10.1111/jpy.13242. Epub 2022 Mar 23.

Abstract

Microalgae are diverse, with many gaps remaining in phylogenetic and physiological understanding. Thus, studying new microalgae species increases our broader comprehension of biological diversity, and evaluation of new candidates as algal production platforms can lead to improved productivity under a variety of cultivation conditions. Chlorella is a genus of fast-growing species often isolated from freshwater habitats and cultivated as a source of nutritional supplements. However, the use of freshwater increases competition with other freshwater needs. We identified Chlorella desiccata to be worthy of further investigation as a potential algae production strain, due to its isolation from a marine environment and its promising growth and biochemical composition properties. Long-read genomic sequencing was conducted for C. desiccata UTEX 2526, resulting in a high-quality, near chromosome level, diploid genome with an assembly length of 21.55 Mbp in only 18 contigs. We also report complete circular mitochondrial and chloroplast genomes. Phylogenomic and phylogenetic analyses using nuclear, chloroplast, 18S rRNA, and actin sequences revealed that this species clades within strains currently identified as Nannochloris (Trebouxiophyceae, Chlorophyta), leading to its reclassification as Nannochloris sp. "desiccata" UTEX 2526. The mode of cell division for this species is autosporulation, differing from the type species N. bacillaris. As has occurred across multiple microalgae genera, there are repeated examples of Nannochloris species reclassification in the literature. This high-quality genome assembly and phylogenetic analysis of the potential algal production strain Nannochloris sp. "desiccata" UTEX 2526 provides an important reference and useful tool for further studying this region of the phylogenetic tree.

摘要

微藻种类繁多,在系统发育和生理理解方面仍存在许多空白。因此,研究新的微藻物种可以增加我们对生物多样性的更广泛理解,并且评估新的候选藻种作为藻类生产平台,可以在各种培养条件下提高生产力。小球藻是一个快速生长的物种属,通常从淡水生境中分离出来,并被培养为营养补充剂的来源。然而,淡水的使用增加了与其他淡水需求的竞争。我们发现,由于它是从海洋环境中分离出来的,并且具有良好的生长和生化组成特性,因此小球藻 Desiccata 值得进一步研究,作为一种潜在的藻类生产菌株。

对小球藻 Desiccata UTEX 2526 进行了长读基因组测序,得到了高质量的、近乎染色体水平的二倍体基因组,组装长度为 21.55Mbp,仅由 18 个 contigs 组成。我们还报告了完整的圆形线粒体和叶绿体基因组。使用核、叶绿体、18S rRNA 和肌动蛋白序列进行的系统基因组学和系统发育分析表明,该物种在目前被鉴定为拟球藻属(Trebouxiophyceae,Chlorophyta)的菌株中聚类,导致其重新分类为小球藻属“Desiccata”UTEX 2526。该物种的细胞分裂方式为自孢子形成,与模式种 N. bacillaris 不同。与多个微藻属一样,文献中也有多次拟球藻属物种重新分类的例子。

这种高质量的基因组组装和对潜在藻类生产菌株小球藻属“Desiccata”UTEX 2526 的系统发育分析,为进一步研究系统发育树的这一区域提供了重要的参考和有用的工具。

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