南海镇北海底山捕食性细菌的狩猎场。

IF 5.1 Q1 ECOLOGY
ISME communications Pub Date : 2025-03-05 eCollection Date: 2025-01-01 DOI:10.1093/ismeco/ycaf042
Zhimeng Li, Dayu Zou, Rulong Liu, Juntong Pan, Junkai Huang, Jun Ma, Liting Huang, Jiani He, Lulu Fu, Xiaowei Zheng, Minxiao Wang, Jiasong Fang, Hailiang Dong, Meng Li, Li Huang, Xin Dai
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引用次数: 0

摘要

海山是海洋生物多样性的重要热点,而其微生物群落的代谢活动在很大程度上仍然未知。本研究采用组学方法,包括16S核糖体RNA (rRNA)/16S rDNA比值分析,研究了南海镇北海山海水表层、中层和底层自由生活和颗粒附着微生物的多样性和活性。共检出20余门,以变形菌门、放线菌门、蓝藻门、拟杆菌门、太古菌门、植菌门为主。令人惊讶的是,Bdellovibrionota和Myxococcota这两种众所周知的掠食性细菌的rRNA/rDNA比值比其他门高得多,rRNA丰度比它们的rDNA丰度高10-甚至200倍。这些代谢活跃的掠食性细菌主要是未经培养的种类。共组装了23个粘球菌宏基因组组装基因组(MAGs)和12个蛭弧菌组装基因组。在这些mag中经常检测到的高表达基因是那些编码鞭毛和毛蛋白以及t4样病毒尾管蛋白的基因,这表明这些捕食细菌可能在狩猎中很活跃。研究结果表明,海底山可能是掠食性细菌的狩猎场,这些细菌可能参与控制海底山微生物群落中元素和能量的流动,从而形成海底山生态系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A hunting ground for predatory bacteria at the Zhenbei seamount in the South China Sea.

Seamounts are critical marine biodiversity hot spots, while the metabolic activity of their microbial community remains largely unknown. In this study, we investigated the diversity and activity of free-living and particle-attached microorganisms in the surface, middle, and bottom layers of seawater at the Zhenbei seamount in the South China Sea using omics approaches, including 16S ribosomal RNA (rRNA)/16S rDNA ratio analysis. Over 20 phyla were detected, with Proteobacteria, Actinobacteriota, Cyanobacteria, Bacteroidota, Thaumarchaeota, and Planctomycetota being predominant. Surprisingly, Bdellovibrionota and Myxococcota, the two well-known predatory bacteria, exhibited exceptionally higher rRNA/rDNA ratios than the other phyla, with rRNA abundances being 10- or even 200-fold higher than their rDNA abundances. These metabolically active predatory bacteria are mainly uncultured species. A total of 23 Myxococcota metagenome-assembled genomes (MAGs) and 12 Bdellovibrionota MAGs were assembled. The most highly overexpressed genes frequently detected in these MAGs were those that encode flagellum and pilus proteins as well as T4-like virus tail tube protein, indicating that these predator bacteria were likely active in hunting. Our results suggest that seamounts may serve as hunting grounds for predatory bacteria, which may be involved in controlling the flows of elements and energy in the seamount microbial communities and, thus, in shaping the seamount ecosystems.

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