Fusarium wilt, caused by Fusarium oxyporum f. sp. cubense(Foc), is the most serious disease affecting banana production.To clarify the distribution of the Foc races in Fujian Province of China, 79 soil samples were co...Fusarium wilt, caused by Fusarium oxyporum f. sp. cubense(Foc), is the most serious disease affecting banana production.To clarify the distribution of the Foc races in Fujian Province of China, 79 soil samples were collected from four regions of Zhangzhou City, the primary banana production area in Fujian. We isolated and identified 12 Foc strains based on internal transcribed spacer(ITS) sequence analysis, PCR amplification by using Foc-specific primers and pathogenicity assays.Our analysis indicated that 11 isolates belong to Foc race 1, and 1 isolate belongs to the Foc tropical species race 4(TR4).Although TR4 has previously been reported to occur in primary banana-producing provinces, such as Hainan, Guangxi,and Guangdong of China, this is the first report of TR4 isolated from the soil in Fujian Province. Monitoring the presence of Foc, in particular, the TR4 strains in the soil, is the basic strategy to prevent and control Fusarium wilt.展开更多
SNARE(Soluble N-ethylmaleimide-sensitive factor attachment protein receptor)蛋白保守存在于丝状真菌中,在膜泡转运的过程中起着关键的作用。番茄枯萎病是由尖孢镰刀菌番茄专化型(Fusarium oxysporum f. sp. lycopersici,Fol)引起...SNARE(Soluble N-ethylmaleimide-sensitive factor attachment protein receptor)蛋白保守存在于丝状真菌中,在膜泡转运的过程中起着关键的作用。番茄枯萎病是由尖孢镰刀菌番茄专化型(Fusarium oxysporum f. sp. lycopersici,Fol)引起的,严重威胁着番茄的生产。我们使用反向遗传学的方法来研究番茄枯萎病菌中SNARE蛋白FolSso1的功能,实验结果发现FolSSO1的基因缺失突变体菌丝生长速率降低,且产孢数量减少。另外,FolSSO1基因的缺失导致突变体相较于野生型菌株对细胞壁压力与细胞膜压力更加敏感。然后,在番茄果实和番茄植株的致病性实验中,我们发现FolSSO1的缺失并没有引起Fol致病性显著的变化。综上所述,本研究发现FolSSO1可以调控Fol营养生长,繁殖和对环境压力的响应过程,然而对Fol的致病过程并没有显著的调控作用。展开更多
基金supported by the National Natural Science Foundation of China (31601583)the Natural Science Foundation of Fujian Province, China (2016J01113)+1 种基金the Young Teacher Education Research Project of Fujian Province, China (JAT160178)the Fujian Agriculture and Forestry University Outstanding Youth Scientific Research Project, China (xjq201625)
文摘Fusarium wilt, caused by Fusarium oxyporum f. sp. cubense(Foc), is the most serious disease affecting banana production.To clarify the distribution of the Foc races in Fujian Province of China, 79 soil samples were collected from four regions of Zhangzhou City, the primary banana production area in Fujian. We isolated and identified 12 Foc strains based on internal transcribed spacer(ITS) sequence analysis, PCR amplification by using Foc-specific primers and pathogenicity assays.Our analysis indicated that 11 isolates belong to Foc race 1, and 1 isolate belongs to the Foc tropical species race 4(TR4).Although TR4 has previously been reported to occur in primary banana-producing provinces, such as Hainan, Guangxi,and Guangdong of China, this is the first report of TR4 isolated from the soil in Fujian Province. Monitoring the presence of Foc, in particular, the TR4 strains in the soil, is the basic strategy to prevent and control Fusarium wilt.
文摘SNARE(Soluble N-ethylmaleimide-sensitive factor attachment protein receptor)蛋白保守存在于丝状真菌中,在膜泡转运的过程中起着关键的作用。番茄枯萎病是由尖孢镰刀菌番茄专化型(Fusarium oxysporum f. sp. lycopersici,Fol)引起的,严重威胁着番茄的生产。我们使用反向遗传学的方法来研究番茄枯萎病菌中SNARE蛋白FolSso1的功能,实验结果发现FolSSO1的基因缺失突变体菌丝生长速率降低,且产孢数量减少。另外,FolSSO1基因的缺失导致突变体相较于野生型菌株对细胞壁压力与细胞膜压力更加敏感。然后,在番茄果实和番茄植株的致病性实验中,我们发现FolSSO1的缺失并没有引起Fol致病性显著的变化。综上所述,本研究发现FolSSO1可以调控Fol营养生长,繁殖和对环境压力的响应过程,然而对Fol的致病过程并没有显著的调控作用。