Wu Xiaohui, Wu Huijun, Wang Ruoyi, Wang Zhengqi, Zhang Yaming, Gu Qin, Farzand Ayaz, Yang Xue, Semenov Mikhail, Borriss Rainer, Xie Yongli, Gao Xuewen
Key Laboratory of Integrated Management of Crop Diseases and Pests, Ministry of Education, Department of Plant Pathology, College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China.
Department of Grassland Science, College of Agricultural and Husbandry, Qinghai University, Xining 810016, China.
Biology (Basel). 2021 Oct 12;10(10):1030. doi: 10.3390/biology10101030.
Due to its topographical position and climatic conditions, the Qinghai-Tibet Plateau possesses abundant microorganism resources. The extremophilic strain KKD1 isolated from Hoh Xil possesses strong stress tolerance, enabling it to propagate under high salinity (13%) and alkalinity (pH 10.0) conditions. In addition, KKD1 exhibits promising biocontrol activity against plant pathogens. To further explore these traits at the genomic level, we performed whole-genome sequencing and analysis. The taxonomic identification according to the average nucleotide identity based on BLAST revealed that KKD1 belongs to . Genetic screening of KKD1 revealed that its stress resistance mechanism depends on osmotic equilibrium, membrane transportation, and the regulation of ion balance under salt and alkaline stress. The expression of genes involved in these pathways was analyzed using real-time quantitative PCR. The presence of different gene clusters encoding antimicrobial secondary metabolites indicated the various pathways by which KKD1 suppresses phytopathogenic growth. Moreover, the lipopeptides surfactin and fengycin were identified as being significant antifungal components of KKD1. Through comparative genomics analysis, we noticed that KKD1 harbored specific genes involved in stress resistance and biocontrol, thus providing a new perspective on the genomic features of the extremophilic species.
由于其地理位置和气候条件,青藏高原拥有丰富的微生物资源。从可可西里分离出的嗜极端菌KKD1具有很强的抗逆性,使其能够在高盐度(13%)和高碱度(pH 10.0)条件下繁殖。此外,KKD1对植物病原菌表现出良好的生防活性。为了在基因组水平上进一步探索这些特性,我们进行了全基因组测序和分析。基于BLAST的平均核苷酸同一性进行的分类鉴定表明KKD1属于 。对KKD1的基因筛选表明,其抗逆机制依赖于盐和碱胁迫下的渗透平衡、膜运输以及离子平衡的调节。使用实时定量PCR分析了参与这些途径的基因的表达。编码抗菌次生代谢产物的不同基因簇的存在表明了KKD1抑制植物病原菌生长的多种途径。此外,脂肽表面活性素和丰原素被鉴定为KKD1的重要抗真菌成分。通过比较基因组学分析,我们注意到KKD1含有参与抗逆和生防的特定基因,从而为嗜极端菌的基因组特征提供了新的视角。