In Vitro Antagonistic Potential of Trichoderma harzianum for Biological Control of Fusarium moniliforme Isolated from Dioscorea rotundata Tubers. Virol-mycol 6:166

Gwa Vi, N. Ao
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引用次数: 13

Abstract

Studies were conducted in vitro to determine the antagonistic potential of Trichoderma harzianum for biological control of Fusarium moniliforme isolated from rotted Dioscorea rotundata tubers. The experiments were performed at Advanced Plant Pathology Laboratory, Federal University of Agriculture, Makurdi, Nigeria. Fungi organisms isolated and identified from the rotted white yam tubers were Botryodiploidia theobromae, Aspergillus flavus, Aspergillus niger, Aspergillus ochraceus, Fusarium moniliforme, Fusarium oxysporum, Penicillium purpurogenum and Pestalotia sp. Pathogenicity tests done confirmed F. moniliforme as one of the organisms responsible for the rot in yam tubers in this location. The antagonist was introduced same time with the pathogen, two days before the inoculation of the pathogen and two days after the inoculation of the pathogen. Plates were incubated for 192 hours and measurements of mycelial radial growths were done at intervals of 24 hours beginning from the third day of inoculation. The results of in vitro dual culture interactions between T. harzianum and F. moniliforme showed that T. harzianum has potentials to significantly (P ≤ 0.05) inhibit the growth of F. moniliforme irrespective of the time of introduction of antagonist and duration of incubation. Mean Percentage growth inhibition was highest (58.70%) when the antagonist was introduced 2 days before inoculation of the pathogen, followed by (52.54%) introduction of the antagonist same time with the pathogen while the least percentage growth inhibition (34.33%) was recorded when T. harzianum was introduced 2 days after inoculation of F. moniliforme. Minimum inhibition concentration showed moderately effective to effective control depending on the time of introduction of the antagonist. In conclusion, biological control agents should be used since they are biodegradable, eco-friendly, less expensive and target specific. The introduction is done before the arrival of pathogenic organisms in order to achieve highest level of effectiveness in controlling post-harvest rots causing organisms.
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哈茨木霉对圆形薯蓣分离的念珠镰刀菌的体外拮抗潜力。Virol-mycol 6:166
研究了哈茨木霉对从腐烂的盾叶薯蓣块茎中分离出的串珠镰刀菌的拮抗作用。实验在尼日利亚马库尔迪联邦农业大学高级植物病理学实验室进行。从腐烂的白薯块茎中分离鉴定出的真菌有:黑曲霉、黄曲霉、赭曲霉、串珠镰刀菌、尖孢镰刀菌(Fusarium oxysporum)、紫原青霉(Penicillium purpurogenum)和Pestalotia sp.。致病性试验证实,串珠镰刀杆菌是造成该地区马铃薯块茎腐烂的微生物之一。拮抗剂在接种病原体前两天和接种病原体后两天与病原体同时引入。培养板培养192小时,并从接种第三天开始每隔24小时测量菌丝径向生长。研究表明,无论拮抗剂的引入时间和孵育时间如何,哈茨霉和串珠镰刀菌的体外双培养相互作用结果均表明,哈茨霉具有显著抑制串珠镰刀豆生长的潜力(P≤0.05)。当在接种病原体前2天引入拮抗剂时,平均生长抑制百分比最高(58.70%),其次是与病原体同时引入拮抗剂(52.54%),而当在接种念珠藻后2天引入哈齐亚木时,记录的生长抑制百分比最低(34.33%)。根据拮抗剂的引入时间,最小抑制浓度显示出适度有效到有效的控制。总之,应该使用生物控制剂,因为它们是可生物降解的、环保的、便宜的和靶向性的。引入是在病原生物到来之前进行的,以便在控制收获后引起腐烂的生物方面达到最高水平的有效性。
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