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整合的 Hfq 相互作用 RNA 组学和转录组学分析揭示了根相关 A1501 中固氮的复杂调控网络。

Integrated Hfq-interacting RNAome and transcriptomic analysis reveals complex regulatory networks of nitrogen fixation in root-associated A1501.

机构信息

Biotechnology Research Institute/National Key Laboratory of Agricultural Microbiology, Chinese Academy of Agricultural Sciences, Beijing, China.

College of Agriculture, Henan University, Kaifeng, Henan, China.

出版信息

mSphere. 2024 Jun 25;9(6):e0076223. doi: 10.1128/msphere.00762-23. Epub 2024 May 15.

Abstract

UNLABELLED

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 , encoding an isomerase necessary for nitrogenase reductase solubility; , encoding an ammonium transporter; , encoding a carbohydrate porin; and , encoding a chemotaxis protein. Furthermore, we identified more than 100 genes of unknown function, which expands the potential direct regulatory targets of Hfq in diazotrophs. Our data showed that Hfq directly interacts with the mRNA of regulatory proteins (RsmA, AlgU, and NifA), regulatory ncRNA RsmY, and other potential targets, thus revealing the mechanistic links in nitrogen fixation and other metabolic pathways.

IMPORTANCE

Numerous experimental approaches often face challenges in distinguishing between direct and indirect effects of Hfq-mediated regulation. New technologies based on high-throughput sequencing are increasingly providing insight into the global regulation of Hfq in gene expression. Here, enhanced UV cross-linking immunoprecipitation coupled with high-throughput sequencing was employed to identify the Hfq-binding sites and potential targets in the root-associated A1501 and identify hundreds of novel Hfq-binding RNAs that are predicted to be involved in metabolism, environmental adaptation, and nitrogen fixation. In particular, we have shown Hfq interactions with various regulatory proteins' mRNA and their potential targets at the posttranscriptional level. This study not only enhances our understanding of Hfq regulation but, importantly, also provides a framework for addressing integrated regulatory network underlying root-associated nitrogen fixation.

摘要

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RNA 伴侣蛋白 Hfq 作为许多生物过程的全局调节剂,如植物相关固氮生物的碳/氮代谢和环境适应;然而,其靶 RNA 及其固氮的机制在很大程度上仍然未知。在这里,我们使用增强型 UV 交联免疫沉淀结合高通量测序来鉴定数百种可能参与固氮、碳底物利用、生物膜形成和其他功能的 Hfq 结合 RNA。总的来说,这些过程赋予菌株 A1501 在高度竞争的根际中茁壮成长的必要能力。我们的发现揭示了 Hfq 靶基因的一个以前未知的景观。其中值得注意的是 ,编码氮酶还原酶可溶性所必需的异构酶; ,编码铵转运蛋白; ,编码碳水化合物孔蛋白;和 ,编码趋化蛋白。此外,我们还鉴定了 100 多个功能未知的基因,这扩展了 Hfq 在固氮生物中的潜在直接调控靶点。我们的数据表明,Hfq 直接与调节蛋白(RsmA、AlgU 和 NifA)、调节 ncRNA RsmY 和其他潜在靶标的 mRNA 相互作用,从而揭示了固氮和其他代谢途径中的机制联系。

重要性

许多实验方法在区分 Hfq 介导的调节的直接和间接影响方面经常面临挑战。基于高通量测序的新技术越来越多地提供了对 Hfq 在基因表达中的全局调节的深入了解。在这里,我们使用增强型 UV 交联免疫沉淀结合高通量测序来鉴定与根相关的 A1501 中的 Hfq 结合位点和潜在靶标,并鉴定数百种新的 Hfq 结合 RNA,这些 RNA预测涉及代谢、环境适应和固氮。特别是,我们已经在转录后水平显示了 Hfq 与各种调节蛋白 mRNA 及其潜在靶标的相互作用。这项研究不仅增强了我们对 Hfq 调节的理解,而且重要的是,还为解决与根相关固氮相关的综合调节网络提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/134e/11332353/ed91e2d2df7a/msphere.00762-23.f001.jpg

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