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热液喷口共生体之间的生态差异可能导致共生体种群分化的对比模式。

Ecological differences among hydrothermal vent symbioses may drive contrasting patterns of symbiont population differentiation.

机构信息

Graduate School of Oceanography, University of Rhode Island , Narragansett, Rhode Island, USA.

Department of Ocean Science, Division of Life Science and Hong Kong Branch of the Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), The Hong Kong University of Science and Technology , Hong Kong, China.

出版信息

mSystems. 2023 Aug 31;8(4):e0028423. doi: 10.1128/msystems.00284-23. Epub 2023 Jul 26.

Abstract

The intra-host composition of horizontally transmitted microbial symbionts can vary across host populations due to interactive effects of host genetics, environmental, and geographic factors. While adaptation to local habitat conditions can drive geographic subdivision of symbiont strains, it is unknown how differences in ecological characteristics among host-symbiont associations influence the genomic structure of symbiont populations. To address this question, we sequenced metagenomes of different populations of the deep-sea mussel , which are common at Western Pacific deep-sea hydrothermal vents and show characteristic patterns of niche partitioning with sympatric gastropod symbioses. lives in close symbiotic relationship with sulfur-oxidizing chemosynthetic bacteria but supplements its symbiotrophic diet through filter-feeding, enabling it to occupy ecological niches with little exposure to geochemical reductants. Our analyses indicate that symbiont populations associated with show structuring by geographic location, but that the dominant symbiont strain is uncorrelated with vent site. These patterns are in contrast to co-occurring and gastropod symbioses that exhibit greater symbiont nutritional dependence and occupy habitats with higher spatial variability in environmental conditions. Our results suggest that relative habitat homogeneity combined with sufficient symbiont dispersal and genomic mixing might promote persistence of similar symbiont strains across geographic locations, while mixotrophy might decrease selective pressures on the host to affiliate with locally adapted symbiont strains. Overall, these data contribute to our understanding of the potential mechanisms influencing symbiont population structure across a spectrum of marine microbial symbioses that occupy contrasting ecological niches. IMPORTANCE Beneficial relationships between animals and microbial organisms (symbionts) are ubiquitous in nature. In the ocean, microbial symbionts are typically acquired from the environment and their composition across geographic locations is often shaped by adaptation to local habitat conditions. However, it is currently unknown how generalizable these patterns are across symbiotic systems that have contrasting ecological characteristics. To address this question, we compared symbiont population structure between deep-sea hydrothermal vent mussels and co-occurring but ecologically distinct snail species. Our analyses show that mussel symbiont populations are less partitioned by geography and do not demonstrate evidence for environmental adaptation. We posit that the mussel's mixotrophic feeding mode may lower its need to affiliate with locally adapted symbiont strains, while microhabitat stability and symbiont genomic mixing likely favors persistence of symbiont strains across geographic locations. Altogether, these findings further our understanding of the mechanisms shaping symbiont population structure in marine environmentally transmitted symbioses.

摘要

水平传播的微生物共生体在宿主群体中的组成可能因宿主遗传、环境和地理因素的相互作用而有所不同。虽然适应当地生境条件可以导致共生体菌株的地理划分,但尚不清楚宿主-共生体关联之间生态特征的差异如何影响共生体种群的基因组结构。为了解决这个问题,我们对生活在西太平洋深海热液喷口的深海贻贝的不同种群的宏基因组进行了测序,这些贻贝与共生的腹足动物共生关系密切,但通过滤食补充共生的饮食,使其能够占据与地质化学还原剂接触很少的生态位。我们的分析表明,与 相关的共生体种群存在地理位置结构,但优势共生体菌株与喷口位置无关。这些模式与共生的 和 腹足动物共生体形成对比,后者共生体对营养的依赖程度更高,栖息在环境条件空间变异性更高的栖息地。我们的结果表明,相对栖息地同质性加上足够的共生体扩散和基因组混合可能促进相似共生体菌株在地理上的持续存在,而混合营养可能降低宿主与当地适应共生体菌株结盟的选择性压力。总的来说,这些数据有助于我们理解影响一系列栖息在不同生态位的海洋微生物共生体的共生体种群结构的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6634/10469979/d3f44e2d9b05/msystems.00284-23.f001.jpg

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