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宿主物种对藻际微生物组的组装、组成和功能特征的影响。

Impact of host species on assembly, composition, and functional profiles of phycosphere microbiomes.

机构信息

Department of Biotechnology and Biomedicine, Technical University of Denmark, Kgs. Lyngby, Denmark.

DTU Nanolab, National Center for Nano Fabrication and Characterization, Technical University of Denmark, Kgs. Lyngby, Denmark.

出版信息

mSystems. 2024 Aug 20;9(8):e0058324. doi: 10.1128/msystems.00583-24. Epub 2024 Jul 31.

Abstract

UNLABELLED

Microalgal microbiomes play vital roles in the growth and health of their host, however, their composition and functions remain only partially characterized, especially across microalgal phyla. In this study, a natural seawater microbiome was introduced to three distinct, axenic species of microalgae, the haptophyte the chlorophyte and the diatom (previously ), and its divergence and assembly under constant illumination was monitored over 49 days using 16S rRNA amplicon and metagenomic analyses. The microbiomes had a high degree of host specificity in terms of taxonomic composition and potential functions, including CAZymes profiles. Rhodobacteraceae and Flavobacteriaceae families were abundant across all microalgal hosts, but microbiomes diverged further from and microbiomes. microbiomes had a much higher relative abundance of Flavobacteriaceae, whereas the two other algal microbiomes had higher relative abundances of Rhodobacteraceae. This could be due to the bacterivorous mixotrophic nature of affecting the carbohydrate composition available to the microbiomes, which was supported by the CAZymes profile of microbiomes diverging further from those of and microbiomes. Finally, the presence of denitrification and other anaerobic pathways was found exclusively in the microbiomes of which we speculate could be a result of anoxic microenvironments forming in aggregates formed by this diatom during the experiment. These results underline the significant role of the microalgal host species on microbiome composition and functional profiles along with other factors, such as the trophic mode of the microalgal host.

IMPORTANCE

As the main primary producers of the oceans, microalgae serve as cornerstones of the ecosystems they are part of. Additionally, they are increasingly used for biotechnological purposes such as the production of nutraceuticals, pigments, and antioxidants. Since the bacterial microbiomes of microalgae can affect their hosts in beneficial and detrimental ways, understanding these microbiomes is crucial to both the ecological and applied roles of microalgae. The present study advances the understanding of microalgal microbiome assembly, composition, and functionality across microalgal phyla, which may inform the modeling and engineering of microalgal microbiomes for biotechnological purposes.

摘要

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微藻微生物组在其宿主的生长和健康中起着至关重要的作用,然而,它们的组成和功能仍只是部分特征化,特别是在微藻门之间。在这项研究中,一种天然海水微生物组被引入到三个不同的、无菌的微藻物种中,即甲藻、绿藻和硅藻(以前),并使用 16S rRNA 扩增子和宏基因组分析监测了在持续光照下 49 天的微生物组的分歧和组装。微生物组在分类组成和潜在功能方面具有高度的宿主特异性,包括 CAZymes 谱。红杆菌科和黄杆菌科在所有微藻宿主中都很丰富,但微生物组与和微生物组进一步分化。微生物组中黄杆菌科的相对丰度更高,而其他两个藻类微生物组中红杆菌科的相对丰度更高。这可能是由于混合营养的特性影响了微生物组可利用的碳水化合物组成,这一说法得到了微生物组与和微生物组的 CAZymes 谱进一步分化的支持。最后,发现反硝化和其他厌氧途径仅存在于微生物组中,我们推测这可能是由于在实验过程中这种硅藻形成的聚集体中形成了缺氧微环境。这些结果强调了微藻宿主物种对微生物组组成和功能谱的重要作用,以及其他因素,如微藻宿主的营养模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1633/11334532/77474e29624a/msystems.00583-24.f001.jpg

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