Yuan Hongbo, Yuan Mengjia, Shi Bingke, Wang Zhuoni, Huang Tianxiang, Qin Genhong, Hou Hui, Wang Li, Tu Hongtao
Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou, China.
Front Microbiol. 2022 Jul 22;13:950742. doi: 10.3389/fmicb.2022.950742. eCollection 2022.
Pear Valsa canker caused by is among the most destructive diseases of pear, which causes significant economic loss. The present study was developed to explore the biocontrol efficiency and underlying antagonistic mechanism of strain Nl4 against . strain Nl4, one of the 120 different endophytic bacterial strains from pear branches, exhibited strong inhibitory effects against the mycelial growth of and caused hyphal malformation. Culture filtrate derived from strain Nl4 was able to effectively suppress mycelial growth of , and was found to exhibit strong protease, cellulase and β-1, 3-glucanase activity. Through re-isolation assay, strain Nl4 was confirmed to be capable of colonizing and surviving in pear branch. Treatment with strain NI4 effectively protected against pear Valsa canker symptoms on detached pear twigs inoculated with . Moreover, strain Nl4 promoted enhanced plant growth probably through the solubilization of phosphorus. Comparative transcriptomic analyses revealed that strain NI4 was able to suppress growth in large part through the regulation of the expression of membrane- and energy metabolism-related genes in this pathogen. Further transcriptomic analyses of pear trees indicated that strain NI4 inoculation was associated with changes in the expression of genes associated with secondary metabolite biosynthesis, signal transduction, and cutin, suberine, and wax biosynthesis. Together, these data highlighted strain Nl4 as a promising biocontrol agent against pear Valsa canker and investigated the possible mechanisms of strain Nl4 on control of this devastating disease.
由[病原菌名称未给出]引起的梨黑星病菌溃疡病是梨树最具毁灭性的病害之一,会造成重大经济损失。本研究旨在探索Nl4菌株对[病原菌名称未给出]的生物防治效果及潜在的拮抗机制。Nl4菌株是从梨树枝条分离得到的120种不同内生细菌菌株之一,对[病原菌名称未给出]的菌丝生长表现出强烈抑制作用,并导致菌丝畸形。Nl4菌株的培养滤液能够有效抑制[病原菌名称未给出]的菌丝生长,且具有较强的蛋白酶、纤维素酶和β-1,3-葡聚糖酶活性。通过再分离试验,证实Nl4菌株能够在梨树枝条上定殖和存活。用Nl4菌株处理能有效保护接种了[病原菌名称未给出]的离体梨树枝条免受梨黑星病菌溃疡病症状的侵害。此外,Nl4菌株可能通过溶解磷促进植物生长。比较转录组分析表明,Nl4菌株能够通过调控该病原菌中与膜和能量代谢相关基因的表达,在很大程度上抑制[病原菌名称未给出]的生长。对梨树的进一步转录组分析表明,接种Nl4菌株与次生代谢物生物合成、信号转导以及角质、木栓质和蜡质生物合成相关基因的表达变化有关。总之,这些数据突出了Nl4菌株作为一种有前途的防治梨黑星病菌溃疡病的生物防治剂,并研究了Nl4菌株控制这种毁灭性病害的可能机制。