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鳗草(Zostera spp.)相关的噬藻体是具有宿主特异性的同属寄生虫,也是全球范围内鳗草根际的主要真核生物。

Eelgrass (Zostera spp.) associated phytomyxids are host-specific congeneric parasites and predominant eukaryotes in the eelgrass rhizosphere on a global scale.

机构信息

Department of Biology, University of Victoria, Victoria, British Columbia, V8P 5C2, Canada.

Department of Biology, University of Puget Sound, Tacoma, Washington, 98406, USA.

出版信息

Environ Microbiol. 2023 Aug;25(8):1522-1537. doi: 10.1111/1462-2920.16376. Epub 2023 Mar 28.

DOI:10.1111/1462-2920.16376
PMID:36978287
Abstract

Together with increasing environmental and anthropogenic pressures, pathogenic diseases are one of the important factors contributing to the ongoing decline of seagrass meadows worldwide; yet the diversity and ecology of the microorganisms acknowledged as seagrass parasites remain critically understudied. Here, we investigate phytomyxid parasites (Rhizaria: Endomyxa: Phytomyxea) of three different eelgrass (Zostera spp.) species found in the Northern hemisphere. We present molecular evidence that Plasmodiophora bicaudata, a long-recognized parasite of dwarf eelgrass taxa, is closely related to the novel phytomyxid recently discovered in root hairs of Zostera marina, and together they form a distinct clade within the order Phagomyxida, proposed here as Feldmanniella gen. nov. A full life cycle is systematically described in a phagomyxid representative for the first time, proving its conformity with the generalized phytomyxid life history, despite previous uncertainties. The presence of primary infection stages in nearly all collected eelgrass specimens, and subsequent analysis of amplicon sequences from a global Z. marina dataset, reveal phytomyxids to be ubiquitous and one of the predominant microeukaryotes associated with eelgrass roots on a global scale. Our discoveries challenge the current view of Phytomyxea as rare entities in seagrass meadows and suggest their generally low pathogenicity in natural ecosystems.

摘要

与不断增加的环境和人为压力一起,病原性疾病是导致世界范围内海草草地持续减少的重要因素之一;然而,被认为是海草寄生虫的微生物的多样性和生态学仍然严重研究不足。在这里,我们调查了三种不同的鳗草(Zostera spp.)中发现的根肿菌(Rhizaria:Endomyxa:Phytomyxea)寄生虫。我们提供了分子证据,证明了长期以来被认为是矮鳗草类寄生虫的 Plasmodiophora bicaudata 与最近在 Zostera marina 根毛中发现的新型根肿菌密切相关,它们共同构成了 Phagomyxida 目中的一个独特分支,本文提出了 Feldmanniella 属新属。首次系统地描述了一种完整的生活史,证明了它与广义根肿菌生活史的一致性,尽管之前存在不确定性。几乎所有采集的鳗草标本中都存在原发性感染阶段,随后对全球 Z. marina 数据集的扩增子序列进行分析,揭示了根肿菌在全球范围内是普遍存在的,并且是与鳗草根部相关的主要微真核生物之一。我们的发现挑战了 Phytomyxea 作为海草草地中稀有实体的现有观点,并表明它们在自然生态系统中的一般低致病性。

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