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蓝藻地衣中念珠藻属基因组的独特特征。

Distinctive characters of Nostoc genomes in cyanolichens.

机构信息

Faculty of Life and Environmental Sciences, University of Iceland, Sturlugata 7, Reykjavík, 101, Iceland.

出版信息

BMC Genomics. 2018 Jun 5;19(1):434. doi: 10.1186/s12864-018-4743-5.

Abstract

BACKGROUND

Cyanobacteria of the genus Nostoc are capable of forming symbioses with a wide range of organism, including a diverse assemblage of cyanolichens. Only certain lineages of Nostoc appear to be able to form a close, stable symbiosis, raising the question whether symbiotic competence is determined by specific sets of genes and functionalities.

RESULTS

We present the complete genome sequencing, annotation and analysis of two lichen Nostoc strains. Comparison with other Nostoc genomes allowed identification of genes potentially involved in symbioses with a broad range of partners including lichen mycobionts. The presence of additional genes necessary for symbiotic competence is likely reflected in larger genome sizes of symbiotic Nostoc strains. Some of the identified genes are presumably involved in the initial recognition and establishment of the symbiotic association, while others may confer advantage to cyanobionts during cohabitation with a mycobiont in the lichen symbiosis.

CONCLUSIONS

Our study presents the first genome sequencing and genome-scale analysis of lichen-associated Nostoc strains. These data provide insight into the molecular nature of the cyanolichen symbiosis and pinpoint candidate genes for further studies aimed at deciphering the genetic mechanisms behind the symbiotic competence of Nostoc. Since many phylogenetic studies have shown that Nostoc is a polyphyletic group that includes several lineages, this work also provides an improved molecular basis for demarcation of a Nostoc clade with symbiotic competence.

摘要

背景

念珠藻属的蓝藻能够与多种生物体形成共生关系,包括各种蓝藻地衣。只有某些念珠藻谱系似乎能够形成紧密、稳定的共生关系,这就提出了一个问题,即共生能力是否由特定的基因和功能决定。

结果

我们展示了两个地衣念珠藻菌株的完整基因组测序、注释和分析。与其他念珠藻基因组的比较,鉴定出了可能与包括地衣真菌共生体在内的广泛伙伴形成共生关系的基因。共生念珠藻菌株更大的基因组大小可能反映了共生能力所需的额外基因的存在。一些鉴定出的基因可能参与共生关系的初始识别和建立,而其他基因可能在地衣共生中与真菌共生体共存时赋予蓝藻优势。

结论

我们的研究首次对与地衣相关的念珠藻菌株进行了基因组测序和全基因组分析。这些数据深入了解了蓝藻地衣共生关系的分子本质,并确定了候选基因,以进一步研究旨在解码念珠藻共生能力的遗传机制。由于许多系统发育研究表明,念珠藻是一个多系群,包括几个谱系,因此这项工作也为具有共生能力的念珠藻谱系的划分提供了更好的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a2c/5987646/0a664c05d7d8/12864_2018_4743_Fig1_HTML.jpg

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