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Evaluation of Biocontrol Activities of Streptomyces spp. against Rice Blast Disease Fungi

机译:链霉菌的生物防治活性评价。抗稻瘟病真菌

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摘要

Rhizosphere bacteria can positively influence plant growth by direct and indirect mechanisms. A total of 112 bacterial strains were isolated from the rhizosphere of rice and tested for plant beneficial activities such as siderophore production, cell-wall-degrading enzyme production, hydrogen cyanide (HCN) production and antifungal activity against rice blast disease fungus. The actinomycetes count was 3.8 × 10 CFU/g soil. strains PC 12, D 4.1, D 4.3 and W1 showed strong growth inhibition of blast disease fungus, sp. (87.3%, 82.2%, 80.0% and 80.5%) in vitro. Greenhouse experiments revealed that rice plants treated with strain PC 12 recorded maximum plant height, root length and root dry weight compared to the control. Taxonomic characterization of this strain on the basis of 16S rRNA gene sequence led to its identification as PC 12. PC 12 may be used as biofertilizer to enhance the growth and productivity of commercially important rice cultivar RD6 and the biocontrol of blast disease fungus.
机译:根际细菌可以通过直接和间接机制积极影响植物的生长。从水稻的根际分离出总共112个细菌菌株,并测试了其对植物有益的活性,例如铁载体的产生,细胞壁降解酶的产生,氰化氢(HCN)的产生以及对稻瘟病真菌的抗真菌活性。放线菌计数为3.8×10 CFU / g土壤。菌株PC 12,D 4.1,D 4.3和W1对胚芽病真菌sp。表现出强烈的生长抑制作用。 (87.3%,82.2%,80.0%和80.5%)在体外。温室实验表明,与对照相比,用PC 12菌株处理的水稻植株记录了最大株高,根长和根干重。基于16S rRNA基因序列对该菌株的分类学表征导致其鉴定为PC12。PC12可用作生物肥料,以增强商业上重要的水稻品种RD6的生长和生产力以及对稻瘟病真菌的生物防治。

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