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首页> 外文期刊>Plant physiology >Differential effect of purified spruce chitinases and beta-1,3-glucanases on the activity of elicitors from ectomycorrhizal fungi.
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Differential effect of purified spruce chitinases and beta-1,3-glucanases on the activity of elicitors from ectomycorrhizal fungi.

机译:纯化的云杉几丁质酶和β-1,3-葡聚糖酶对外生菌根真菌激发子活性的差异作用。

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摘要

Two chitinases (EC 3.2.1.14) and two beta-1,3-glucanases (EC 3.2.1.39) were purified from the culture medium of spruce (Picea abies) cells to study their role in modifying elicitors, cell walls, growth, and hyphal morphology of ectomycorrhizal fungi. The 36-kDa class I chitinase (isoelectric point (pI) 8.0) and the 28-kDa chitinase (pI 8.7) decreased the activity of elicitor preparations from Hebeloma crustuliniforme, Amanita muscaria and Suillus variegatus, as demonstrated by using the elicitor-induced extracellular alkalinization in spruce cells as a test system. In addition, chitinases released monomeric products from the walls of these ectomycorrhizal fungi. The beta-1,3-glucanases (35 kDa, pI 3.7 and 3.9), in contrast, had little influence onthe activity of the fungal elicitors and released only from walls of A. muscaria some polymeric products. Furthermore, chitinases alone and in combination with beta-1,3-glucanases had no effect on the growth and morphology of the hyphae. Thus, it is suggested that apoplastic chitinases in the root cortex destroy elicitors from the ectomycorrhizal fungi without damaging the fungus. By this mechanism the host plant could attenuate the elicitor signal and adjust its own defense reactions to a level allowing symbiotic interaction.
机译:从云杉(Picea abies)细胞的培养基中纯化了两个几丁质酶(EC 3.2.1.14)和两个β-1,3-葡聚糖酶(EC 3.2.1.39),以研究它们在修饰诱导子,细胞壁,生长和生长中的作用。菌根真菌的菌丝形态。 36 kDa I类几丁质酶(等电点(pI)8.0)和28 kDa几丁质酶(pI 8.7)降低了铁锈病原虫,鹅膏菌和鹅膏菌的激发子制剂的活性,这是通过使用激发子诱导的细胞外作用证明的云杉细胞中的碱化作为测试系统。此外,几丁质酶从这些外生菌根真菌的壁释放出单体产物。相反,β-1,3-葡聚糖酶(35 kDa,pI 3.7和3.9)对真菌激发子的活性影响很小,仅从粘菌曲霉的壁中释放出一些聚合产物。此外,单独的几丁质酶以及与β-1,3-葡聚糖酶的组合对菌丝的生长和形态没有影响。因此,提示在根皮层中的质外表皮几丁质酶破坏了外生菌根真菌的激发子而不损害真菌。通过这种机制,寄主植物可以减弱激发子信号并将其自身的防御反应调节到允许共生相互作用的水平。

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