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Influence of soil type and indigenous pathogenic fungi on bean hypocotyl rot caused by Rhizoctonia solani AG4 HGI in Cuba

机译:土壤类型和原生病原真菌对古巴茄根枯菌AG4 HGI引起的豆下胚轴腐烂的影响

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Calcisol, ferralsol and vertisol soils, representative of different bean production areas of Villa Clara province in Cuba, were selected to determine the impact of soil type on bean hypocotyl rot severity caused by Rhizoctonia solani AG4 HGI (isolate CuVC-Rs7). In inoculated autoclaved soil, hypocotyl rot was most severe in calcisol soil, followed by ferralsol soils and then vertisol soils. In inoculated natural soils, disease severity was lower in vertisol and calcisol soils and higher in ferralsol soil, indicating that biological factors are suppressing or stimulating the pathogenic efficiency of R. solani. Native binucleate Rhizoctonia AGF, Sclerotium rolfsii and R. solani AG 4 HGI were isolated from bean plants grown in natural calcisol, vertisol and ferralsol soils, respectively. Subsequent studies about the interaction between these fungi and R. solani indicated that they were involved in the variability of disease severity caused by R. solani. The addition of R. solani AG4 HGI (isolate CuVC-Rs7) into each autoclaved soil inoculated with binucleate Rhizoctonia or S. rolfsii resulted in a reduction of disease severity caused by this pathogen while in soils inoculated with native R. solani AG4 HGI, disease severity increased. Irrespective of fungal interactions, calcisol was always the most disease conducive soil and vertisol the most disease repressive soil. The mechanisms by which native pathogenic fungi could influence disease severity caused by R. solani are discussed.
机译:选择了代表古巴维拉克拉拉省不同豆类产区的钙,溶胶,铁,硅铁土,以确定土壤类型对由茄状根瘤菌AG4 HGI(分离CuVC-Rs7)引起的豆下胚轴腐烂程度的影响。在接种高压灭菌的土壤中,下胚轴腐烂在钙化土壤中最为严重,其次是铁铝土,然后是Vertisol土壤。在接种的天然土壤中,Vertisol和Calcisol土壤的病害严重程度较低,而Ferralsol土壤的病害严重程度较高,表明生物学因素正在抑制或刺激sol。R. solani的致病效率。从分别在天然石灰石土壤,Vertisol土壤和ferralsol土壤中生长的豆类植物中分离出天然的双核根瘤菌AGF,Sclerotium rolfsii和R. solani AG 4 HGI。随后关于这些真菌和茄红细菌相互作用的研究表明,它们参与了茄红细菌引起的疾病严重程度的变异。在接种双核根瘤菌或罗氏链球菌的高压灭菌土壤中添加solani R. solani AG4 HGI(分离的CuVC-Rs7)可降低由该病原体引起的疾病严重性,而在天然r。solani AG4 HGI接种的土壤中严重程度增加。不论真菌相互作用如何,钙化溶胶始终是最有利于疾病的土壤,而Vertisol始终是最容易抑制疾病的土壤。讨论了天然致病性真菌可能影响由茄枯萎菌引起的疾病严重程度的机制。

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