内生菌联合体对水稻细菌性叶枯病的生物防治及植物生长促进剂

Z. Resti, Y. Liswarni, M. Martinius
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引用次数: 4

摘要

内生细菌的联合体同时具有多种机制(竞争、抗生素、诱导抗性等),在控制病原体和促进植物生长方面更有效。本研究的目的是获得能够抑制细菌性叶枯病并促进水稻植株生长的内生菌群。这项研究包括三个实验阶段。第一阶段是内生菌群对致病菌米黄单胞菌的抑菌能力试验。oryzae (Xoo)用Kirby Bauer法。第二阶段是内生菌群促进水稻幼苗生长的能力试验。试验采用完全随机设计(CRD), 6个内生菌群组合,每个组合15个重复。采用浸种法引入内生菌群,对水稻幼苗的株高、叶数、根长、鲜重和干重进行了观察。第三阶段是内生菌联合体抑制细菌性叶枯病和促进水稻植株生长的能力试验。试验采用完全随机设计(CRD),设置6个内生菌群组合,每个组合5个重复。通过浸泡幼苗根部,引入内生菌群。对病害发生率、病害严重程度、叶片数、株高和分蘖数进行了观察。结果表明,所有内生菌群均具有抗菌能力。对防治细菌性叶枯病、促进水稻幼苗和植株生长效果最好的内生菌群是C (Bacillus sp . SJI;芽孢杆菌sp HI和D(芽孢杆菌sp SJI;S.marcescens分离JB1E3)联合体。
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Endophytic Bacterial Consortia as Biological Control of Bacterial Leaf Blight and Plant Growth Promoter of Rice (Oryza sativa L.)
The consortia of endophytic bacteria with various mechanisms (competition, antibiotics, induction of resistance, and others), simultaneously, are more effective in controlling pathogens and increasing plant growth. The purpose of this study was to obtain endophytic bacterial consortia capable of suppressing of bacterial leaf blight and promoting the growth of rice plants. The study consisted of three experimental stages. The first stage was the test on the antibiosis ability of the endophytic bacterial consortia to suppress of pathogenic bacteria Xanthomonas oryzae pv. oryzae (Xoo) using the Kirby Bauer method. The second stage was the test on the ability of endophytic bacterial consortia to promote the growth of rice seedlings. The experiment was arranged in a Completely Randomized Design (CRD) which consisted of six combinations of endophytic bacterial consortia and 15 replications within each combination. The endophytic bacterial consortia were introduced by soaking the seeds, and the observations were made on the plant height, number of leaves, root length, fresh weight, and dry weight of rice seedlings. Meanwhile, the third stage was the test on the ability of endophytic bacterial consortia to suppress of bacterial leaf blight (BLB) diseases and to promote the rice plant growth. The experiment was arranged in a Completely Randomized Design (CRD) with six combinations of endophytic bacterial consortia and five replications within each combination. The endophytic bacterial consortia were introduced by soaking the roots of the seedlings. The observations were made on the incidence of disease, disease severity, number of leaves, plant height, and number of tillers. The results showed that all endophytic bacterial consortia had antibiosis abilities. The best endophytic bacterial consortia for controlling bacterial leaf blight and promoting the growth of rice seedlings and plants were the C (Bacillus sp SJI; Bacillus sp HI) and D (Bacillus sp SJI; S.marcescens isolate JB1E3) consortia.
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