Microbial Processes and Interactions Laboratory, Faculty Gembloux Agro-BioTech, University of Liège, Passage des Déportés 2, 5030, Gembloux, Belgium.
Laboratory of Biotechnology and Molecular Biology, Faculty of Agricultural and Environmental Sciences, Université Evangélique en Afrique, 3323, Bukavu, Democratic Republic of the Congo.
Environ Sci Pollut Res Int. 2018 Oct;25(30):29808-29821. doi: 10.1007/s11356-017-9314-9. Epub 2017 Jun 9.
In the province of South Kivu (Democratic Republic of Congo), warm and humid climatic conditions favor the development and spreading of phytopathogens. The resulting diseases cause important losses in production both in crop and after harvest. In this study, we wanted to evaluate the potential of Bacillus amyloliquefaciens as biocontrol agent to fight some newly isolated endemic fungal pathogens infesting maize. The strain S499 has been selected based on its high in vitro antagonistic activity correlating with a huge potential to secrete fungitoxic lipopeptides upon feeding on maize root exudates. Biocontrol activity of S499 was further tested on infected plantlets in growth chamber and on plants grown under field conditions over an entire cropping period. We observed a strong protective effect of this strain evaluated at two different locations with specific agro-ecological conditions. Interestingly, disease protection was associated with higher yields and our data strongly suggest that, in addition to directly inhibit pathogens, the strain may also act as biofertilizer through the solubilization of phosphorus and/or by producing plant growth hormones in the rhizosphere. This work supports the hope of exploiting such technologically advantageous bacilli for the sake of sustainable local production of this important crop in central Africa.
在南基伍省(刚果民主共和国),温暖潮湿的气候条件有利于植物病原菌的发展和传播。由此产生的疾病导致作物和收获后都造成了重大的产量损失。在这项研究中,我们希望评估解淀粉芽孢杆菌作为生物防治剂的潜力,以对抗一些新分离的地方性真菌病原体对玉米的侵害。菌株 S499 是根据其体外拮抗活性高而选择的,这种活性与在摄取玉米根分泌物时分泌大量真菌毒素脂肽的巨大潜力相关。S499 的生物防治活性在生长室中感染的幼苗和整个种植期在田间条件下生长的植物上进一步进行了测试。我们观察到在具有特定农业生态条件的两个不同地点,该菌株具有很强的保护作用。有趣的是,这种疾病的保护与更高的产量有关,我们的数据强烈表明,除了直接抑制病原体外,该菌株还可以通过在根际溶解磷和/或产生植物生长激素来充当生物肥料。这项工作支持了利用这种技术上有优势的芽孢杆菌来实现中非这一重要作物可持续当地生产的希望。