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Potential of Trichodermaharzianum for control of banana leaf fungal pathogens when applied with a food source and an organic adjuvant

机译:与食物来源和有机佐剂一起使用时木霉菌可用于控制香蕉叶真菌病原体

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摘要

Trichoderma isolates were obtained from diseased leaves and fruit collected from plantations in the main banana production area in Northern Queensland. Phylogenetic analyses identified the Trichoderma isolates as T. harzianum and T. virens. The Trichoderma spp. were found to be antagonistic against the banana leaf pathogens Mycosphaerella musicola, Cordana musae, and Deightoniella torulosa in vitro. Several products used by the banana industry to increase production, including molasses, Fishoil and Seasol, were tested as food source for the Trichoderma isolates. The optimal food substrate was found to be molasses at a concentration of 5 %, which when used in combination with a di-1-p-menthene spreader-sticker enhanced the survivability of Trichoderma populations under natural conditions. This formulation suppressed D. torulosa development under glasshouse conditions. Furthermore, high sensitivity was observed towards the protectant fungicide Mancozeb but Biopest oil®, a paraffinic oil, only marginally suppressed the growth of Trichoderma isolates in vitro. Thus, this protocol represents a potential to manage banana leaf pathogens as a part of an integrated disease approach.
机译:木霉菌的分离物是从昆士兰州北部主要香蕉产区的种植园的病叶和果实中获得的。系统发育分析确定木霉分离株为哈茨木霉和维尔纽斯木霉。木霉属。被发现对香蕉叶病原体具有拮抗作用,其对音乐菌株Mycosphaerella musicola,Cordana musae和Deightoniella torulosa具有体外拮抗作用。测试了香蕉业用于提高产量的几种产品,包括糖蜜,鱼油和海溶胶,它们被用作木霉菌分离物的食物来源。发现最佳食物底物是浓度为5%的糖蜜,当与di-1-p-薄荷烯撒布剂结合使用时,可以提高木霉菌种群在自然条件下的生存能力。该制剂在温室条件下抑制了D. torulosa的发育。此外,观察到对保护性杀菌剂Mancozeb的高敏感性,但石蜡油Biopest oil ®仅在一定程度上抑制了木霉菌株的体外生长。因此,该方案代表了作为综合疾病方法的一部分来管理香蕉叶病原体的潜力。

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