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Population Dynamics and Survival of Rhizoctonia solani AG-1 in Field Soil Under Rice-Wheat Rotation
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作者 LIShi-dong 《Agricultural Sciences in China》 CAS CSCD 2004年第6期448-455,共8页
A field under rice-wheat rotation was selected near Chengdu, China, to study thepopulation of Rhizoctonia solani anastomosis group 1 (AG-1), pathogen causing ricesheath blight disease, in natural soil ecosystem. Inocu... A field under rice-wheat rotation was selected near Chengdu, China, to study thepopulation of Rhizoctonia solani anastomosis group 1 (AG-1), pathogen causing ricesheath blight disease, in natural soil ecosystem. Inocula of the fungus recovered fromthe field were divided into three types, i.e., sclerotia, free mycelium retained in thesoil passed through a 0.355mm sieve, and colonized plant debris which was subdividedinto small colonized debris retained between 2.00 and 0.355mm sieves and large colonizeddebris retained on 2.00mm sieve after wet screening. Quantitative estimation of thethree types of inocula in one year indicated that small colonized debris was the dominantinoculum type for most of the time. The population peaked in March and September at 1210and 480 colonized debris 100g-1 air-dry soil respectively, and fell down in December andAugust to 0 and 177 colonized debris 100g-1 air-dry soil respectively. Free mycelium wasonly detectable in March, September and October with 1209, 7.9 and 14.5g fresh wtmyceliumg-1 air-dry soil respectively, which corresponded to the two peaks and the secondhighest level of small debris density in the year. Viable sclerotia and large colonizeddebris were rare with populations ranging from 0 to 3 for sclerotia and 0 to 14 for largecolonized debris 100g-1 air-dry soil, but were the main structures to survive overwinter. It was expected that soil temperature was the main factor determining populationdynamics of R.solani AG-1 in natural soil. Optimum temperature for population increasingis predicted to be around 15℃, with a range from 10 to 25℃. Viability tests indicatedthat 60.9% sclerotia could survive after 265d being buried in natural sandy loam in fieldconditions in Beijing, while colonized rice straw debris (0.5-1.0cm long) could notyield the fungus on medium plates after 88d of being buried under the same conditions. 展开更多
关键词 rhizoctonia solani ag-1 SCLEROTIA Free mycelium Colonized debris Quantitative assay SURVIVAL
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Three Genes Related to Trehalose Metabolism Affect Sclerotial Development of Rhizoctonia solani AG-1 IA,Causal Agent of Rice Sheath Blight
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作者 WANG Chenjiaozi ZHAO Mei +1 位作者 SHU Canwei ZHOU Erxun 《Rice science》 SCIE CSCD 2022年第3期268-276,共9页
Trehalose metabolism is related to the sclerotial development of Rhizoctonia solani AG-1 IA,the causal agent of rice sheath blight(RSB).Here,we further elucidated the functions of three genes Rstre,Rstps1 and Rstpp th... Trehalose metabolism is related to the sclerotial development of Rhizoctonia solani AG-1 IA,the causal agent of rice sheath blight(RSB).Here,we further elucidated the functions of three genes Rstre,Rstps1 and Rstpp that encode three key enzymes trehalase(TRE),alpha,alpha-trehalosephosphate synthase(TPS1)and trehalose 6-phosphate phosphatase(TPP)in the sclerotial development of R.solani AG-1 IA.Due to the lack of a stable genetic transformation system for R.solani,the heterologous expression of these three genes in Pichia pastoris GS115 was performed.The results showed that reactive oxygen species(ROS)contents and enzyme activities in R.solani decreased significantly in the treatments of the fermentation broths of Rstps1 and Rstpp transformants,and that in the treatment of the fermentation broth of Rstre transformant visibly increased.Furthermore,the fermentation broths of the transformants of all the three genes were added to potato dextrose agar(PDA)medium for the cultivation of R.solani,as a result,the dry weight of sclerotia in each PDA plate containing the fermentation broths of Rstps1 and Rstpp transformants significantly increased compared with the control,and that of Rstre transformant obviously decreased.Finally,178 proteins were found to interact with RSTPS1,and 16 of them were associated with ROS.Taken together,the findings suggest that all these three genes related to trehalose metabolism play important roles in the sclerotial development of R.solani AG-1 IA,and can be used as new targets for the development of novel high-efficiency fungicides for the controlling of RSB. 展开更多
关键词 rhizoctonia solani ag-1 IA rice sheath blight reactive oxygen species trehalose metabolism gene functional analysis sclerotial development
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海南南繁区水稻纹枯病菌的遗传多样性与致病力分化 被引量:4
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作者 朱名海 彭丹丹 +1 位作者 舒灿伟 周而勋 《中国水稻科学》 CAS CSCD 北大核心 2019年第2期176-185,共10页
【目的】为明确南繁区水稻纹枯病菌(RhizoctoniasolaniAG-1IA)的遗传分化及遗传多样性与致病力的关系,【方法】采用AFLP分子标记技术和离体叶片接种法对南繁核心区(三亚、乐东、陵水)和非核心区(琼中、屯昌和定安)共60株水稻纹枯病菌的... 【目的】为明确南繁区水稻纹枯病菌(RhizoctoniasolaniAG-1IA)的遗传分化及遗传多样性与致病力的关系,【方法】采用AFLP分子标记技术和离体叶片接种法对南繁核心区(三亚、乐东、陵水)和非核心区(琼中、屯昌和定安)共60株水稻纹枯病菌的遗传多样性、遗传结构和致病力分化进行了测定,并分析了遗传多样性与致病力之间的关系。【结果】聚类分析结果表明,核心区菌株的遗传多样性相对更高;群体遗传结构分析表明,核心区群体的多态性位点百分率(PPL)、Nei基因多样性指数(H)、Shannon信息指数(I)和基因流(N_m)分别为82.24%、0.1932、0.3062和2.5627,高于非核心区群体的67.49%、0.1535、0.2447和0.9365;而核心区群体的基因分化系数(G_(st))为0.1633,低于非核心区群体的0.3481。【结论】核心区菌株的遗传变异程度比非核心区菌株高;核心区不同群体间存在较多的基因交流,而非核心区菌体间的基因交流较少,但遗传变异均主要来自于群体内;总体而言,核心区菌株的遗传分化程度更高。菌株的致病力及其与菌株遗传多样性的相关性分析表明,核心区菌株以中等致病型为主,而非核心区菌株则以中、强致病型为主,但与菌株的AFLP谱系之间的相关均未达显著水平。 展开更多
关键词 南繁区 水稻纹枯病菌 遗传多样性 遗传结构 致病力分化 AFLP
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