Spatiotemporal dynamics of giant viruses within a deep freshwater lake reveal a distinct dark-water community.

IF 10.8 1区 环境科学与生态学 Q1 ECOLOGY
Liwen Zhang, Lingjie Meng, Yue Fang, Hiroyuki Ogata, Yusuke Okazaki
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引用次数: 0

Abstract

Giant viruses (GVs) significantly regulate the ecological dynamics of diverse ecosystems. Although metagenomics has expanded our understanding of their diversity and ecological roles played in marine environments, little is known about GVs of freshwater ecosystems. Most previous studies have employed short-read sequencing and therefore resulted in fragmented genomes, hampering accurate assessment of genetic diversity. We sought to bridge this knowledge gap and overcome previous technical limitations. We subjected spatiotemporal (2 depths × 12 months) samples from Lake Biwa to metagenome-assembled genome reconstruction enhanced by long-read metagenomics. This yielded 293 GV metagenome-assembled genomes. Of these, 285 included previously unknown species in five orders of nucleocytoviruses and the first representatives of freshwater mirusviruses, which exhibited marked divergence from marine-derived lineages. The good performance of our long-read metagenomic assembly was demonstrated by the detection of 42 (14.3%) genomes composed of single contigs with completeness values >90%. GVs were partitioned across water depths, with most species specific to either the sunlit epilimnion or the dark hypolimnion. Epilimnion-specific members tended to be transient and exhibit short and intense abundance peaks, in line with the fact that they regulate the surface algal blooms. During the spring bloom, mirusviruses and members of three nucleocytovirus families were among the most abundant viruses. In contrast, hypolimnion-specific ones, including a mirusvirus genome, were typically more persistent in the hypolimnion throughout the water-stratified period, suggesting that they infect hosts specific to the hypolimnion and play previously unexplored ecological roles in dark water microbial ecosystems.

一个深淡水湖中巨型病毒的时空动态揭示了一个独特的暗水群落。
巨型病毒在很大程度上调节着不同生态系统的生态动态。尽管元基因组学扩大了我们对巨型病毒多样性和在海洋环境中发挥的生态作用的了解,但我们对淡水生态系统中的巨型病毒却知之甚少。之前的大多数研究都采用了短线程测序,因此导致基因组支离破碎,影响了对遗传多样性的准确评估。我们试图弥补这一知识空白,克服以往的技术局限。我们对琵琶湖的时空(2 个深度 × 12 个月)样本进行了元基因组组装基因组重建,并通过长读数元基因组学进行了增强。结果发现了 293 个巨型病毒元基因组。其中,285 个基因组包括核细胞病毒五个目中以前未知的物种,以及淡水镜状病毒的首批代表,这些病毒与海洋源系有明显的分化。42个(14.3%)基因组是由完整性值大于90%的单一等位基因组成的,这证明了我们的长读数元基因组组装的良好性能。巨型病毒在不同的水深都有分布,大多数种类都是阳光照射下的上水层或黑暗的下水层特有的。表层水特异性成员往往是瞬时的,表现出短暂而强烈的丰度峰值,这与它们调节表层藻类大量繁殖的事实是一致的。在春季藻华期间,镜状病毒和三个核细胞病毒科的成员是数量最多的病毒。相比之下,包括镜状病毒基因组在内的下沉水体特异性病毒通常在整个水分层期间更持久地存在于下沉水体中,这表明它们会感染下沉水体特异性宿主,并在暗水微生物生态系统中发挥着之前尚未探索到的生态作用。
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来源期刊
ISME Journal
ISME Journal 环境科学-生态学
CiteScore
22.10
自引率
2.70%
发文量
171
审稿时长
2.6 months
期刊介绍: The ISME Journal covers the diverse and integrated areas of microbial ecology. We encourage contributions that represent major advances for the study of microbial ecosystems, communities, and interactions of microorganisms in the environment. Articles in The ISME Journal describe pioneering discoveries of wide appeal that enhance our understanding of functional and mechanistic relationships among microorganisms, their communities, and their habitats.
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