Exploring the landscape of symbiotic diversity and distribution in unicellular ciliated protists.

IF 13.8 1区 生物学 Q1 MICROBIOLOGY
Bing Zhang, Liwen Xiao, Liping Lyu, Fangqing Zhao, Miao Miao
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引用次数: 0

Abstract

Background: The eukaryotic-bacterial symbiotic system plays an important role in various physiological, developmental, and evolutionary processes. However, our current understanding is largely limited to multicellular eukaryotes without adequate consideration of diverse unicellular protists, including ciliates.

Results: To investigate the bacterial profiles associated with unicellular organisms, we collected 246 ciliate samples spanning the entire Ciliophora phylum and conducted single-cell based metagenome sequencing. This effort has yielded the most extensive collection of bacteria linked to unicellular protists to date. From this dataset, we identified 883 bacterial species capable of cohabiting with ciliates, unveiling the genomes of 116 novel bacterial cohabitants along with 7 novel archaeal cohabitants. Highlighting the intimate relationship between ciliates and their cohabitants, our study unveiled that over 90% of ciliates coexist with bacteria, with individual hosts fostering symbiotic relationships with multiple bacteria concurrently, resulting in the observation of seven distinct symbiotic patterns among bacteria. Our exploration of symbiotic mechanisms revealed the impact of host digestion on the intracellular diversity of cohabitants. Additionally, we identified the presence of eukaryotic-like proteins in bacteria as a potential contributing factor to their resistance against host digestion, thereby expanding their potential host range.

Conclusions: As the first large-scale analysis of prokaryotic associations with ciliate protists, this study provides a valuable resource for future research on eukaryotic-bacterial symbioses. Video Abstract.

探索单细胞纤毛虫共生多样性和分布状况。
背景:真核生物-细菌共生系统在各种生理、发育和进化过程中发挥着重要作用。然而,我们目前的认识主要局限于多细胞真核生物,而没有充分考虑包括纤毛虫在内的各种单细胞原生生物:为了研究与单细胞生物相关的细菌特征,我们收集了 246 个纤毛虫样本,涵盖了整个纤毛虫门,并进行了基于单细胞的元基因组测序。这项工作收集了迄今为止与单细胞原生动物相关的最广泛的细菌。从这个数据集中,我们发现了 883 个能够与纤毛虫共栖的细菌物种,揭示了 116 个新型细菌共栖者和 7 个新型古细菌共栖者的基因组。我们的研究强调了纤毛虫与其共栖者之间的亲密关系,揭示了超过 90% 的纤毛虫与细菌共存,单个宿主同时与多种细菌建立共生关系,从而观察到细菌之间七种不同的共生模式。我们对共生机制的探索揭示了宿主消化对同居者细胞内多样性的影响。此外,我们还发现细菌中存在的类真核蛋白是它们抵抗宿主消化的潜在因素,从而扩大了它们的潜在宿主范围:作为首次大规模分析原核生物与纤毛虫原生动物关系的研究,这项研究为未来真核生物与细菌共生的研究提供了宝贵的资源。视频摘要
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来源期刊
Microbiome
Microbiome MICROBIOLOGY-
CiteScore
21.90
自引率
2.60%
发文量
198
审稿时长
4 weeks
期刊介绍: Microbiome is a journal that focuses on studies of microbiomes in humans, animals, plants, and the environment. It covers both natural and manipulated microbiomes, such as those in agriculture. The journal is interested in research that uses meta-omics approaches or novel bioinformatics tools and emphasizes the community/host interaction and structure-function relationship within the microbiome. Studies that go beyond descriptive omics surveys and include experimental or theoretical approaches will be considered for publication. The journal also encourages research that establishes cause and effect relationships and supports proposed microbiome functions. However, studies of individual microbial isolates/species without exploring their impact on the host or the complex microbiome structures and functions will not be considered for publication. Microbiome is indexed in BIOSIS, Current Contents, DOAJ, Embase, MEDLINE, PubMed, PubMed Central, and Science Citations Index Expanded.
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