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非培养依赖的单细胞PacBio测序揭示了海洋底栖原生生物YT种(纤毛虫门,核残迹纲)微生物组中的体表共生菌和细胞核相关菌。

Culture-Independent Single-Cell PacBio Sequencing Reveals Epibiotic and Nucleus Associated in the Microbiome of the Marine Benthic Protist sp. YT (Ciliophora, Karyorelictea).

作者信息

Zhang Xiaoxin, Bi Luping, Gentekaki Eleni, Zhao Jianmin, Shen Pingping, Zhang Qianqian

机构信息

School of Ocean, Yantai University, Yantai 264003, China.

Key Laboratory of Coastal Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, China.

出版信息

Microorganisms. 2023 Jun 5;11(6):1500. doi: 10.3390/microorganisms11061500.

Abstract

Microbes in marine sediments constitute up to five-sixths of the planet's total biomass, but their diversity is little explored, especially for those forming associations with unicellular protists. Heterotrophic ciliates are among the most dominant and diversified marine benthic protists and comprise hotspot niches of bacterial colonization. To date, studies using culture-independent single-cell approaches to explore microbiomes of marine benthic ciliates in nature are almost absent, even for the most ubiquitous species. Here, we characterize the major bacterial groups associated with a representative marine benthic ciliate, sp. YT, collected directly from the coastal zone of Yantai, China. PacBio sequencing of the nearly full-length 16Sr RNA genes was performed on single cells of . Fluorescence in situ hybridization (FISH) analysis with genus-specific probes was further applied to locate the dominant bacterial groups. We identified a -like bacterium as the major epibiotic symbiont residing in the kineties of the ciliate host. We provide evidence of a nucleus-associated bacterium related to the human pathogen , which appeared prevalently in the local populations of sp. YT for 4 months. The most abundant bacterial taxa associated with sp. YT likely represent its core microbiome, hinting at the important roles of the ciliate-bacteria consortium in the marine benthos. Overall, this work has contributed to the knowledge of the diversity of life in the enigmatic marine benthic ciliate and its symbioses.

摘要

海洋沉积物中的微生物占地球总生物量的六分之五,但它们的多样性鲜有人探索,尤其是那些与单细胞原生生物形成共生关系的微生物。异养纤毛虫是最具优势且种类最多样化的海洋底栖原生生物之一,也是细菌定殖的热点生态位。迄今为止,几乎没有研究使用不依赖培养的单细胞方法来探索自然环境中海洋底栖纤毛虫的微生物群落,即使是对于最常见的物种也是如此。在这里,我们对一种具有代表性的海洋底栖纤毛虫,即从中国烟台沿海地区直接采集的YT种的主要细菌类群进行了表征。对YT种的单细胞进行了近全长16S rRNA基因的PacBio测序。进一步应用属特异性探针的荧光原位杂交(FISH)分析来定位优势细菌类群。我们鉴定出一种类似的细菌是存在于纤毛虫宿主动基列中的主要体表共生菌。我们提供了一种与人类病原体相关的核相关细菌的证据,这种细菌在YT种的当地种群中普遍存在了4个月。与YT种相关的最丰富的细菌分类群可能代表了其核心微生物群,这暗示了纤毛虫 - 细菌共生体在海洋底栖生物中的重要作用。总体而言,这项工作增进了我们对神秘的海洋底栖纤毛虫及其共生关系中生命多样性的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/858f/10300761/b2f3980f5f52/microorganisms-11-01500-g001.jpg

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