The Institute of Agricultural Science for South Vietnam, Ho Chi Minh City, Vietnam.
Faculty of Biological Sciences, Nong Lam University, Ho Chi Minh City, Vietnam.
Curr Microbiol. 2022 Nov 3;79(12):389. doi: 10.1007/s00284-022-03091-1.
β-Indole acetic acid is produced in the rhizosphere by endophytic bacteria and promotes plant growth. Effects of bacterial IAA producers (BIPs) on plant growth and recovery of sugarcane seedlings infected with phytoplasma causing white leaf disease (SWLD) were examined. Fifty-five endophytic bacteria isolated from rice roots were collected from the Mekong River Delta, Vietnam. Seven isolates showed β-Indole acetic acid production in culture medium supplemented with tryptophan. Interestingly, two of them (BC17 and BTII2) produced the highest β-Indole acetic acid after 4 days of culture. Based on 16S rRNA sequences and phylogenetic analysis, the BC17 and BTII2 isolates were identified as Delftia lacustris and Rahnella aquatilis, respectively. Plant growth induced by the BC17 and BTII2 isolates showed statistically significant differences in height, root length and fresh weight of rice seedlings compared with non-treatment as the control. Treatment of two bacterial isolates in SWLD infected sugarcane plants also showed differences in height of sugarcane seedlings, while gradual symptoms of exposure decreased plant mortality compared to non-treatment as the control. BIPs were shown to be efficient biofertilizer inoculants that promoted plant growth and also ameliorated damage caused by phytoplasma-associated diseases at the sugarcane seedling stage.
β-吲哚乙酸由内生细菌在根际产生,促进植物生长。本研究调查了细菌 IAA 产生菌(BIP)对感染引起白叶病(SWLD)的甘蔗幼苗的植物生长和恢复的影响。从越南湄公河三角洲采集了 55 株从水稻根部分离的内生细菌。在添加色氨酸的培养基中,有 7 株分离物显示出β-吲哚乙酸的产生。有趣的是,其中有 2 株(BC17 和 BTII2)在培养 4 天后产生了最高的β-吲哚乙酸。根据 16S rRNA 序列和系统发育分析,BC17 和 BTII2 分离物分别鉴定为德氏乳杆菌和水生拉恩氏菌。与对照(不处理)相比,BC17 和 BTII2 分离物诱导的水稻幼苗的高度、根长和鲜重均表现出统计学上的显著差异。在感染 SWLD 的甘蔗植株中处理这两种细菌分离物也显示出甘蔗幼苗高度的差异,而与对照(不处理)相比,逐渐减轻的症状降低了植物死亡率。BIP 被证明是有效的生物肥料接种剂,可促进植物生长,并在甘蔗幼苗阶段减轻与植原体相关疾病造成的损害。