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细胞外囊泡有助于生物膜起始阶段的混合真菌种间竞争。

Extracellular Vesicles Contribute to Mixed-Fungal Species Competition during Biofilm Initiation.

机构信息

Department of Medicine, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Department of Microbiology and Immunology, University of Wisconsin-Madison, Madison, Wisconsin, USA.

出版信息

mBio. 2022 Dec 20;13(6):e0298822. doi: 10.1128/mbio.02988-22. Epub 2022 Nov 15.

Abstract

Extracellular vesicles commonly modulate interactions among cellular communities. Recent studies demonstrate that biofilm maturation features, including matrix production, drug resistance, and dispersion, require the delivery of a core protein and carbohydrate vesicle cargo in species. The function of the vesicle cargo for these advanced-phase biofilm characteristics appears to be conserved across species. Mixed-species interactions in mature biofilms indicate that vesicle cargo serves a cooperative role in preserving the community. Here, we define the function of biofilm-associated vesicles for biofilm initiation both within and among five species across the genus. We found similar vesicle cargo functions for several conserved proteins across species, based on the behavior of mutants. Repletion of the adhesion environment with wild-type vesicles returned the community phenotype toward reference levels in intraspecies experiments. However, cross-species vesicle complementation did not restore the wild-type biology and in fact drove the phenotype in the opposite direction for most cross-species interactions. Further study of mixed-species biofilm adhesion and exogenous wild-type vesicle administration similarly demonstrated competitive interactions. Our studies indicate that similar vesicle cargoes contribute to biofilm initiation. However, vesicles from disparate species serve an interference competitive role in mixed- species scenarios. species commonly form mixed-species biofilms with other species and bacteria. In the established biofilm state, vesicle cargo delivers public goods to support the mature community. At biofilm initiation, however, vesicles play a negative role in cross-species interactions, presumably to allow species to gain a survival advantage. These observations and recent reports reveal that vesicle cargo has both cooperative and competitive roles among species, depending on the needs of the community biofilm formation.

摘要

细胞外囊泡通常调节细胞群体之间的相互作用。最近的研究表明,生物膜成熟的特征,包括基质产生、耐药性和分散,需要在物种中输送核心蛋白和碳水化合物囊泡货物。对于这些高级生物膜特征,囊泡货物的功能似乎在物种间是保守的。成熟生物膜中的混合物种相互作用表明,囊泡货物在保护群落方面起着合作作用。在这里,我们定义了与生物膜相关的囊泡在五个物种中的生物膜起始功能,这些物种跨越了属。我们发现,基于突变体的行为,几种保守蛋白的囊泡货物功能在物种间是相似的。用野生型囊泡补充粘附环境,使同种内实验中的群落表型恢复到参考水平。然而,跨物种囊泡补充并没有恢复野生型生物学,事实上,对于大多数跨物种相互作用,它使表型朝着相反的方向发展。对混合物种生物膜粘附和外源性野生型囊泡给药的进一步研究同样表明存在竞争相互作用。我们的研究表明,相似的囊泡货物有助于生物膜起始。然而,来自不同物种的囊泡在混合物种情况下起着干扰竞争的作用。物种通常与其他物种和细菌形成混合物种生物膜。在已建立的生物膜状态下,囊泡货物输送公共货物以支持成熟的群落。然而,在生物膜起始时,囊泡在种间相互作用中起着负面作用,可能是为了使物种获得生存优势。这些观察结果和最近的报告表明,囊泡货物在物种间具有合作和竞争的作用,这取决于群落生物膜形成的需要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da4c/9765065/df625133cf28/mbio.02988-22-f001.jpg

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