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支链氨基酸代谢支持海洋生物膜中红杆菌科的正向相互作用。

Branched-chain amino acid metabolism supports Roseobacteraceae positive interactions in marine biofilms.

作者信息

Cui Han, Wang Shuaitao, Fan Shen, Long Hongan, Lin Jinshui, Ding Wei, Zhang Weipeng

机构信息

MOE Key Laboratory of Evolution & Marine Biodiversity and Institute of Evolution & Marine Biodiversity, Ocean University of China, Qingdao, China.

MOE Key Laboratory of Marine Genetics and Breeding and College of Marine Life Sciences, Ocean University of China, Qingdao, China.

出版信息

Appl Environ Microbiol. 2025 Mar 19;91(3):e0241124. doi: 10.1128/aem.02411-24. Epub 2025 Feb 11.

Abstract

UNLABELLED

Interspecies interactions are key factors affecting the stability of microbial communities. However, microbial interactions in marine biofilms, which constitute up to 80% of the microbial biomass in certain marine environments, are not well understood. We addressed this knowledge gap by coculturing four marine biofilm-derived Roseobacteraceae strains ( M597, S1616, T6124, and W002) in 14 single carbon sources. Overall, 140 coculture experiments revealed 39.3% positive interactions compared to 8.3% negative interactions. When the carbon source was consumed by only one strain, the interaction between the strains was more likely to be positive. The interaction between S1616 and M597, when cultured in D-gluconic acid, was further studied as an example. S1616-M597 coculture displayed a higher D-gluconic acid consumption rate than S1616 monoculture, whereas M597 could not use D-gluconic acid as the sole carbon source. The supernatant of S1616 monoculture supported the growth of M597, and branched-chain amino acids in the supernatant were consumed. Transcriptomic analysis suggested that M597 induced the expression of genes for branched-chain amino acid biosynthesis in S1616. Additionally, metagenomic analysis revealed the wide distribution and a strongly correlated co-occurrence of the four strains in global oceanic biofilms. Together, our findings show that interspecies positive interactions are prevalent among marine-biofilm Roseobacteraceae, and the interactions are likely to be mediated by branched-chain amino acids metabolism.

IMPORTANCE

Interspecies interactions are crucial for microbial community structure and function. Despite well-studied social behaviors in model microorganisms, species interactions in natural marine biofilms especially Roseobacteraceae with complex metabolic pathways are not well understood. Our findings suggest that positive microbial interactions, which can be mediated by branched-chain amino acid biosynthesis, are common among marine-biofilm Roseobacteraceae. This study provides new insights into microbial interactions and the ecology of marine biofilms.

摘要

未标记

种间相互作用是影响微生物群落稳定性的关键因素。然而,在某些海洋环境中占微生物生物量高达80%的海洋生物膜中的微生物相互作用尚未得到充分了解。我们通过在14种单一碳源中对4株海洋生物膜来源的红杆菌科菌株(M597、S1616、T6124和W002)进行共培养,解决了这一知识空白。总体而言,140次共培养实验显示,正向相互作用占39.3%,而负向相互作用占8.3%。当碳源仅被一种菌株消耗时,菌株之间的相互作用更可能是正向的。以在D - 葡萄糖酸中培养时S1616与M597之间的相互作用为例进行了进一步研究。S1616 - M597共培养显示出比S1616单培养更高的D - 葡萄糖酸消耗率,而M597不能将D - 葡萄糖酸作为唯一碳源。S1616单培养的上清液支持M597的生长,且上清液中的支链氨基酸被消耗。转录组分析表明,M597诱导了S1616中支链氨基酸生物合成基因的表达。此外,宏基因组分析揭示了这4株菌株在全球海洋生物膜中的广泛分布以及强烈的共现相关性。总之,我们的研究结果表明,种间正向相互作用在海洋生物膜红杆菌科中普遍存在,且这些相互作用可能由支链氨基酸代谢介导。

重要性

种间相互作用对于微生物群落的结构和功能至关重要。尽管在模式微生物中的社会行为已得到充分研究,但自然海洋生物膜中,尤其是具有复杂代谢途径的红杆菌科的物种间相互作用尚未得到充分了解。我们的研究结果表明,可由支链氨基酸生物合成介导的正向微生物相互作用在海洋生物膜红杆菌科中很常见。本研究为微生物相互作用和海洋生物膜生态学提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87dc/11921356/8fae053c4473/aem.02411-24.f001.jpg

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