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新属及新种(鞘丝藻科,鞘丝藻目):从俄罗斯贝加尔湖海绵附着物中分离出的一种新蓝藻属。

gen. et sp. nov. (Coleofasciculaceae, Coleofasciculales): A New Genus of Cyanobacteria Isolated from Sponge Fouling in Lake Baikal, Russia.

作者信息

Sorokovikova Ekaterina, Tikhonova Irina, Evseev Peter, Krasnopeev Andrey, Khanaev Igor, Potapov Sergey, Gladkikh Anna, Nebesnykh Ivan, Belykh Olga

机构信息

Limnological Institute of the Siberian Branch of the Russian Academy of Sciences, 3 Ulan-Batorskaya Str., Irkutsk 664033, Russia.

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry of the Russian Academy of Sciences, 16/10 Miklukho-Maklaya Str., GSP-7, Moscow 117997, Russia.

出版信息

Microorganisms. 2023 Jul 9;11(7):1779. doi: 10.3390/microorganisms11071779.

Abstract

The proliferation of benthic cyanobacteria has been observed in Lake Baikal since 2011 and is a vivid manifestation of the ecological crisis occurring in the littoral zone. The cyanobacterium sp. has formed massive fouling on all types of benthic substrates, including endemic Baikal sponges. The strain BBK-W-15 (=IPPAS B-2062), which was isolated from sponge fouling in 2015, was used for further taxonomic determination. A polyphasic approach revealed that it is a cryptic taxon of cyanobacteria. Morphological evaluation of the strain indicated the presence of cylindrical filaments with isodiametric cells enclosed in individual sheaths and coleodesmoid false branching. Strain ultrastructure (fascicular thylakoids and type C cell division) is characteristic of the Microcoleaceae and Coleofasciculaceae families. An integrated analysis that included 16S rRNA gene phylogeny, conserved protein phylogeny and whole-genome comparisons indicated the unique position of BBK-W-15, thus supporting the proposed delineation of the new genus . Through characterisation by morphology, 16S, ITS and genomic analysis, a new cyanobacterium of the family Coleofasciculaceae gen. et sp. nov. was described.

摘要

自2011年以来,贝加尔湖已观测到底栖蓝藻的增殖,这是沿岸带正在发生的生态危机的生动体现。蓝藻菌株在包括贝加尔湖特有海绵在内的所有类型的底栖基质上形成了大量污垢。2015年从海绵污垢中分离出的菌株BBK-W-15(=IPPAS B-2062)用于进一步的分类鉴定。多相分类方法表明,它是蓝藻的一个隐秘分类单元。对该菌株的形态学评估表明,存在圆柱形丝状体,其等径细胞被包裹在单个鞘中,并具有鞘丝藻状假分支。菌株的超微结构(成束类囊体和C型细胞分裂)是微鞘藻科和束鞘藻科的特征。包括16S rRNA基因系统发育、保守蛋白系统发育和全基因组比较在内的综合分析表明了BBK-W-15的独特位置,从而支持了新属的提议划分。通过形态学、16S、ITS和基因组分析进行表征,描述了束鞘藻科的一个新蓝藻属及新种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85f8/10385159/79f2eb10d934/microorganisms-11-01779-g001.jpg

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