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◇ bioRxiv2026-09-11· microbiology

Genome-wide interrogation of genetic requirements for root colonization by CRISPRi-seq in Bacillus subtilis

V. Minhas, W. Abidi, J. C. Almiron, H.-H. M. Tsai, V. D. Tendon, D. Synefiaridou, J.-W. Veening, N. Geldner

一句话结论

Here, we applied genome-wide CRISPR interference sequencing (CRISPRi-seq) to systematically identify genes required for early Arabidopsis thaliana root colonization by the B. subtilis strain 3610 .

原始摘要(原文)
Bacillus subtilis is a known plant growth promoting rhizobacterium, yet, the genetic basis of effective root colonization remains understudied. Here, we applied genome-wide CRISPR interference sequencing (CRISPRi-seq) to systematically identify genes required for early Arabidopsis thaliana root colonization by the B. subtilis strain 3610 . Our genome-wide inducible CRISPRi library was used to screen for bacterial fitness during hydroponic root colonization. A complementary RNA-seq in the same conditions further revealed a distinct transcriptional state of root-associated cells. We identified 249 genes impacting root colonization. We reveal a critical role of cell envelope remodeling during early root association, specifically wall teichoic acid synthesis and D-alanylation. Moreover, we observed a metabolic shift toward TCA-cycle-driven aerobic growth with uptake of fructose, active repression of sporulation, competence and prophage programs, as well as induction of secondary metabolite biosynthesis. Our work establishes CRISPRi-seq as a powerful tool for dissecting bacterial-plant interactions relevant to sustainable agriculture.
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