Evaluation of antibiotics and bioagents for the management of black rot disease of cabbage and their effect on extracellular polysaccharide secretion

Pub Date : 2023-12-31 DOI:10.3329/bjb.v52i4.70578
P. Sangwan, Rakesh Sangwan, Vinod Malik, Manjeet Singh
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Abstract

Black rot disease caused by bacterium Xanthomonas campestris pv. campestris has been identified as major cause for low cabbage yields. The present study was conducted to evaluate the efficacy of various antibiotics and bioagents for controlling black rot disease and also their effect on extracellular polysaccharide secretion (EPS) of Xanthomonas campestris pv. campestris. Under in vitro conditions, bacterial proliferation and EPS production were examined on yeast peptone agar medium containing sucrose or trehalose with or without antibiotics. Number of Xanthomonas campestris pv. campestris on yeast peptone agar medium with Validamycin-A was less as compared to control. Extracellular polysaccharide secretion (EPS) was also inhibited on yeast peptone agar medium with antibiotic Validamycin-A. In vivo, disease intensity was recorded minimum in seed treatment + root dipping + foliar spray with Validamycin-A @ 500 µg/ml followed by seed treatment with Validamycin-A @ 500 µg/ml in comparison to control. Similarly, 45.61% higher cabbage yield was recorded in seed treatment + root dipping + foliar spray with Validamycin-A @ 500 as compared to untreated control. However, the antibiotic Validamycin-A which was found effective can be recommended to manage the disease. Bangladesh J. Bot. 52(4): 965-970, 2023 (December)
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评估抗生素和生物制剂对甘蓝黑腐病的防治作用及其对细胞外多糖分泌的影响
野油菜黄单胞菌(Xanthomonas campestris pv. campestris)引起的黑腐病已被确定为白菜产量低的主要原因。本研究旨在评估各种抗生素和生物制剂对控制黑腐病的功效,以及它们对野菜黄单胞菌胞外多糖分泌(EPS)的影响。在体外条件下,在含有或不含抗生素的蔗糖或曲海糖的酵母蛋白胨琼脂培养基上检测细菌增殖和 EPS 产量。在含 Validamycin-A 的酵母胨琼脂培养基上,野油菜黄单胞菌 pv. campestris 的数量比对照组少。在含有抗生素 Validamycin-A 的酵母蛋白胨琼脂培养基上,胞外多糖分泌(EPS)也受到抑制。在体内,与对照相比,种子处理 + 根部浸泡 + 叶面喷洒 Validamycin-A @ 500 µg/ml 的病害强度最小,其次是种子处理 + Validamycin-A @ 500 µg/ml 的病害强度。同样,与未处理的对照相比,用 Validamycin-A @ 500 进行种子处理 + 根部浸种 + 叶面喷洒的白菜产量提高了 45.61%。不过,可以推荐使用有效的抗生素 Validamycin-A 来控制该病害。孟加拉国植物学杂志52(4):965-970,2023 年(12 月)
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