Genome sequencing and analysis of Bacillus velezensis VJH504 reveal biocontrol mechanism against cucumber Fusarium wilt

被引:13
|
作者
Yang, Fan [1 ]
Jiang, Huayan [1 ,2 ]
Ma, Kai [1 ]
Wang, Xin [1 ,2 ]
Liang, Shen [1 ]
Cai, Yuxin [1 ]
Jing, Yancai [1 ]
Tian, Baoming [1 ,2 ]
Shi, Xuanjie [1 ]
机构
[1] Zhengzhou Univ, Inst Hort, Henan Acad Agr Sci, Grad T&R Base, Zhengzhou, Henan, Peoples R China
[2] Zhengzhou Univ, Sch Agr Sci, Zhengzhou, Peoples R China
关键词
Fusarium oxysporum f. sp. cucumerinum; Bacillus velezensis; biocontrol agent; growth promotion; genome sequencing and assembly; comparative genomic analysis; biocontrol mechanism; BIOLOGICAL-CONTROL; SUBTILIS; STRAIN; BACILYSIN; MICROORGANISMS; ANTIBIOTICS; PEPTIDES; BACTERIA; DISEASE; GROWTH;
D O I
10.3389/fmicb.2023.1279695
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
One major issue in reducing cucumber yield is the destructive disease Cucumber (Cucumis sativus L.) wilt disease caused by Fusarium oxysporum f. sp. cucumerinum (Foc). When using the isolate VJH504 isolated from cucumber rhizosphere soil and identified as Bacillus velezensis, the growth of Foc in the double culture experiment was effectively inhibited. Phenotypic, phylogenetic, and genomic analyses were conducted to enhance understanding of its biocontrol mechanism. According to the result of the phenotype analysis, B. velezensis VJH504 could inhibit cucumber fusarium wilt disease both in vitro and in vivo, and significantly promote cucumber seed germination and seedling growth. Additionally, the tests of growth-promoting and biocontrol characteristics revealed the secretion of proteases, amylases, beta-1,3-glucanases, cellulases, as well as siderophores and indole-3-acetic acid by B. velezensis VJH504. Using the PacBio Sequel II system, we applied the complete genome sequencing for B. velezensis VJH504 and obtained a single circular chromosome with a size of 3.79 Mb. A phylogenetic tree was constructed based on the 16S rRNA gene sequences of B. velezensis VJH504 and 13 other Bacillus species, and Average Nucleotide Identity (ANI) analysis was performed using their whole-genome sequences, confirming isolateVJH504 as B. velezensis. Following this, based on the complete genome sequence od B. velezensis VJH504, specific functional analysis, Carbohydrate-Active Enzymes (CAZymes) analysis, and secondary metabolite analysis were carried out, predicting organism's abilities for biofilm formation, production of antifungal CAZymes, and synthesis of antagonistic secondary metabolites against pathogens. Afterwards, a comparative genomic analysis was performed between B. velezensis VJH504 and three other B. velezensis strains, revealing subtle differences in their genomic sequences and suggesting the potential for the discovery of novel antimicrobial substances in B. velezensis VJH504. In conclusion, the mechanism of B. velezensis VJH504 in controlling cucumber fusarium wilt was predicted to appear that B. velezensis VJH504is a promising biocontrol agent, showcasing excellent application potential in agricultural production.
引用
收藏
页数:18
相关论文
共 35 条
  • [21] The Complete Genome Sequence Resource of Rhizospheric Soil-Derived Bacillus velezensis Yao, with Biocontrol Potential Against Fusarium solani-Induced Pepper Root Rot
    Pei, Dongli
    Zhang, Qingchen
    Zhu, Xiaoqin
    Yao, Xiaolin
    Zhang, Lei
    PHYTOPATHOLOGY, 2023, 113 (03) : 580 - 583
  • [22] Complete genome analysis of Bacillus subtilis TY-1 reveals its biocontrol potential against tobacco bacterial wilt
    Tian, Yin
    Ji, Shunhua
    Zhang, Enren
    Chen, Yiqiang
    Xu, Guangxin
    Chen, Xi
    Fan, Jianqiang
    Tang, Xixiang
    MARINE GENOMICS, 2023, 68
  • [23] Genome and Transcriptome Analysis to Elucidate the Biocontrol Mechanism of Bacillus amyloliquefaciens XJ5 against Alternaria solani
    Mu, Fan
    Chen, Xu
    Fu, Zhenxin
    Wang, Xue
    Guo, Jiexin
    Zhao, Xiaojun
    Zhang, Baojun
    MICROORGANISMS, 2023, 11 (08)
  • [24] Comparative Transcriptome Analysis and Genetic Methods Revealed the Biocontrol Mechanism of Paenibacillus polymyxa NSY50 against Tomato Fusarium Wilt
    Du, Nanshan
    Guo, Hui
    Fu, Ruike
    Dong, Xiaoxing
    Xue, Dongqi
    Piao, Fengzhi
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (18)
  • [25] Biocontrol mechanism of Bacillus siamensis sp. QN2MO-1 against tomato fusarium wilt disease during fruit postharvest and planting
    Zhang, Miaoyi
    Li, Xiaojuan
    Pan, Yongbo
    Qi, Dengfeng
    Zhou, Dengbo
    Chen, Yufeng
    Feng, Junting
    Wei, Yongzan
    Zhao, Yankun
    Li, Kai
    Wang, Wei
    Zhang, Lu
    Xie, Jianghui
    MICROBIOLOGICAL RESEARCH, 2024, 283
  • [26] Whole-genome analysis of bacillus velezensis ZF2, a biocontrol agent that protects cucumis sativus against corynespora leaf spot diseases
    Shuai Xu
    Xuewen Xie
    Yurong Zhao
    Yanxia Shi
    Ali Chai
    Lei Li
    Baoju Li
    3 Biotech, 2020, 10
  • [27] Whole-genome analysis of bacillus velezensis ZF2, a biocontrol agent that protects cucumis sativus against corynespora leaf spot diseases
    Xu, Shuai
    Xie, Xuewen
    Zhao, Yurong
    Shi, Yanxia
    Chai, Ali
    Li, Lei
    Li, Baoju
    3 BIOTECH, 2020, 10 (04)
  • [28] Metabolomic and Transcriptome Analysis of the Inhibitory Effects of Bacillus subtilis Strain Z-14 against Fusarium oxysporum Causing Vascular Wilt Diseases in Cucumber
    Liu, Zhaosha
    Fan, Chenxi
    Xiao, Jiawen
    Sun, Shangyi
    Gao, Tongguo
    Zhu, Baocheng
    Zhang, Dongdong
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2023,
  • [29] Genome sequencing of biocontrol strain Bacillus amyloliquefaciens Bam1 and further analysis of its heavy metal resistance mechanism
    Yuanchan Luo
    Lei Chen
    Zhibo Lu
    Weijian Zhang
    Wentong Liu
    Yuwei Chen
    Xinran Wang
    Wei Du
    Jinyan Luo
    Hui Wu
    Bioresources and Bioprocessing, 9
  • [30] Genome sequencing of biocontrol strain Bacillus amyloliquefaciens Bam1 and further analysis of its heavy metal resistance mechanism
    Luo, Yuanchan
    Chen, Lei
    Lu, Zhibo
    Zhang, Weijian
    Liu, Wentong
    Chen, Yuwei
    Wang, Xinran
    Du, Wei
    Luo, Jinyan
    Wu, Hui
    BIORESOURCES AND BIOPROCESSING, 2022, 9 (01)