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预测新型烈性和温和噬藻体能感染与产生anatoxin 的底栖垫有关的微鞘藻。

Novel virulent and temperate cyanophages predicted to infect Microcoleus associated with anatoxin-producing benthic mats.

机构信息

Department of Biology, University of New Brunswick, Fredericton, New Brunswick, Canada.

出版信息

Environ Microbiol. 2023 Dec;25(12):3319-3332. doi: 10.1111/1462-2920.16527. Epub 2023 Oct 17.

DOI:10.1111/1462-2920.16527
PMID:37849433
Abstract

Cyanophages are crucial for regulating cyanobacterial populations, but their influence on anatoxin-producing Microcoleus mat dynamics remains unexplored. Here, we use metagenomics to explore phage presence in benthic mats from the Wolastoq|Saint John River (New Brunswick, Canada) and the Eel River (California, USA). We recovered multiple viral-like sequences associated with different putative bacterial hosts, including two cyanophage genomes with apparently different replication strategies. A temperate cyanophage was found integrated in the genomes of Microcoleus sp. 3 recovered from the Eel River and is phylogenetically related to Phormidium phages. We also recovered novel virulent cyanophage genomes from Wolastoq and Eel River mats that were dominated by anatoxin-producing Microcoleus species predicted to be the host. Despite the geographical distance, these genomes have similar sizes (circa 239 kbp) and share numerous orthologous genes with high sequence identity. A considerable reduction of the anatoxin-producing Microcoleus species in Wolastoq mats following the emergence of the virulent phage suggests that phage infections have an important role in limiting the abundance of this toxigenic cyanobacterium and releasing anatoxins into the surrounding water. Our results constitute the first report of cyanophages predicted to infect mat-forming Microcoleus species associated with anatoxin production.

摘要

噬藻体对于调节蓝藻种群至关重要,但它们对产anatoxin 的微囊藻动态的影响仍未被探索。在这里,我们使用宏基因组学来研究来自沃拉斯托奎-圣约翰河(加拿大新不伦瑞克省)和鳗鱼河(美国加利福尼亚州)底层垫中的噬藻体存在情况。我们从鳗鱼河和沃拉斯托奎回收了多个与不同假定细菌宿主相关的类似病毒的序列,包括两种具有明显不同复制策略的噬藻体基因组。从鳗鱼河回收的微囊藻 sp.3 的基因组中发现了一种温和的噬藻体,它与 Phormidium 噬菌体具有系统发育关系。我们还从鳗鱼河和沃拉斯托奎的垫中回收了新型毒性噬藻体基因组,这些垫由产anatoxin 的微囊藻物种主导,预计是宿主。尽管地理位置不同,但这些基因组的大小相似(约 239 kbp),并具有高度序列同一性的许多同源基因。在毒性噬藻体出现后,沃拉斯托奎垫中产anatoxin 的微囊藻物种数量明显减少,这表明噬藻体感染在限制这种产毒蓝藻的丰度和将anatoxin 释放到周围水中方面起着重要作用。我们的研究结果首次报道了预测会感染与产anatoxin 相关的形成垫的微囊藻物种的噬藻体。

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