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种内杂交河豚肠道微生物群受种间杂交影响的主导因素是宿主杂交。

Host Hybridization Dominates over Cohabitation in Affecting Gut Microbiota of Intrageneric Hybrid Pufferfish.

机构信息

Jiangsu Province Engineering Research Center for Marine Bio-resources Sustainable Utilization, College of Oceanography, Hohai University, Nanjing, China.

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, The Innovation Academy of Seed Design, Chinese Academy of Sciences, Wuhan, China.

出版信息

mSystems. 2023 Apr 27;8(2):e0118122. doi: 10.1128/msystems.01181-22. Epub 2023 Feb 23.

Abstract

Microbial symbionts are of great importance for macroscopic life, including fish, and both collectively comprise an integrated biological entity known as the holobiont. Yet little is known as to how the normal balance within the fish holobiont is maintained and how it responds to biotic and/or abiotic influences. Here, through amplicon profiling, the genealogical relationship between artificial F1 hybrid pufferfish with growth heterosis, produced from crossing female Takifugu obscurus with male Takifugu rubripes and its maternal halfsibling purebred, was well recapitulated by their gut microbial community similarities, indicating an evident parallelism between host phylogeny (hybridity) and microbiota relationships therein. Interestingly, modest yet significant fish growth promotion and gut microbiota alteration mediated by hybrid-purebred cohabitation were observed, in comparison with their respective monoculture cohorts that share common genetic makeups, implying a certain degree of environmental influences. Moreover, the underlying assemblage patterns of gut microbial communities were found associated with a trade-off between variable selection and dispersal limitation, which are plausibly driven by the augmented social interactions between hybrid and purebred cohabitants differing in behaviors. Results from this study not only can enrich, from a microbial perspective, the sophisticated understanding of complex and dynamic assemblage of the fish holobiont, but will also provide deeper insights into the ecophysiological factors imposed on the diversity-function relationships thereof. Our findings emphasize the intimate associations of gut microbiota in host genetics-environmental interactions and would have deeper practical implications for microbial contributions to optimize performance prediction and to improve the production of farmed fishes. Microbial symbionts are of great importance for macroscopic life, including fish, and yet little is known as to how the normal balance within the fish holobiont is maintained and how it responds to the biotic and/or abiotic influences. Through gut microbiota profiling, we show that host intrageneric hybridization and cohabitation can impose a strong disturbance upon pufferfish gut microbiota. Moreover, marked alterations in the composition and function of gut microbiota in both hybrid and purebred pufferfish cohabitants were observed, which are potentially correlated with different metabolic priorities and behaviors between host genealogy. These results can enrich, from a microbial perspective, the sophisticated understanding of the complex and dynamic assemblage of the fish holobiont and would have deeper practical implications for microbial contributions to optimize performance prediction and to improve farmed fish production.

摘要

微生物共生体对包括鱼类在内的宏观生命具有重要意义,它们共同构成了一个被称为“全动物体”的综合生物实体。然而,人们对于鱼类全动物体内部的正常平衡是如何维持的,以及它如何应对生物和/或非生物影响,知之甚少。在这里,通过扩增子分析,我们发现,具有生长杂种优势的人工 F1 杂交河豚与母系半同胞纯种之间的亲缘关系,与其肠道微生物群落的相似性很好地吻合,这表明宿主进化史(杂种优势)与其内部微生物的关系之间存在明显的平行性。有趣的是,与具有共同遗传组成的各自单培养群相比,杂交-纯种共栖可适度但显著地促进鱼类生长和改变肠道微生物群,这暗示了一定程度的环境影响。此外,我们还发现,肠道微生物群落的组合模式与可变选择和扩散限制之间的权衡有关,这可能是由杂交和纯种同居者之间增强的社交互动驱动的,它们的行为存在差异。本研究的结果不仅可以从微生物角度丰富对鱼类全动物体复杂而动态的组合的复杂理解,还可以深入了解施加于其多样性-功能关系的生态生理因素。我们的研究结果强调了肠道微生物在宿主遗传-环境相互作用中的密切关联,这对于微生物在优化性能预测和提高养殖鱼类生产中的贡献具有更深远的实际意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b0c/10134855/4e6e96c617ee/msystems.01181-22-f001.jpg

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