Compatibility of indigenous Trichoderma asperellum with chemical fungicides for the management of chickpea wilt

Q4 Agricultural and Biological Sciences
G. Sunkad, Ranjana Joshi, Meghana S. Patil
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Abstract

Trichoderma asperellum is an antagonistic fungus, which has the ability to inhibit the growth of pathogens in target environment. The study on compatibility of T. asperellum with fungicide molecules was carried out to know its compatibility with different classes of fungicide molecules during the studies on antagonistic potential of Trichoderma sp. against Fusarium oxysporum f. sp. ciceris causing chickpea wilt. In the present study, each of six popular systemic, non-systemic and combi-fungicide molecules were used to study the compatibility with bioagent Trichoderma asperellum. The fungicides were used at three different concentrations, i.e., systemic fungicides at 0.05, 0.1 and 0.15 per cent and non-systemic and combi fungicides at 0.1, 0.2 and 0.3 per cent concentrations by using poisoned food technique. Among six systemic fungicides, only azoxystrobin was highly compatible, whereas other systemic fungicides were incompatible showing 100 per cent inhibition of T. asperellum. Among six non-systemic fungicides, propineb, copper oxychloride and copper hydroxide were compatible at all three concentrations tested. However, mancozeb was compatible at lower concentrations but incompatible at higher (0.3%) concentrations. Further, thiram and captan were highly incompatible. Among six combi fungicides, copper oxychloride + copper hydroxide and cymoxanil + mancozeb were compatible with T. asperellum.
土生曲霉与化学杀菌剂在鹰嘴豆枯萎病防治中的相容性研究
曲霉木霉是一种拮抗真菌,在目标环境中具有抑制病原菌生长的能力。在研究木霉对鹰嘴豆枯萎病病原菌尖孢镰刀菌拮抗潜力的过程中,进行了曲霉与杀菌剂分子的配伍性研究,以了解其与不同种类杀菌剂分子的配伍性。本研究采用六种常用的全身性、非全身性和联用杀菌剂分子,分别对其与曲霉霉的相容性进行了研究。使用了三种不同浓度的杀菌剂,即0.05%、0.1%和0.15%的系统杀菌剂,以及0.1%、0.2%和0.3%的非系统杀菌剂和组合杀菌剂。在6种系统杀菌剂中,只有偶氮嘧菌酯具有高度的亲和性,而其他系统杀菌剂具有亲和性,对曲霉的抑制率为100%。在6种非系统性杀菌剂中,丙泊尼、氯化氧化铜和氢氧化铜在3种浓度下均具有相容性。然而,代森锰锌在低浓度下是相容的,但在高浓度(0.3%)下是不相容的。此外,thiram和captan非常不相容。在6种组合杀菌剂中,氯化氧铜+氢氧化铜和cymoxanil +代森锰锌与曲霉的配伍效果最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Biological Control
Journal of Biological Control Agricultural and Biological Sciences-Insect Science
CiteScore
0.50
自引率
0.00%
发文量
10
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