首页> 美国卫生研究院文献>Brazilian Journal of Microbiology >Antibiosis of Trichoderma spp strains native tonortheastern Mexico against the pathogenic fungus Macrophominaphaseolina
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Antibiosis of Trichoderma spp strains native tonortheastern Mexico against the pathogenic fungus Macrophominaphaseolina

机译:天然木霉菌株的抑菌作用。墨西哥东北部对抗致病性真菌巨光蛋白菜豆

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摘要

Sampling of agricultural soils from the Mexican northeastern region was performed to detect Trichoderma spp., genetically characterize it, and assess its potential use as a biologic control agent against Macrophomina phaseolina. M. phaseolina is a phytopathogen that attacks over 500 species of cultivated plants and causes heavy losses in the regional sorghum crop. Sampling was performed immediately after sorghum or corn harvest in an area that was approximately 170 km from the Mexico-USA border. Sixteen isolates were obtained in total. Using colony morphology and sequencing the internal transcribed spacers (ITS) 1 and 4 of 18S rDNA, 14 strains were identified as Trichoderma harzianum, T. koningiopsis and T. virens. Subsequently, their antagonistic activity against M. phaseolina was evaluated in vitro, and 11 isolates showed antagonism by competition and stopped M. phaseolina growth. In 4 of these isolates, the antibiosis phenomenon was observed through the formation of an intermediate band without growth between colonies. One strain, HTE808, was identified as Trichoderma koningiopsis and grew rapidly; when it came into contact with the M. phaseolina colony, it continued togrow and sporulated until it covered the entire petri dish. Microscopic examinationconfirmed that it has a high level of hyperparasitism and is thus considered to havehigh potential for use in the control of this phytopathogen.
机译:进行了来自墨西哥东北部地区的农业土壤的采样,以检测木霉属,对其进行遗传鉴定,并评估其作为抗菜豆巨噬菌的生物防治剂的潜在用途。菜豆分枝杆菌是一种植物病原体,会侵袭500多种栽培植物,并造成该地区高粱作物的严重损失。高粱或玉米收获后立即在距墨西哥-美国边界约170公里的区域进行采样。总共获得了十六株。使用菌落形态学和对18S rDNA的内部转录间隔区(ITS)1和4进行测序,鉴定出14个菌株为哈茨木霉,康氏木霉和毒豆木。随后,在体外评估了它们对菜豆分枝杆菌的拮抗活性,并且11种分离物通过竞争表现出拮抗作用并停止了菜豆分枝杆菌的生长。在这些分离物中的4个中,通过形成中间带而不在菌落之间生长而观察到抗微生物现象。一种菌株,HTE808,被鉴定为康氏木霉并迅速生长。当它与菜豆分枝杆菌菌落接触时,它继续生长并形成孢子,直至覆盖整个培养皿。显微镜检查证实其患有高寄生虫病,因此被认为具有具有控制这种植物病原体的巨大潜力。

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