Heat-Stable Antifungal Factor (HSAF) Biosynthesis in Lysobacter enzymogenes Is Controlled by the Interplay of Two Transcription Factors and a Diffusible Molecule
文献类型: 外文期刊
第一作者: Su, Zhenhe
作者: Su, Zhenhe;Liu, Fengquan;Su, Zhenhe;Han, Sen;Qian, Guoliang;Liu, Fengquan;Su, Zhenhe;Han, Sen;Qian, Guoliang;Liu, Fengquan;Fu, Zheng Qing
作者机构:
关键词: 4-HBA;HSAF;Lysobacter;MarR
期刊名称:APPLIED AND ENVIRONMENTAL MICROBIOLOGY ( 影响因子:4.792; 五年影响因子:5.26 )
ISSN: 0099-2240
年卷期: 2018 年 84 卷 3 期
页码:
收录情况: SCI
摘要: Lysobacter enzymogenes is a Gram-negative, environmentally ubiquitous bacterium that produces a secondary metabolite, called heat-stable antifungal factor (HSAF), as an antifungal factor against plant and animal fungal pathogens. 4-Hydroxybenzoic acid (4-HBA) is a newly identified diffusible factor that regulates HSAF synthesis via L. enzymogenes LysR (LysRLe), an LysR-type transcription factor (TF). Here, to identify additional TFs within the 4-HBA regulatory pathway that control HSAF production, we reanalyzed the LenB2-based transcriptomic data, in which LenB2 is the enzyme responsible for 4-HBA production. This survey led to identification of three TFs (Le4806, Le4969, and Le3904). Of them, LarR (Le4806), a member of the MarR family proteins, was identified as a new TF that participated in the 4-HBA-dependent regulation of HSAF production. Our data show the following: (i) that LarR is a downstream component of the 4-HBA regulatory pathway controlling the HSAF level, while LysRLe is the receptor of 4-HBA; (ii) that 4-HBA and LysRLe have opposite regulatory effects on larR transcription whereby larR transcript is negatively modulated by 4-HBA while LysRLe, in contrast, exerts positive transcriptional regulation by directly binding to the larR promoter without being affected by 4-HBA in vitro; (iii) that LarR, similar to LysRLe, can bind to the promoter of the HSAF biosynthetic gene operon, leading to positive regulation of HSAF production; and (iv) that LarR and LysRLe cannot interact and instead control HSAF biosynthesis independently. These results outline a previously uncharacterized mechanism by which biosynthesis of the antibiotic HSAF in L. enzymogenes is modulated by the interplay of 4-HBA, a diffusible molecule, and two different TFs. IMPORTANCE Bacteria use diverse chemical signaling molecules to regulate a wide range of physiological and cellular processes. 4-HBA is an "old" chemical molecule that is produced by diverse bacterial species, but its regulatory function and working mechanism remain largely unknown. We previously found that 4-HBA in L. enzymogenes could serve as a diffusible factor regulating HSAF synthesis via LysRLe. Here, we further identified LarR, an MarR family protein, as a second TF that participates in the 4-HBA-dependent regulation of HSAF biosynthesis. Our results dissected how LarR acts as a protein linker to connect 4-HBA and HSAF synthesis, whereby LarR also has cross talk with LysRLe. Thus, our findings not only provide fundamental insight regarding how a diffusible molecule (4-HBA) adopts two different types of TFs for coordinating HSAF biosynthesis but also show the use of applied microbiology to increase the yield of the antibiotic HSAF by modification of the 4-HBA regulatory pathway in L. enzymogenes.
分类号:
- 相关文献
作者其他论文 更多>>
-
SHP-1 interacts with NFκB1 to inhibit its phosphorylation and nuclear translocation to exert its anti-bacterial function
作者:Wang, Ningning;Tan, Suxu;Wang, Muyuan;Liu, Hongning;Han, Sen;Wu, Zhendong;Ma, Jie;Chen, Songlin;Sha, Zhenxia;Wang, Ningning;Chen, Songlin;Chen, Songlin;Sha, Zhenxia
关键词:SHP-1; Immune response; Phosphorylation of NF kappa B1; Nuclear translocation
-
OsPRMT5 methylates OsPAL1 to promote rice resistance, hindered by a Xanthomonas oryzae effector
作者:Sheng, Cong;Wang, Bo;Chen, Wenchan;Guo, Baodian;Zhao, Yancun;Liu, Fengquan;Li, Kaihuai;Liu, Fengquan;Wang, Bo;Chen, Wenchan;Qiao, Lulu;Zhao, Hongwei
关键词:effector; OsPAL1; OsPRMT5; protein arginine methylation; rice bacterial blight; SA
-
Suppressiveness of spent mushroom substrate amendment against eggplant Verticillium wilt
作者:Qu, Yuanhang;Qu, Yuanhang;Liu, Xiaomeng;Su, Zhenhe;Guo, Qinggang;Ma, Ping
关键词:eggplant Verticillium wilt; spent mushroom substrate; rhizosphere;
Bacillus ; soil amendment -
Sigma factor 70 RpoD contributes to virulence by regulating cell motility, oxidative stress tolerance, and manipulating the expression of hrpG and hrpX in Xanthomonas oryzae pv. oryzae
作者:Xu, Zhizhou;Liu, Fengquan;Liu, Fengquan;Xu, Zhizhou;Wang, Bo;Guo, Baodian;Sheng, Cong;Zhao, Yangyang;Tang, Bao;Zhao, Yancun;Liu, Fengquan;Wu, Guichun
关键词:Oryza sativa; sigma factor; pathogenicity; transcriptional regulation; type III secretion system
-
Mycoviral Diversity of Fusarium oxysporum f. sp. niveum in Three Major Watermelon-Production Areas in China
作者:Yang, Jiawang;Wang, Yajiao;Han, Sen;Li, Bo;Wu, Yuxing;Yang, Jiawang;Li, Zihao;Li, Bo
关键词:
Fusarium wilt of watermelon;Fusarium oxysporum f. sp.niveum ; mycovirus; diversity -
Apoplastic proteomic reveals Colletotrichum fructicola effector CfXyn11A recognized by tobacco and suppressed by pear in the apoplast
作者:Han, Chenyang;Tao, Shutian;Xie, Zhihua;Zhang, Shaoling;Liu, Fengquan;Liu, Fengquan
关键词:
Colletotrichum fructicola ; Pear; Apoplastic plant-microbe interaction; Fungal effector; CfXyn11A -
Lysobacter enzymogenes: A fully armed biocontrol warrior
作者:Lin, Long;Shao, Xiaolong;Yang, Yicheng;Murero, Aprodisia Kavutu;Wang, Limin;Han, Sen;Su, Zhenhe;Qian, Guoliang;Xu, Gaoge;Zhao, Yangyang;Xu, Kangwen;Liu, Fengquan;Han, Sen;Xu, Kangwen;Yang, Mingming;Liao, Jinxing;Li, Kaihuai;Liu, Fengquan
关键词:Lysobacter enzymogenes; antimicrobial metabolites; loss of flagella; type IV secretion system