蚕豆上的 Sclerotium rolfsii Sacc 的形态和文化特征以及使用复合杀菌剂分子对其进行管理

.. Divyashree, C. P. Manjula, Jayashree Anandakumar, G. Punith, K. Anusree, J. Harish, Lakshmeesha R
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引用次数: 0

摘要

领腐病是鹰嘴豆的主要病害,由病原体 Sclerotium rolfsii 引起。目前的研究调查了从卡纳塔克邦主要鹰嘴豆种植区收集的 10 个 S. rolfsii 分离物的形态和文化多样性,评估了它们的生长速度、菌落颜色和外观,并在两种不同的培养基上重新测量了硬菌的特征,包括颜色、排列和硬菌的成熟天数。分离物 BSR 2、BSR 5、BRS 9 和 BSR 10 在马铃薯葡萄糖琼脂(PDA)和玉米粉琼脂(CMA)上都表现出明显的快速生长。总的来说,这些分离物的生长似乎更密集,表明与 CMA 相比,PDA 上的菌丝形成更多。这些发现强调了分离物之间存在的变异性。使用新型复合杀菌剂对防治领腐病的杀菌剂进行了体外评估。在这些杀菌剂中,Carbendazim 12% + Mancozeb 63% (0.15%)、Hexaconazole 4% WP + Zineb 68%、Carboxin 37.5% + Thiram 37.5%、Tricyclazole 18 % + Mancozeb 62% WP、Captan 70% + Hexaconazole 5% WP(浓度为 0.05%)显示出百分之百的抑制效果。因此,这些复合杀菌剂已被证明能有效抑制病原体,是在作物生长初期成功实施病害管理策略的重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphological and Cultural Characterization of Sclerotium rolfsii Sacc on Chickpea and Its Management Using Combined Fungicide Molecules
Collar rot stands as a significant affliction of chickpea, attributed to the pathogen Sclerotium rolfsii. The current research investigated the morphological and cultural diversity among 10 isolates of S. rolfsii collected from major chickpea cultivation regions of Karnataka  by assessing their growth rate, colony color and appearance, and features of Sclerotium including color, arrangement, and maturity days of Sclerotia were recored on two different media. The isolates BSR 2, BSR 5, BRS 9 and BSR 10 exhibited notably rapid growth on both Potato Dextrose Agar (PDA) and Corn meal Agar (CMA). Overall, the growth of these isolates appeared denser, indicating more substantial mycelial formation on PDA compared to CMA. These findings underscore the existence of variability among the isolates. In vitro evaluation of fungicides for the management of collar rot was evaluated using new combi fungicides. Among those Carbendazim 12% + Mancozeb 63% (0.15%), Hexaconazole 4% WP + Zineb 68%, Carboxin 37.5% + Thiram 37.5 %, Tricyclazole18 % + Mancozeb 62% WP, Captan 70% + Hexaconazole 5% WP at 0.05 per cent concentration showed cent per cent inhibition. Hence, these combi fungicides have been proven effective in suppressing the pathogen, making them valuable tools for implementing successful disease management strategies during the initial stages of crop growth.
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