Sweigard J A, Chumley F G, Valent B
Central Research and Development, E.I. du Pont de Nemours and Co., Wilmington, DE 19880-0402.
Mol Gen Genet. 1992 Mar;232(2):183-90.
Using a one-step strategy to disrupt CUT1, a gene for cutinase, cut1- mutants were generated in two strains of Magnaporthe grisea. One strain, pathogenic on weeping lovegrass and barley and containing the arg3-12 mutation, was transformed with a disruption vector in which the Aspergillus nidulans ArgB+ gene was inserted into CUT1. Prototrophic transformants were screened by Southern hybridization, and 3 of 53 tested contained a disrupted CUT1 gene (cut1::ArgB+). A second strain, pathogenic on rice, was transformed with a disruption vector in which a gene for hyg B resistance was inserted into CUT1. Two of the 57 transformants screened by Southern hybridization contained a disrupted CUT1 gene (cut1::Hyg). CUT1 mRNA was not detectable in transformants that contained a disrupted gene. Transformants with a disrupted CUT1 gene failed to produce a cutin-inducible esterase that is normally detected by activity staining on non-denaturing polyacrylamide gels. Enzyme activity, measured either with tritiated cutin or with p-nitrophenyl butyrate as a substrate, was reduced but not eliminated in strains with a disrupted CUT1 gene. The infection efficiency of the cut1- disruption transformants was equal to that of the parent strains on all three host plants. Lesions produced by these mutants had an appearance and a sporulation rate similar to those produced by the parent strains. We conclude that the M. grisea CUT1 gene is not required for pathogenicity.
采用一步法策略破坏角质酶基因CUT1,在稻瘟病菌的两个菌株中产生了cut1突变体。一个菌株对披碱草和大麦致病,含有arg3 - 12突变,用一个破坏载体进行转化,该载体将构巢曲霉ArgB +基因插入CUT1中。通过Southern杂交筛选原养型转化体,在53个检测的转化体中有3个含有被破坏的CUT1基因(cut1::ArgB +)。第二个菌株对水稻致病,用一个破坏载体进行转化,该载体将潮霉素B抗性基因插入CUT1中。通过Southern杂交筛选的57个转化体中有2个含有被破坏的CUT1基因(cut1::Hyg)。在含有被破坏基因的转化体中未检测到CUT1 mRNA。含有被破坏CUT1基因的转化体无法产生角质诱导型酯酶,该酯酶通常可通过非变性聚丙烯酰胺凝胶上的活性染色检测到。用氚标记的角质或对硝基苯基丁酸作为底物测定酶活性,在含有被破坏CUT1基因的菌株中酶活性降低但未消除。cut1破坏转化体在所有三种寄主植物上的感染效率与亲本菌株相同。这些突变体产生的病斑外观和产孢率与亲本菌株产生的相似。我们得出结论,稻瘟病菌的CUT1基因对于致病性不是必需的。