数字农科院2.0

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

文献类型: 外文期刊

作者: Lv, Fanyang;Zhan, Yuhua;Feng, Haichao;Sun, Wenyue;Yin, Changyan;Han, Yueyue;Shao, Yahui;Xue, Wei;Jiang, Shanshan;Ma, Yiyuan;Hu, Haonan;Wei, Jinfeng;Yan, Yongliang;Lin, Min

作者机构:

关键词: eCLIP-seq;nitrogen fixation;Pseudomonas stutzeri;Hfq;posttranscriptional regulation

期刊名称: MSPHERE

ISSN:

年卷期: 2024 年

页码:

收录情况: SCIE(2024版)

摘要: 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 nifM, encoding an isomerase necessary for nitrogenase reductase solubility; amtB, encoding an ammonium transporter; oprB, encoding a carbohydrate porin; and cheZ, 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 Pseudomonas stutzeri 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.

分类号:

  • 相关文献

[1]Involvement of GlnK, a P(II) protein, in control of nitrogen fixation and ammonia assimilation in Pseudomonas stutzeri A1501. He, Sheng,Chen, Ming,Xie, Zhihong,Yan, Yongliang,Li, Hongquan,Fan, Ying,Ping, Shuzhen,Lin, Min,He, Sheng,Elmerich, Claudine. 2008

[2]The novel regulatory ncRNA, NfiS, optimizes nitrogen fixation via base pairing with the nitrogenase gene nifK mRNA in Pseudomonas stutzeri A1501. Zhan, Yuhua,Yan, Yongliang,Deng, Zhiping,Chen, Ming,Lu, Wei,Lu, Chao,Shang, Liguo,Yang, Zhimin,Zhang, Wei,Wang, Wei,Li, Yun,Ke, Qi,Lu, Jiasi,Xu, Yuquan,Zhang, Liwen,Cheng, Qi,Lin, Min,Xie, Zhihong,Elmerich, Claudine.

[3]The Sigma Factor AlgU Regulates Exopolysaccharide Production and Nitrogen-Fixing Biofilm Formation by Directly Activating the Transcription of pslA in Pseudomonas stutzeri A1501. Yahui Shao,Changyan Yin,Fanyang Lv,Shanshan Jiang,Shaoyu Wu,Yueyue Han,Wei Xue,Yiyuan Ma,Juan Zheng,Yuhua Zhan,Xiubin Ke,Wei Lu,Min Lin,Liguo Shang,Yongliang Yan. 2022

[4]Pseudomonas stutzer S12过氧化氢酶基因的表达及酶学特性研究. 赵书雪,刘晓青,伍宁丰,田健. 2021

[5]细菌非编码小RNA的研究与展望. 朱阵,刘翠翠,王婧,张继瑜,魏小娟,邢守叶. 2015

[6]细菌RNA分子伴侣Hfq的研究进展. 王巍,战嵛华,杨智敏,侯明生,燕永亮. 2015

[7]非编码RNAs在细菌代谢网络调控中的研究进展. 战嵛华,马尧,邓志平,时朝,张云华,燕永亮. 2011

[8]肠炎沙门氏菌hfq缺失株的构建和对fliC基因的调控分析. 孟霞,孟宪臣,朱春红,王亨,王金秋,聂佳佳,朱国强. 2013

[9]Molecular mechanism of enhanced ethanol tolerance associated with hfq overexpression in Zymomonas mobilis. Tang Y.,Wang Y.,Yang Q.,Zhang Y.,Wu Y.,Yang Y.,Mei M.,He M.,Wang X.,Yang S.. 2022

[10]Molecular characterization of insulin receptor (IR) in oriental fruit moth, Grapholita molesta (Lepidoptera: Tortricidae), and elucidation of its regulatory roles in glucolipid homeostasis and metamorphosis through interaction with miR-982490. Fang, Haibo,Wang, Xiu,Liu, Xiaoxia,Michaud, J. P.,Wu, Yanan,Zhang, Huaijiang,Li, Yisong,Li, Zhen. 2022

