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Cytokinin drives assembly of the phyllosphere microbiome and promotes disease resistance through structural and chemical cues

生物 叶圈 植物免疫 微生物群 细胞分裂素 免疫 植物抗病性 抗菌 细菌 细胞生物学 生物膜 微生物学 拟南芥 遗传学 植物 基因 免疫系统 生长素 突变体
作者
Rupali Gupta,Dorin Elkabetz,Meirav Leibman‐Markus,Tali Sayas,Anat Schneider,Elie Jami,Maya Kleiman,Maya Bar
出处
期刊:The ISME Journal [Springer Nature]
卷期号:16 (1): 122-137 被引量:46
标识
DOI:10.1038/s41396-021-01060-3
摘要

The plant hormone cytokinin (CK) is an important developmental regulator, promoting morphogenesis and delaying differentiation and senescence. From developmental processes, to growth, to stress tolerance, CKs are central in plant life. CKs are also known to mediate plant immunity and disease resistance, and several classes of microbes can also produce CKs, affecting the interaction with their plant hosts. While host species and genotype can be a driving force in shaping the plant microbiome, how plant developmental hormones such as CK can shape the microbiome is largely uninvestigated. Here, we examined the relationship between CK and the phyllosphere microbiome, finding that CK acts as a selective force in microbiome assembly, increasing richness, and promoting the presence of Firmicutes. CK-mediated immunity was found to partially depend on the microbial community, and bacilli isolated from previously described CK-rich plant genotypes, which overexpress a CK biosynthesis gene or have increased CK sensitivity, induced plant immunity, and promoted disease resistance. Using a biomimetic system, we investigated the relationship between the leaf microstructure, which is differentially patterned upon changes in CK content or signaling, and the growth of different phyllosphere microbes. We found that leaf structures derived from CK-rich plant genotypes support bacilli in the biomimetic system. CK was able to promote the growth, swarming, and biofilm formation of immunity inducing bacillus isolates in vitro. Overall, our results indicate that host genotype and hormonal profiles can act as a strong selective force in microbiome assembly, underlying differential immunity profiles, and pathogen resistance as a result.
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