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Growth inhibition of a phytopathogenic fungus, Colletotrichum species by acetic acid

机译:乙酸抑制植物病原真菌炭疽菌的生长

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Acetic, oxalic, malic, and citric acids significantly inhibited the growth of Colletotrichum, gloeosporioides, a phytopathogenic fungus, and acetic acid showed the strongest inhibition with no growth at 50 mM. The growth inhibition by these organic acids was closely related with the inhibition of respiration, as tested using three species, C. gloeosporioides, C. coccodes, and C. dematium. Optimum growth of C. gloeosporioides was observed around pH 6.0. The inhibition of growth by acetic acid accelerated along with a decrease in pH from 6.0 to 4.0, suggesting that the inhibition might be more enhanced by undissociated form of acetic acid. Despite of growth inhibition by acetic acid, the fungus was able to grow in a normal medium when acetic acid was eliminated, implying that the growth inhibition may be resulted from an acetic acid-mediated inhibition of respiration than a structural damage of cell. Catalase activity of the fungus increased in response to 0.1% hydrogen peroxide, but addition of this together with 30 mM acetic acid brought about a decrease in the activity. The fungus which showed no grow at 30 mM acetic acid or 0.5% hydrogen peroxide began to grow after the elimination of these. But the fungus added simultaneously by these two compounds did not grow at all despite the elimination of these. Thus, controlling of Colletotrichum might be developed using acetic acid which is generally less dangerous than chemical reagents.
机译:乙酸,草酸,苹果酸和柠檬酸显着抑制炭疽菌,globosporioides,一种植物致病性真菌的生长,而乙酸显示出最强的抑制作用,在50 mM时无生长。这些有机酸的生长抑制作用与呼吸抑制作用密切相关,如使用三种物种,C。gloeosporioides,C。coccodes和C. dematium所测试的。在pH 6.0左右观察到最佳的C. gloeosporioides生长。乙酸的生长抑制作用随着pH值从6.0降低到4.0的增加而加速,这表明未解离形式的乙酸可能会进一步增强抑制作用。尽管受到乙酸的抑制,但真菌在消除乙酸后仍能在正常培养基中生长,这表明生长抑制可能是由于乙酸介导的呼吸抑制而不是细胞的结构破坏所致。响应于0.1%的过氧化氢,真菌的过氧化氢酶活性增加,但是将其与30 mM乙酸一起添加会使活性降低。消除这些真菌后,在30 mM的乙酸或0.5%的过氧化氢下无生长的真菌开始生长。但是,尽管消除了这两种化合物,但由这两种化合物同时添加的真菌却根本没有生长。因此,可以使用通常比化学试剂危险小的乙酸来开发防治炭疽病的方法。

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