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协同果胶解构是蜜蜂肠道细菌互利共生相互作用的前提。

Synergistic pectin deconstruction is a prerequisite for mutualistic interactions between honeybee gut bacteria.

机构信息

College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, China.

Department of Entomology, College of Plant Protection, China Agricultural University, Beijing, China.

出版信息

Nat Commun. 2024 Aug 13;15(1):6937. doi: 10.1038/s41467-024-51365-y.

Abstract

The honeybee gut microbiome is crucial for degrading diverse pollen glycans. Yet it is unclear how this process shapes the interactions among bacteria. Here, we demonstrate a conditional mutualistic interaction between strains of two honeybee gut bacteria Bifidobacterium asteroides and Gilliamella apicola. When co-occurring in vitro and in vivo, Bifidobacterium provides complementary demethylation service to promote Gilliamella growth on methylated homogalacturonan, an enriched polysaccharide of pectin. In exchange, Gilliamella shares digestive products with Bifidobacterium, through which a positive interaction is established. This positive interaction vanishes when Bifidobacterium is not required on a non-methylated diet. Results from biochemical and gene expression analyses combined with model simulation further suggest that the ratio change of the two major homogalacturonan breakdown products, galacturonic acid (GalA) and di-GalA, determines the bacterial interaction. This study unravels how glycan metabolism may shape the interactions between honeybee gut bacteria.

摘要

蜜蜂肠道微生物组对于降解多样化的花粉聚糖至关重要。然而,目前尚不清楚这一过程如何影响细菌之间的相互作用。在这里,我们展示了两种蜜蜂肠道细菌——长双歧杆菌和吉氏乳杆菌之间的条件性互利相互作用。当它们在体外和体内共同存在时,长双歧杆菌提供互补的去甲基化服务,以促进吉氏乳杆菌在甲基化同半乳糖醛酸上的生长,而同半乳糖醛酸是果胶中丰富的多糖。作为交换,吉氏乳杆菌与长双歧杆菌共享消化产物,通过这种方式建立了正相互作用。当长双歧杆菌在非甲基化饮食中不需要时,这种正相互作用就会消失。生化和基因表达分析的结果结合模型模拟进一步表明,两种主要同半乳糖醛酸降解产物——半乳糖醛酸(GalA)和二-GalA——的比例变化决定了细菌的相互作用。本研究揭示了聚糖代谢如何影响蜜蜂肠道细菌之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/347b/11322527/bceed7f55fe4/41467_2024_51365_Fig1_HTML.jpg

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