Andreolli Marco, Zapparoli Giacomo, Lampis Silvia, Santi Chiara, Angelini Elisa, Bertazzon Nadia
Department of Biotechnology, University of Verona, 37134 Verona, Italy.
Research Centre for Viticulture and Enology, CREA, 31015 Conegliano, Italy.
Microorganisms. 2021 Jan 23;9(2):234. doi: 10.3390/microorganisms9020234.
An evaluation was conducted of the colonization of MP12, a plant-growth promoting and antagonistic strain, inoculated in vine plants during a standard process of grapevine nursery propagation. Three in vivo inoculation protocols (endophytic, rhizospheric, and epiphytic) were implemented and monitored by means of both culture-dependent and independent techniques. Endophytic treatment resulted in the colonization of the bacterium inside the vine cuttings, which spread to young leaves during the forcing period. Microscopy analysis performed on transformed dsRed-tagged MP12 cells confirmed the bacterium's ability to penetrate the inner part of the roots. However, endophytic MP12 strain was no longer detected once the plant materials had been placed in the vine nursery field. The bacterium also displayed an ability to colonize the rhizosphere and, when the plants were uprooted at the end of the vegetative season, its persistence was confirmed. Epiphytic inoculation, performed by foliar spraying of cell suspension, was effective in controlling artificially-induced infection in detached leaves. The success of rhizospheric and leaf colonization in vine plants suggests potential for the future exploitation of MP12 as biofertilizer and biopesticide. Further investigation is required into the stability of the bacterium's colonization of vine plants under real-world conditions in vineyards.
对MP12(一种促进植物生长且具有拮抗作用的菌株)在葡萄苗圃繁殖标准过程中接种于葡萄植株后的定殖情况进行了评估。实施了三种体内接种方案(内生、根际和附生),并通过依赖培养和不依赖培养的技术进行监测。内生处理导致该细菌在葡萄插条内定殖,并在催芽期扩散到幼叶。对转化后的dsRed标记的MP12细胞进行的显微镜分析证实了该细菌穿透根内部的能力。然而,一旦将植物材料放置在葡萄园田地中,就不再检测到内生MP12菌株。该细菌还表现出定殖于根际的能力,并且在营养生长季结束时将植物连根拔起时,证实了其持久性。通过叶面喷施细胞悬液进行的附生接种,对于控制离体叶片上的人工诱导感染是有效的。MP12在葡萄植株根际和叶片上定殖成功,表明其未来作为生物肥料和生物农药开发的潜力。需要进一步研究该细菌在葡萄园实际条件下对葡萄植株定殖的稳定性。