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Plant-Growth Promotion and Biocontrol Properties of Three Streptomyces spp. Isolates to Control Bacterial Rice Pathogens

机译:三种链霉菌 spp的植物生长促进和生物防治特性。分离物可控制细菌性水稻病原菌

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Bacterial Panicle Blight caused by Burkholderia glumae is a major disease of rice, which has dramatically affected rice production around the world in the last years. In this study we describe the assessment of three Streptomyces isolates as biocontrol agents for B. glumae . Additionally, the presence of other plant-growth promoting abilities and their possible beneficial effects upon their inoculation on rice plants was evaluated as an ecological analysis for their future inoculation in rice crops. Two isolates (A20 and 5.1) inhibited growth of virulent B. glumae strains, as well as a wide range of bacterial and fungal species, while a third strain (7.1) showed only antifungal activity. In vitro tests demonstrated the ability of these strains to produce siderophores, Indoleacetic acid (IAA), extracellular enzymes and solubilizing phosphate. Greenhouse experiments with two rice cultivars indicated that Streptomyces A20 is able to colonize rice plants and promote plant growth in both cultivars. Furthermore, an egfp tagged mutant was generated and colonization experiments were performed, indicating that Streptomyces A20 –GFP was strongly associated with root hairs, which may be related to the plant growth promotion observed in the gnotobiotic experiments. In order to characterize the antimicrobial compounds produced by strain A20 bacteria, mass spectrometry analyses were performed. This technique indicated that A20 produced several antimicrobial compounds with sizes below 3 kDa and three of these molecules were identified as Streptotricins D, E and F. These findings indicate the potential of Streptomyces A20 as a biocontrol inoculant to protect rice plants against bacterial diseases.
机译:伯克霍尔德氏菌引起的细菌性穗枯萎病是水稻的主要病害,在过去几年中已极大地影响了世界各地的水稻生产。在这项研究中,我们描述了对三种链霉菌菌株的评估,作为B. glumae的生物防治剂。此外,还评估了其他植物生长促进能力的存在及其对水稻植物接种的可能有益作用,作为对其在水稻作物中未来接种的生态分析。两种分离物(A20和5.1)抑制了强毒的小球芽孢杆菌菌株以及各种细菌和真菌种类的生长,而第三种菌株(7.1)仅显示出抗真菌活性。体外试验证明了这些菌株产生铁载体,吲哚乙酸(IAA),细胞外酶和增溶磷酸盐的能力。在两个水稻品种上进行的温室实验表明,链霉菌A20能够在两个水稻品种上定植并促进植物生长。此外,产生了带有egfp标签的突变体,并进行了定植实验,表明链霉菌A20 –GFP与根毛密切相关,这可能与在致癌性实验中观察到的植物生长促进有关。为了表征菌株A20细菌产生的抗菌化合物,进行了质谱分析。这项技术表明A20产生了几种大小小于3 kDa的抗菌化合物,其中三个分子被鉴定为链霉菌素D,E和F。这些发现表明链霉菌A20作为一种生物防治接种剂具有保护水稻免受细菌性疾病侵害的潜力。

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