菊苣根瘤细菌分离物对褐斑病真菌 Cochliobolus miyabeanus 的抗真菌潜力

Shweta Sonam, Alok Kumar Srivastava, Rajesh Sharma
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摘要

宫斑褐斑病(Cochliobolus miyabeanus)是一种重要的植物病原菌,它在水稻中引起一种非常普遍和广泛的褐斑病,可能导致作物严重减产。目前的研究旨在探究从胡萝卜根瘤区分离的细菌对褐斑病真菌 C. miyabeanus 的抗真菌潜力。根瘤区细菌分离是在 2023 年 1 月从 Jaunpur 地区的胡萝卜种植田中进行的。实验工作于 2023 年 1 月至 11 月在 Jaunpur 的 Veer Bahadur Singh Purvanchal 大学生物技术系进行。对所有细菌分离物进行了抗褐斑真菌活性测试。通过筛选分离物对褐斑病真菌的抗真菌活性,进一步研究其促进植物生长、生物化学和形态学属性。分离物 CVO-7 和 NBRI-O-2 对测试生物体表现出高效的抗真菌活性,同时还表现出一些促进植物生长的特性,这些特性可通过提高植物必需元素和微量元素的可用性来进一步降低 C. miyabeanus 的毒性。通过 16S rRNA 基因测序对这两种分离物进行了分子鉴定,并将 16S rDNA 片段的序列提交给 NCBI GenBank 数据库,加入号分别为 OR775577(枯草芽孢杆菌 ss5cvo7)和 OR775572(蛋白溶解芽孢杆菌 ss2nbrio2)。
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Antifungal potential of rhizospheric bacterial isolates of Daucus carota against brown spot fungus Cochliobolus miyabeanus 
Cochliobolus miyabeanus is an important plant pathogen which causes a very common and widespread brown spot disease in rice, that may result in a severe reduction in the crop yield. The current studies were carried out to search out the antifungal potential of the bacterial isolates from the rhizospheric region of Daucus carota against brown spot fungus, C. miyabeanus. Isolation of rhizospheric bacterial isolates was done from carrot grown field of district Jaunpur in month of January, 2023. Experiment work has been done in Department of Biotechnology, Veer Bahadur Singh Purvanchal University, Jaunpur in 2023 from the month January to November. All bacterial isolates were tested for antifungal activity against brown spot fungi. Isolates were screened for their antifungal activities against brown spot fungus for further studying plant growth promoting, biochemical and morphological attributes. Isolates, CVO-7 and NBRI-O-2 showed efficient antifungal activity against test organism and also showed some plant growth promoting attributes that can further reduce the virulence of C. miyabeanus by enhancing availability of essential and trace elements for the plant. Both the isolates were characterized at a molecular level by using 16S rRNA gene sequencing and sequences of 16S rDNA segment were submitted to the NCBI GenBank database with the accession numbers OR775577 (Bacillus subtilis ss5cvo7) and OR775572 (Bacillus proteolyticus ss2nbrio2).
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