State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural Universitygrid.35155.37, Wuhan, People's Republic of China.
Desert Research Center, Arab, Republic of Egypt.
Microbiol Spectr. 2022 Feb 23;10(1):e0216921. doi: 10.1128/spectrum.02169-21. Epub 2022 Feb 2.
Bacillus velezensis HNA3, a potential plant growth promoter and biocontrol rhizobacterium, was isolated from plant rhizosphere soils in our previous work. Here, we sequenced the entire genome of the HNA3 strain and performed a comparative genome analysis. We found that HNA3 has a 3,929-kb chromosome with 46.5% GC content and 4,080 CDSs. We reclassified HNA3 as a Bacillus velezensis strain by core genome analysis between HNA3 and 74 previously defined strains in the evolutionary tree. A comparative genomic analysis among Bacillus velezensis HNA3, Bacillus velezensis FZB42, Bacillus amyloliquefaciens DSM7, and Bacillus subtilis 168 showed that only HNA3 has one predicated secretory protein feruloyl esterase that catalyzes the hydrolysis of plant cell wall polysaccharides. The analysis of gene clusters revealed that whole biosynthetic gene clusters type Lanthipeptide was exclusively identified in HNA3 and might lead to the synthesis of new bioactive compounds. Twelve gene clusters were detected in HNA3 responsible for the synthesis of 14 secondary metabolites including Bacillaene, Fengycin, Bacillomycin D, Surfactin, Plipastatin, Mycosubtilin, Paenilarvins, Macrolactin, Difficidin, Amylocyclicin, Bacilysin, Iturin, Bacillibactin, Paenibactin, and others. HNA3 has 77 genes encoding for possible antifungal and antibacterial secreting carbohydrate active enzymes. It also contains genes involved in plant growth promotion, such as 11 putative indole acetic acid (IAA)-producing genes, spermidine and polyamine synthase genes, volatile compound producing genes, and multiple biofilm related genes. HNA3 also has 19 phosphatase genes involved in phosphorus solubilization. Our results provide insights into the genetic characteristics responsible for the bioactivities and potential application of HNA3 as plant growth-promoting strain in ecological agriculture. This study is the primary initiative to identify Bacillus velezensis HNA3 whole genome sequence and reveal its genomic properties as an effective biocontrol agent against plant pathogens and a plant growth stimulator. HNA3 genetic profile can be used as a reference for future studies that can be applied as a highly effective biofertilizer and biofungicide inoculum to improve agriculture productivity. HNA3 reclassified in the phylogenetic tree which may be helpful for highly effective strain engineering and taxonomy. The genetic comparison among HNA3 and closely similar species B. velezensis FZB42, DSM7, and B. subtilis 168 demonstrates some distinctive genetic properties of HNA3 and provides a basis for the genetic diversity of the genus, which allows developing more effective eco-friendly resources for agriculture and separation of Bacillus velezensis as distinct species in the phylogenetic tree.
从我们之前的工作中可知,解淀粉芽孢杆菌 HNA3 是一种潜在的植物生长促进剂和生物防治根际细菌,从植物根际土壤中分离得到。在这里,我们对 HNA3 菌株进行了全基因组测序,并进行了比较基因组分析。我们发现 HNA3 有一个 3929kb 的染色体,GC 含量为 46.5%,有 4080 个 CDS。通过核心基因组分析,我们将 HNA3 重新分类为解淀粉芽孢杆菌菌株,该分析在进化树中比较了 HNA3 和 74 个之前定义的菌株。解淀粉芽孢杆菌 HNA3、解淀粉芽孢杆菌 FZB42、解淀粉芽孢杆菌 DSM7 和枯草芽孢杆菌 168 的比较基因组分析表明,只有 HNA3 有一种预测的分泌蛋白阿魏酸酯酶,它可以催化植物细胞壁多糖的水解。基因簇分析表明,只有 HNA3 中存在全生物合成的 Lanthipeptide 基因簇,可能导致新的生物活性化合物的合成。在 HNA3 中检测到 12 个基因簇,负责合成包括 Bacillaene、Fengycin、Bacillomycin D、Surfactin、Plipastatin、Mycosubtilin、Paenilarvins、Macrolactin、Difficidin、Amylocyclicin、Bacilysin、Iturin、Bacillibactin、Paenibactin 等 14 种次级代谢产物。HNA3 有 77 个基因编码可能具有抗真菌和抗菌活性的分泌碳水化合物活性酶。它还包含参与植物生长促进的基因,如 11 个推定的吲哚乙酸(IAA)产生基因、腐胺和多胺合酶基因、挥发性化合物产生基因和多个生物膜相关基因。HNA3 还有 19 个参与磷溶解的磷酸酶基因。我们的结果深入了解了遗传特征,这些特征负责 HNA3 的生物活性及其作为生态农业中植物生长促进菌株的潜在应用。这项研究是首次确定解淀粉芽孢杆菌 HNA3 全基因组序列并揭示其基因组特性作为植物病原菌的有效生物防治剂和植物生长刺激剂。HNA3 的遗传特征可作为未来研究的参考,可作为高效生物肥料和生物杀菌剂接种剂,以提高农业生产力。HNA3 在系统发育树中的重新分类可能有助于高效的菌株工程和分类学。HNA3 与密切相关的物种解淀粉芽孢杆菌 FZB42、DSM7 和枯草芽孢杆菌 168 之间的遗传比较表明,HNA3 具有一些独特的遗传特性,为该属的遗传多样性提供了基础,这允许开发更有效的生态友好型农业资源,并将解淀粉芽孢杆菌分离为系统发育树中的独特物种。