营养不良
生物
硫胺素
细菌
拉伤
微生物学
生物化学
维生素
B族维生素
突变体
遗传学
基因
解剖
内分泌学
作者
Birgitta Ryback,Miriam Bortfeld‐Miller,Julia A. Vorholt
出处
期刊:The ISME Journal
[Springer Nature]
日期:2022-08-20
卷期号:16 (12): 2712-2724
被引量:16
标识
DOI:10.1038/s41396-022-01303-x
摘要
Auxotrophs are unable to synthesize all the metabolites essential for their metabolism and rely on others to provide them. They have been intensively studied in laboratory-generated and -evolved mutants, but emergent adaptation mechanisms to auxotrophy have not been systematically addressed. Here, we investigated auxotrophies in bacteria isolated from Arabidopsis thaliana leaves and found that up to half of the strains have auxotrophic requirements for biotin, niacin, pantothenate and/or thiamine. We then explored the genetic basis of auxotrophy as well as traits that co-occurred with vitamin auxotrophy. We found that auxotrophic strains generally stored coenzymes with the capacity to grow exponentially for 1-3 doublings without vitamin supplementation; however, the highest observed storage was for biotin, which allowed for 9 doublings in one strain. In co-culture experiments, we demonstrated vitamin supply to auxotrophs, and found that auxotrophic strains maintained higher species richness than prototrophs upon external supplementation with vitamins. Extension of a consumer-resource model predicted that auxotrophs can utilize carbon compounds provided by other organisms, suggesting that auxotrophic strains benefit from metabolic by-products beyond vitamins.
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