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巴西固氮螺菌 SmR1 菌株基因组,一种热带禾本科植物专性共生固氮内生菌。

Genome of Herbaspirillum seropedicae strain SmR1, a specialized diazotrophic endophyte of tropical grasses.

机构信息

Universidade Federal do Paraná, Curitiba, Brazil.

出版信息

PLoS Genet. 2011 May;7(5):e1002064. doi: 10.1371/journal.pgen.1002064. Epub 2011 May 12.

Abstract

The molecular mechanisms of plant recognition, colonization, and nutrient exchange between diazotrophic endophytes and plants are scarcely known. Herbaspirillum seropedicae is an endophytic bacterium capable of colonizing intercellular spaces of grasses such as rice and sugar cane. The genome of H. seropedicae strain SmR1 was sequenced and annotated by The Paraná State Genome Programme--GENOPAR. The genome is composed of a circular chromosome of 5,513,887 bp and contains a total of 4,804 genes. The genome sequence revealed that H. seropedicae is a highly versatile microorganism with capacity to metabolize a wide range of carbon and nitrogen sources and with possession of four distinct terminal oxidases. The genome contains a multitude of protein secretion systems, including type I, type II, type III, type V, and type VI secretion systems, and type IV pili, suggesting a high potential to interact with host plants. H. seropedicae is able to synthesize indole acetic acid as reflected by the four IAA biosynthetic pathways present. A gene coding for ACC deaminase, which may be involved in modulating the associated plant ethylene-signaling pathway, is also present. Genes for hemagglutinins/hemolysins/adhesins were found and may play a role in plant cell surface adhesion. These features may endow H. seropedicae with the ability to establish an endophytic life-style in a large number of plant species.

摘要

植物对固氮内生菌的识别、定殖以及养分交换的分子机制知之甚少。草螺菌(Herbaspirillum seropedicae)是一种内生细菌,能够定殖水稻和甘蔗等禾本科植物的细胞间隙。巴西帕拉纳州基因组计划——GENOPAR 对 H. seropedicae 菌株 SmR1 的基因组进行了测序和注释。该基因组由一个 5,513,887 bp 的环状染色体组成,共包含 4,804 个基因。基因组序列表明,H. seropedicae 是一种多功能微生物,能够代谢多种碳源和氮源,并且拥有四种不同的末端氧化酶。该基因组包含大量的蛋白质分泌系统,包括 I 型、II 型、III 型、V 型和 VI 型分泌系统以及 IV 型菌毛,这表明它与宿主植物相互作用的潜力很高。H. seropedicae 能够合成吲哚乙酸,因为它存在四种 IAA 生物合成途径。还存在一个编码 ACC 脱氨酶的基因,该基因可能参与调节相关的植物乙烯信号通路。发现了血凝素/溶血素/粘附素基因,它们可能在植物细胞表面粘附中发挥作用。这些特征可能使 H. seropedicae 能够在大量植物物种中建立内生生活方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84bf/3093359/b8aa0f312c40/pgen.1002064.g001.jpg

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