Mark Genevievel, Morrissey John P, Higgins P, O'gara Fergal
The BIOMERIT Research Centre, Department of Microbiology, National University of Ireland (University College Cork), Cork, Ireland.
FEMS Microbiol Ecol. 2006 May;56(2):167-77. doi: 10.1111/j.1574-6941.2006.00056.x.
Exploitation of beneficial plant-microbe interactions in the rhizosphere can result in the promotion of plant health and have significant implications for low input sustainable agriculture applications such as biocontrol. Bacteria such as Bacillus and Pseudomonas, and fungi such as Trichoderma, have been developed as commercial biocontrol products. Registration of microbial inocualants as biocontrol agents in either the European Union or the United States requires production of extensive dossiers covering efficacy, safety and risk assessment. Despite the fact that a number of Pseudomonas biocontrol products have been marketed there are still some limitations hampering the development of this technology for widespread use in agriculture. Although many strains show good performance in specific trials, this is often not translated into consistent, effective biocontrol in diverse field situations. Advances in 'Omics' technology and the publication of complete genome sequences of a number of plant-associative bacterial strains, has facilitated investigations into the molecular basis underpinning the establishment of beneficial plant-microbe interactions in the rhizosphere. The understanding of these molecular signalling processes and the functions they regulate is fundamental to promoting beneficial microbe-plant interactions, to overcome existing limitations and to designing improved strategies for the development of novel Pseudmonas biocontrol inoculant consortia.
利用根际中有益的植物-微生物相互作用可促进植物健康,并对诸如生物防治等低投入可持续农业应用具有重要意义。芽孢杆菌属和假单胞菌属等细菌以及木霉属等真菌已被开发为商业生物防治产品。在欧盟或美国,将微生物接种剂注册为生物防治剂需要编制涵盖功效、安全性和风险评估的大量卷宗。尽管已有多种假单胞菌生物防治产品上市,但仍存在一些限制因素阻碍该技术在农业中的广泛应用。虽然许多菌株在特定试验中表现良好,但在不同的田间条件下,这往往无法转化为一致、有效的生物防治效果。“组学”技术的进步以及一些植物相关细菌菌株全基因组序列的公布,有助于深入研究根际中有益植物-微生物相互作用建立的分子基础。理解这些分子信号传导过程及其调控的功能,对于促进有益微生物与植物的相互作用、克服现有局限性以及设计改进策略以开发新型假单胞菌生物防治接种剂组合至关重要。