Development of Mutants of Coniothyrium Minitans with Improved Efficiency for Control of Sclerotinia Sclerotiorum
I. S. de Melo, Alex Moretini, Ana Maria Rodrigues Cassiolato, J. L. Faull
Abstract
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I. S. de Melo, Alex Moretini, Ana Maria Rodrigues Cassiolato, J. L. Faull
Abstract
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Development of Mutants ofConiothyrium Minitanswith Improved Efficiency for Control ofSclerotinia Sclerotiorum Coniothyrium minitans(CM) is hyperparasitic toSclerotinia sclerotiorum(SS), a pathogen of many economically important crops. In this paper, we describe the isolation of improved mutants of CM, using a UV - irradiation regime, with altered chitinase production and tolerance to high concentration of iprodione, which are effective against SS. Three out of the 59 mutants obtained inhibited the mycelial growth of CM. Infectivity of sclerotia by the new mutants was assayed by the plant-tissue-based system using carrot segments. More than 80% of sclerotia were colonized by the mutants and the wild-type CM. The mutant strains retained ability to produce significant amounts of chitinase. The mutants differed from their wild-type strain in appearance, morphology and sporulation. In conclusion, the results presented here provide evidence that the new biotypes ofC. minitansare effective in controllingS. sclerotiorum.
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Development of Mutants ofConiothyrium Minitanswith Improved Efficiency for Control ofSclerotinia Sclerotiorum Coniothyrium minitans(CM) is hyperparasitic toSclerotinia sclerotiorum(SS), a pathogen of many economically important crops. In this paper, we describe the isolation of improved mutants of CM, using a UV - irradiation regime, with altered chitinase production and tolerance to high concentration of iprodione, which are effective against SS. Three out of the 59 mutants obtained inhibited the mycelial growth of CM. Infectivity of sclerotia by the new mutants was assayed by the plant-tissue-based system using carrot segments. More than 80% of sclerotia were colonized by the mutants and the wild-type CM. The mutant strains retained ability to produce significant amounts of chitinase. The mutants differed from their wild-type strain in appearance, morphology and sporulation. In conclusion, the results presented here provide evidence that the new biotypes ofC. minitansare effective in controllingS. sclerotiorum.
Key concepts: Sclerotinia sclerotiorum, Biology, Mutant, Mycelium, Chitinase, Biological pest control, Sclerotinia, Spore