Division of Crop Protection, ICAR-Indian Institute of Spices Research (IISR), Marikunnu P.O., Kozhikode, Kerala, 673012, India.
Arch Microbiol. 2020 Mar;202(2):369-375. doi: 10.1007/s00203-019-01753-6. Epub 2019 Oct 30.
Methanol, a by-product associated with plant metabolism, is a substrate for pink pigmented facultative methylotrophs (PPFMs) of phyllosphere. The symbiotic interaction of PPFMs has many desirable effects on plant growth and disease resistance. The present study investigated the potential of native PPFMs for mitigating biotic stress and plant growth promotion in ginger. PPFMs were isolated from ginger phyllosphere by leaf imprint technique and screened against major fungal phytopathogens of ginger viz. Macrophomina phaseolina, Sclerotium rolfsii, Pythium myriotylum, Colletotrichum gloeosporioides and Fusarium oxysporum. Among the 60 PPFMs, IISRGPPFM13 was selected for its highly inhibitory activity against the target pathogens. The isolate was useful for mineral solubility, production of IAA, siderophores and hydrolytic enzymes like cellulase, pectinase, lipase, amylase and chitinase. On in planta experiments revealed that IISRGPPFM13 considerably increased plant growth parameters when the bacterium was applied as soil drenching cum foliar spraying. Methanol utilization potential of the isolate was confirmed by mxaF gene analysis where the sequence showing 95.51% identity towards Methylobacterium platani and M. iners. Further, 16S rRNA gene sequence showing 98.73% identity with M. komagatae 002-079 (AB252201). This is the first report of its kind that a genus of Methylobacterium with biostimulant potential isolated from the phyllosphere of ginger.
甲醇是一种与植物代谢有关的副产品,是叶际中粉红色兼性甲基营养菌(PPFM)的基质。PPFM 的共生相互作用对植物的生长和抗病性有许多理想的影响。本研究调查了本地 PPFMs 在减轻生姜生物胁迫和促进植物生长方面的潜力。通过叶印迹技术从生姜叶际分离出 PPFMs,并对生姜的主要真菌病原体(如大丽轮枝菌、茄病镰刀菌、腐霉、胶孢炭疽菌和尖孢镰刀菌)进行了筛选。在 60 株 PPFMs 中,IISRGPPFM13 因其对目标病原体的高度抑制活性而被选中。该分离株对矿物溶解度、IAA 生产、铁载体和水解酶(如纤维素酶、果胶酶、脂肪酶、淀粉酶和几丁质酶)具有有用性。在植物体内实验中发现,当细菌作为土壤灌根和叶面喷雾施用时,IISRGPPFM13 可显著提高植物生长参数。通过 mxaF 基因分析证实了该分离株的甲醇利用潜力,该序列与苹果黄单胞菌和 M. iners 表现出 95.51%的同源性。此外,16S rRNA 基因序列与 M. komagatae 002-079(AB252201)表现出 98.73%的同源性。这是首次报道从生姜叶际分离出具有生物刺激潜力的甲基杆菌属的情况。