[11]A Novel Small RNA, DsrO, in Deinococcus radiodurans Promotes Methionine Sulfoxide Reductase (msrA) Expression for Oxidative Stress Adaptation. Chen, Yun,Zhao, Mingming,Lv, Mengli,林敏,王劲,Zuo, Kaijing. 2022

[12]Involvement of the ammonium transporter AmtB in nitrogenase regulation and ammonium excretion in Pseudomonas stutzeri A1501. Zhang, Tao,Yan, Yongliang,He, Sheng,Ping, Shuzhen,Alam, Khandakar Mohiul,Han, Yunlei,Liu, Xiaodong,Lu, Wei,Zhang, Wei,Chen, Ming,Lin, Min,Zhang, Tao,Xiang, Wensheng,Wang, Xiangjing.

[13]Identification of the nitrogen-fixing Pseudomonas stutzeri major flagellar gene regulator FIeQ and its role in biofilm formation and root colonization. Ma Yao,Ma Yao,Zhang Qiu-lei,Yang Zhi-min,Li Yun,Yan Yong-liang,Ping Shu-zhen,Zhang Li-wen,Lin Min,Lu Wei,Yang Zhi-min.

[14]Structural and functional analysis of denitrification genes in Pseudomonas stutzeri A1501. Yan, YL,Yang, J,Chen, LH,Yang, F,Dong, J,Xue, Y,Xu, XY,Zhu, YF,Yao, ZJ,Lin, M,Wang, YP,Jin, Q.

[15]High-Frequency Targeted Mutagenesis in Pseudomonas stutzeri Using a Vector-Free Allele-Exchange Protocol. Gomaa, Ahmed E.,Deng, Zhiping,Yang, Zhimin,Shang, Liguo,Zhan, Yuhua,Lu, Wei,Lin, Min,Yan, Yongliang.

[16]Insight rifampicin-resistant (rpoB) mutation in Pseudomonas stutzeri leads to enhance the biosynthesis of secondary metabolites to survive against harsh environments. Khandakar Mohiul Alam,林敏、燕永亮,Md Ariful Islam,Ahmed Gaber,Akbar Hossain. 2022

[17]Effect of Pseudomonas stutzeri F2 on rearing water quality and growth, innate immunity, visceral morphology and gut microbiota structure of juvenile spotted seabass (Lateolabrax maculatus). Weilai Fu,Peifeng Duan,Qiang Wang,Junying Song,Yunshuang Wang,Zhen Zhang,Pan Wang,Huihui Jiang,Xian Zhang,Guolong Song,Zhiming Rao. 2023

[18]Complete genome sequence of endophytic nitrogen-fixing Klebsiella variicola strain DX120E. Lin, Li,Li, Yangrui,Yang, Litao,Lin, Li,Li, Yangrui,Yang, Litao,Lin, Li,Li, Yangrui,Yang, Litao,Lin, Li,Li, Yangrui,Yang, Litao,Wei, Chunyan,Li, Yangrui,Yang, Litao,Chen, Mingyue,Wang, Hongcheng,Li, Yuanyuan,An, Qianli,Yang, Litao. 2015

[19]Genomic and phenotypic analyses of Pseudomonas psychrotolerans PRS08-11306 reveal a turnerbactin biosynthesis gene cluster that contributes to nitrogen fixation. Liu, Ruifang,Zhang, Yu,Chen, Ping,Lin, Haiyan,Ye, Guoyou,Wang, Zhongwei,Ge, Changwei,Ren, Deyong,Liu, Ruifang,Lin, Haiyan,Zhu, Bo,Zhu, Bo.

[20]Endophytic nitrogen-fixing Klebsiella variicola strain DX120E promotes sugarcane growth. Wei, Chun-Yan,Lin, Li,Luo, Li-Jing,Xing, Yong-Xiu,Yang, Li-Tao,Li, Yang-Rui,Lin, Li,Hu, Chun-Jin,Li, Yang-Rui,Lin, Li,Hu, Chun-Jin,Li, Yang-Rui,Lin, Li,Hu, Chun-Jin,Li, Yang-Rui,Lin, Li,Hu, Chun-Jin,Li, Yang-Rui,Lin, Li,Hu, Chun-Jin,Li, Yang-Rui,An, Qianli. 2014

作者其他论文 更多>>