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解析: - 关键词:Insights 意为“见解、深刻的理解”,genome 意为“基因组”,bacterium 意为“细菌”,Maize 意为“玉米”,Chili 意为“辣椒”,Sugarcane 意为“甘蔗”,Growth promotion 意为“促进生长”。 - 译文:解析新型促生长玉米、辣椒和甘蔗细菌——甲基杆菌 NMS14P 的基因组。 **译文**:解析新型促生长玉米、辣椒和甘蔗细菌——甲基杆菌 NMS14P 的基因组。

Insights into the genome of Methylobacterium sp. NMS14P, a novel bacterium for growth promotion of maize, chili, and sugarcane.

机构信息

Pilot Plant Development and Training Institute, King Mongkut's University of Technology Thonburi, Bangkok, Thailand.

Bioinformatics and Systems Biology Program, School of Bioresources and Technology, King Mongkut's University of Technology Thonburi, Bangkok, Thailand.

出版信息

PLoS One. 2023 Feb 7;18(2):e0281505. doi: 10.1371/journal.pone.0281505. eCollection 2023.

Abstract

A novel methylotrophic bacterium designated as NMS14P was isolated from the root of an organic coffee plant (Coffea arabica) in Thailand. The 16S rRNA sequence analysis revealed that this new isolate belongs to the genus Methylobacterium, and its novelty was clarified by genomic and comparative genomic analyses, in which NMS14P exhibited low levels of relatedness with other Methylobacterium-type strains. NMS14P genome consists of a 6,268,579 bp chromosome, accompanied by a 542,519 bp megaplasmid and a 66,590 bp plasmid, namely pNMS14P1 and pNMS14P2, respectively. Several genes conferring plant growth promotion are aggregated on both chromosome and plasmids, including phosphate solubilization, indole-3-acetic acid (IAA) biosynthesis, cytokinins (CKs) production, 1-aminocyclopropane-1-carboxylate (ACC) deaminase activity, sulfur-oxidizing activity, trehalose synthesis, and urea metabolism. Furthermore, pangenome analysis showed that NMS14P possessed the highest number of strain-specific genes accounting for 1408 genes, particularly those that are essential for colonization and survival in a wide array of host environments, such as ABC transporter, chemotaxis, quorum sensing, biofilm formation, and biosynthesis of secondary metabolites. In vivo tests have supported that NMS14P significantly promoted the growth and development of maize, chili, and sugarcane. Collectively, NMS14P is proposed as a novel plant growth-promoting Methylobacterium that could potentially be applied to a broad range of host plants as Methylobacterium-based biofertilizers to reduce and ultimately substitute the use of synthetic agrochemicals for sustainable agriculture.

摘要

一株新型甲基营养型细菌 NMS14P 从泰国有机咖啡植株(Coffea arabica)的根部被分离得到。16S rRNA 序列分析表明,该新分离菌属于甲基杆菌属,其新颖性通过基因组和比较基因组分析得到了阐明,其中 NMS14P 与其他甲基杆菌型菌株的亲缘关系较低。NMS14P 基因组由一条 6,268,579 bp 的染色体、一条 542,519 bp 的大型质粒和一条 66,590 bp 的质粒,即 pNMS14P1 和 pNMS14P2 组成。几种赋予植物生长促进作用的基因聚集在染色体和质粒上,包括磷酸盐溶解、吲哚-3-乙酸(IAA)合成、细胞分裂素(CKs)产生、1-氨基环丙烷-1-羧酸(ACC)脱氨酶活性、硫氧化活性、海藻糖合成和尿素代谢。此外,泛基因组分析表明,NMS14P 拥有最多数量的菌株特异性基因,占 1408 个基因,特别是那些对在广泛的宿主环境中定殖和生存至关重要的基因,如 ABC 转运蛋白、趋化作用、群体感应、生物膜形成和次生代谢物的生物合成。体内试验支持 NMS14P 显著促进了玉米、辣椒和甘蔗的生长和发育。总之,NMS14P 被提议为一种新型的植物促生甲基杆菌,它可以作为基于甲基杆菌的生物肥料应用于广泛的宿主植物,以减少并最终替代合成农用化学品的使用,实现可持续农业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bae3/9904496/3b204f5331e6/pone.0281505.g001.jpg

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