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The RNA chaperone Hfq acts as a global regulator of numerous biological processes, such as carbon/nitrogen metabolism and environmental adaptation in plant-associated diazotrophs; however, its target RNAs and the mechanisms underlying nitrogen fixation remain largely unknown. Here, we used enhanced UV cross-linking immunoprecipitation coupled with high-throughput sequencing to identify hundreds of Hfq-binding RNAs probably involved in nitrogen fixation, carbon substrate utilization, biofilm formation, and other functions. Collectively, these processes endow strain A1501 with the requisite capabilities to thrive in the highly competitive rhizosphere. Our findings revealed a previously uncharted landscape of Hfq target genes. Notable among these is
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Fanyang Lv
McMaster University
Yuhua Zhan
Agricultural Information Institute
Haichao Feng
Henan Polytechnic University
mSphere
Chinese Academy of Agricultural Sciences
Henan University
Biotechnology Research Institute
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Lv et al. (Wed,) studied this question.
synapsesocial.com/papers/68e69fffb6db643587623dff — DOI: https://doi.org/10.1128/msphere.00762-23