首页> 外文期刊>Agrivita: journal of agricultural science >Mycoparasitic Activity of Indigenous Trichoderma virens Strains Against Mungbean Soil Borne Pathogen Rhizoctonia solani: Hyperparasite and Hydrolytic Enzyme Production
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Mycoparasitic Activity of Indigenous Trichoderma virens Strains Against Mungbean Soil Borne Pathogen Rhizoctonia solani: Hyperparasite and Hydrolytic Enzyme Production

机译:土着Trichoderma virens毒素菌菌菌菌菌株的霉菌活性菌菌菌菌根菌菌:脱磷酸盐和水解酶生产

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Rhizoctonia solani is one of the harmful pathogens on mungbean, which is very challenging to be controlled. T. virens has been studied intensively and has great potency to control R. solani through mycoparasitism. Seven strains of T. virens isolated from various rhizospheres were tested for their mycoparasitic potential by observing their hyperparasitism and the production of hydrolytic enzymes. All strains showed the ability to suppress the growth of R. solani on dual culture assay as well as on culture filtrate test with the inhibition ability from 43.8 to 68.6% on the dual culture assay and from 22.2 to 71.1% on the culture filtrate assay. Inter-fungal interaction, which was observed by an electron microscope, showed hyperparasitic action of T. virens against R. solani involved the formation of the knob-like structure followed by the growth of Trichoderma hyphae inside host mycelia, coiling, lysed cell wall, and swollen of mycelial tips. Mycoparasitism of T. virens also correlated with the synthesis of hydrolytic enzymes, such as cellulase and chitinase, which influenced the overall hyperparasitic ability of T. virens against the pathogen. Based on in vitro assay, the Tv3 strain proposed as a promising strain to control R. solani due to its high growth inhibition and relatively high cellulase and chitinase productionse.
机译:Rhizoctonia solani是Mungbean的有害病原体之一,这是非常具有挑战性的。 T. Virens已经集中研究,并通过霉菌主义控制R.Solani的效力很大。通过观察其催眠术和水解酶的产生,测试了从各种根序体中分离的七种菌株的七株。所有菌株都表明,抑制R.Solani对双培养测定的生长以及培养滤液试验,抑制能力在双培养物测定上的43.8%至68.6%,培养滤液测定的22.2-71.1%。由电子显微镜观察的互静脉间相互作用,涉及R.Solani的T.Verens的肝激酶作用涉及形成旋钮状结构,然后在宿主菌丝体,卷曲,裂解的细胞壁内进行Trichoderma菌丝的生长,并肿胀的菌丝尖端。 T. Virens的MycoParasitibis也与水解酶的合成相关,例如纤维素酶和丁蛋白酶,这影响了T.Verens对病原体的总体肝炎能力。基于体外测定,由于其高生长抑制和相对高的纤维素酶和几丁质酶生产,TV3应变作为控制R.Solani的有望突变。

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