Unexpected diversity and ecological significance of uncultivable large virus-like particles in aquatic environments.

IF 5.1 Q1 ECOLOGY
ISME communications Pub Date : 2025-06-05 eCollection Date: 2025-01-01 DOI:10.1093/ismeco/ycaf098
Hermine Billard, Maxime Fuster, François Enault, Jean-François Carrias, Léa Fargette, Margot Carrouée, Perrine Desmares, Tom O Delmont, Pauline Nogaret, Estelle Bigeard, Gwenn Tanguy, Anne-Claire Baudoux, Urania Christaki, Télesphore Sime-Ngando, Jonathan Colombet
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Abstract

The discovery of jumbo phages and giant viruses of microeukaryotes has transformed our perception of the virosphere. Metagenomic and metatranscriptomic data further highlight their diversity and ecological impact. Nevertheless, sequence-based approaches fail to take into account the morphological diversity of non-cultivated viruses, resulting in our fragmented understanding of their nature and role in the environment. Here, we combined flow cytometry and electron microscopy to uncover both previously unsuspected morphological diversity and significant abundances of large virus-like particles in aquatic environments. We discovered new viral morphotypes, all likely to be associated with microeukaryotes. We also obtained insights into the multi-year dynamics of the abundances of both giant microeukaryotic virus-like particles and jumbo phage-like particles. This work deepens our understanding of large virus and reveals their key role as regulators of microbial communities.

水生环境中不可培养的大型病毒样颗粒的意外多样性和生态意义。
巨型噬菌体和巨型微真核生物病毒的发现改变了我们对病毒圈的认识。宏基因组和亚转录组数据进一步强调了它们的多样性和生态影响。然而,基于序列的方法未能考虑到非培养病毒的形态多样性,导致我们对它们的性质和在环境中的作用的理解支离破碎。在这里,我们将流式细胞术和电子显微镜相结合,揭示了水生环境中以前未预料到的形态多样性和大病毒样颗粒的显着丰度。我们发现了新的病毒形态,它们都可能与微真核生物有关。我们还获得了对巨型真核微病毒样颗粒和巨型噬菌体样颗粒丰度的多年动态的见解。这项工作加深了我们对大型病毒的理解,揭示了它们作为微生物群落调节者的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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