a College of Agriculture, Heilongjiang Bayi Agricultural University, Daqing, 163319, Heilongjiang, China.
b Heilongjiang Academy of Land Reclamation, Haerbin, Heilongjiang Province, 150038, China.
Genome. 2018 Oct;61(10):725-734. doi: 10.1139/gen-2018-0113.
Paenibacillus terrae NK3-4 is a plant growth-promoting rhizobacterium that may be useful for controlling plant diseases. We conducted a genomic analysis and identified the genes mediating antimicrobial functions. Additionally, an extracellular antifungal protein component was isolated and identified. The draft genome sequence was assembled into 54 contigs, with 5 458 568 bp and a G+C content of 47%. Moreover, 4 690 015 bp encoded 5090 proteins, 7 rRNAs, and 54 tRNAs. Forty-four genes involved in antimicrobial functions were detected. They mainly encode 19 non-ribosomal peptide synthetases (NRPSs); one polyketide synthase/NRPSs hybrid enzyme; four Zn-dependent metalloproteases; three antilisterial bacteriocin subtilosin biosynthesis proteins (AlbA); four serine proteases; five pectate lyases; three beta-glucanases; and four 1,4-beta-xylanases. These include four novel NRPSs that have not been found in any species of Paenibacillus. Furthermore, five proteins exhibiting antifungal activity were identified from the antifungal extracellular protein component based on MS/MS and the strain NK3-4 predicted protein library. On the basis of these features, we propose that strain NK3-4 represents a promising biocontrol agent for protecting plant from diseases. The draft genome sequence described herein may provide the genetic basis for the characterization of the molecular mechanisms underlying the biocontrol functions. It may also facilitate the development of rational strategies for improving the strain.
地芽孢杆菌 NK3-4 是一种具有促植物生长功能的根际细菌,可能有助于防治植物病害。我们进行了基因组分析,鉴定了介导抗菌功能的基因。此外,还分离和鉴定了一种细胞外抗真菌蛋白成分。该草案基因组序列组装成 54 个连续序列,共有 5458568bp,G+C 含量为 47%。此外,4690015bp 编码 5090 种蛋白质、7 种 rRNA 和 54 种 tRNA。检测到 44 个参与抗菌功能的基因。它们主要编码 19 种非核糖体肽合成酶(NRPSs);一种聚酮合酶/NRPSs 杂合酶;四种 Zn 依赖性金属蛋白酶;三种抗李斯特菌细菌素枯草菌素生物合成蛋白(AlbA);四种丝氨酸蛋白酶;五种果胶裂解酶;三种β-葡聚糖酶;和四种 1,4-β-木聚糖酶。其中包括四种在任何地芽孢杆菌种中都没有发现的新型 NRPSs。此外,还从抗真菌细胞外蛋白成分中根据 MS/MS 和 NK3-4 预测蛋白文库鉴定出五种具有抗真菌活性的蛋白质。基于这些特征,我们提出 NK3-4 菌株代表了一种有前途的生物防治剂,可以保护植物免受病害。本文描述的基因组草案序列可能为阐明生物防治功能的分子机制提供遗传基础。它还可能有助于制定合理的策略来提高该菌株的性能。