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在选定的外生菌根真菌和两种木霉属真菌的相互作用过程中菌丝形态和酚氧化酶活性的变化。

Changes in hyphal morphology and activity of phenoloxidases during interactions between selected ectomycorrhizal fungi and two species of Trichoderma.

机构信息

Laboratory of Root System Pathology, Institute of Dendrology, Polish Academy of Science, Kórnik, Poland.

出版信息

Antonie Van Leeuwenhoek. 2011 Jun;100(1):155-60. doi: 10.1007/s10482-011-9556-3. Epub 2011 Feb 2.

Abstract

Patterns of phenoloxidase activity can be used to characterize fungi of different life styles, and changes in phenoloxidase synthesis were suspected to play a role in the interaction between ectomycorrhizal and two species of Trichoderma. Confrontation between the ectomycorrhizal fungi Amanita muscaria and Laccaria laccata with species of Trichoderma resulted in induction of laccase synthesis, and the laccase enzyme was bound to mycelia of ectomycorrhizal fungi. Tyrosinase release was noted only during interaction of L. laccata strains with Trichoderma harzianum and T. virens. Ectomycorrhizal fungi, especially strains of Suillus bovinus and S. luteus, inhibited growth of Trichoderma species and caused morphological changes in its colonies in the zone of interaction. In contrast, hyphal changes occurred less often in the ectomycorrhizal fungi tested. Species of Suillus are suggested to present a different mechanism in their interaction with other fungi than A. muscaria and L. laccata.

摘要

酚氧化酶活性模式可用于表征不同生活方式的真菌,而酚氧化酶合成的变化被怀疑在外生菌根真菌与两种木霉之间的相互作用中发挥作用。外生菌根真菌鹅膏菌和乳菇与木霉属的物种对峙会诱导漆酶的合成,并且漆酶酶与外生菌根真菌的菌丝结合。仅在乳菇菌株与哈茨木霉和绿色木霉相互作用时才观察到酪氨酸酶的释放。外生菌根真菌,特别是牛肝菌属和红菇属的菌株,抑制木霉属物种的生长,并在外生菌根真菌与木霉属物种相互作用的区域引起其菌落的形态变化。相比之下,在测试的外生菌根真菌中,菌丝的变化发生得较少。与鹅膏菌和乳菇不同,建议苏利菌属的物种在与其他真菌相互作用时具有不同的机制。

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