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Trichoderma spp. and Bacillus subtilis for control of Dactylonectria macrodidyma in grapevine

机译:Trichoderma spp。 和枯草芽孢杆菌,用于控制葡萄葡萄酒

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摘要

Black foot disease, which is primarily caused by Dactylonectria species, affects young and mature grapevines, causing loss of productivity and reduction of longevity of vineyards. Because it is a soil-borne fungus, this pathogen offers limited control possibilities. This study aimed to assess the biocontrol activity of products based on Trichoderma spp. and Bacillus subtilis, in vitro and in vivo, against D. macrodidyma. In vitro assays were carried out to evaluate inhibition of mycelial growth of the pathogen through volatile metabolites and paired cultures assays. An in vivo experiment evaluated the potential biocontrol of the pathogen in plants of Vitis vinifera cv. Merlot, grafted on 'Paulsen 1103'. In the volatile metabolites assay, mean inhibition of mycelial growth in treatments using Trichoderma spp. was 59%. In the paired cultures experiment, treatment with B. subtilis (Rizolyptus (R)) gave 41% inhibition of the pathogen. In the in vivo assay, the best results for length of the primary shoots, total numbers of nodes and root dry weight were achieved with the B. subtilis treatments. This study demonstrates that B. subtilis has potential for biocontrol of D. macrodidyma.
机译:黑脚疾病,主要由DactyloneCritia物种引起的,影响年轻和成熟的葡萄藤,导致生产力的丧失和葡萄园的寿命减少。因为它是一种土壤传播的真菌,但这种病原体提供有限的控制可能性。本研究旨在评估基于Trichoderma SPP的产品的生物控制活性。和枯草芽孢杆菌,体外和体内,对抗D. macrodidyma。进行体外测定以评估通过挥发性代谢物和配对培养物测定的病原体的菌丝生长的抑制作用。体内实验评估了血管血管植物中病原体的潜在生物管制。梅洛,嫁接了“Paulsen 1103”。在挥发性代谢物测定中,平均抑制使用Trichoderma SPP治疗的菌丝体生长。 59%。在配对的培养物实验中,用B.枯草芽孢杆菌(Rizolyptus(R))治疗给予病原体的41%抑制。在体内测定中,通过B.枯草芽孢杆菌治疗实现了初级芽长度,节点总数和根系干重的最佳结果。本研究表明,B.枯草芽孢杆菌具有D.Macrodidyma的生物控制潜力。

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