首页> 外文期刊>Acta Phytopathologica et Entomologica Hungarica >Biocontrol of Wheat Fusarium Crown and Root Rot by Trichoderma spp. and Evaluation of Their Cell Wall Degrading Enzymes Activities
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Biocontrol of Wheat Fusarium Crown and Root Rot by Trichoderma spp. and Evaluation of Their Cell Wall Degrading Enzymes Activities

机译:木霉属菌对小麦镰刀菌冠和根腐病的生物防治。细胞壁降解酶活性的研究与评价

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Fourteen strains of Trichoderma spp. were isolated from Algerian desert soils and assessed for their antagonistic activity against Fusarium crown and root rot of wheat. Biocontrol efficiency of Trichoderma spp. was studied by in vitro and in vivo based bioassay against three pathogenic species: F. culmorum, F. gramin-earum and F. verticillioides. In vitro based bioassay (dual culture) results obtained with all Trichoderma spp. isolates showed significant decrease in colony diameter of Fusarium species compared to the control. The highest percentages of reduction in colony diameter were obtained with T. harzianum Thr.4 causing a growth reduction of 70.68%, 67.05 and 70.57% against F. culmorum, F. graminearum and F. verticillioides, respectively. AllTrichoderma spp. isolates were able to overgrow and sporulate above F. culmorum colonies but no overgrowth was observed with F. graminearum and F. verticilliodes. The seed treatment by Trichoderma spp. isolates before sowing in a soil already infested bythe pathogens led to a significant decrease of disease severity compared to the untreated control. The highest disease index decrease (> 70%) was obtained with two isolates of T. harzianum (Thr.4 and Thr. 10) and T. viride Tv.6 against the three fungalpathogens. Lytic enzymes production by Trichoderma spp. isolates was tested in liquid cultures containing fungal cell walls of each pathogen as sole carbon source. Higher levels of protease and chitinase activities were induced by hyphal cell walls of F.graminearum than cell walls of F. verticillioides and F. culmorum. T. harzianum Thr.4 exhibited the highest enzyme activities with hyphal cell walls of F. graminearum and F. culmorum. However, in the medium amended with cell wall of F. verticillioides,maximal lytic activities were recorded for T. viride Tv.6.
机译:木霉属的十四个菌株。分离自阿尔及利亚的沙漠土壤,并评估了其对小麦镰刀菌冠和根腐病的拮抗活性。木霉属菌的生物防治效率。通过体外和体内生物测定法研究了三种致病菌:细角镰刀菌,gra-gramin-earum和细角镰刀菌。所有木霉属菌种均获得基于体外的生物测定(双重培养)结果。与对照相比,分离株显示镰刀菌种的菌落直径显着减小。用哈茨木霉Thr.4获得最高的菌落直径减少百分比,分别导致针对镰刀菌,禾谷镰刀菌和小球藻的生长减少分别为70.68%,67.05和70.57%。所有木霉属分离株能够在枯萎镰孢菌菌落上过度生长和形成孢子,但是禾本科镰刀菌和褐飞虱没有观察到过度繁殖。木霉属种子的种子处理。与未经处理的对照相比,在已经被病原体侵染的土壤中播种之前分离出的分离物导致疾病严重程度的显着降低。用两种分离的哈茨木霉(Thr.4和Thr.10)和T.viride Tv.6对三种真菌病原体的最高病害指数下降(> 70%)。木霉属菌产生的裂解酶。在含有每种病原体真菌细胞壁作为唯一碳源的液体培养物中测试分离株。细小镰刀菌的菌丝细胞壁比细小镰刀菌和小镰刀菌的细胞壁诱导更高水平的蛋白酶和几丁质酶活性。哈茨木霉Thr.4表现出最高的酶活性,即禾谷镰刀菌和细角镰刀菌的菌丝细胞壁。但是,在用网状拟南芥细胞壁修饰的培养基中,记录了维氏拟南芥Tv.6的最大裂解活性。

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