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Soluble and Cell Wall Peroxidases in Reed Canarygrass in Relation to Disease Resistance and Localized Lignin Formation

机译:芦苇中的可溶性和细胞壁过氧化物酶与抗病性和局部木质素形成的关系

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摘要

The relationship of peroxidases to an inducible disease-resistance mechanism involving lignification of leaf epidermal cell walls was studied. Reed canarygrass (Phalaris arundinacea L.) leaf discs were inoculated with Helminthosporium avenae Eidam and floated on water. In inoculated discs, the activity of soluble, ionic wall-bound and covalent wall-bound peroxidases was about twice the level of activity in noninoculated discs. The increase was attributable to increases in activity of three cathodic isoperoxidases and to the appearance of a new cathodic isoperoxidase. Peroxidase activity in cryostat microtome sections of inoculated discs was histochemically localized in the wall near the site of attempted penetration. When inoculated discs were floated on solutions of cycloheximide (25 μg/ml), increases in peroxidase activity were inhibited, and the fungus penetrated the tissue. The inhibition of peroxidase activity was related to inhibition of cathodic isoperoxidase activity. Anodic isoperoxidase activity did not show changes in response to inoculation or cycloheximide treatment.It was suggested that the resistance mechanism in P. arundinacea involves an induction of cathodic isoperoxidases in challenged tissue. These peroxidases may function in the biosynthesis of lignin at the site of attempted penetration.
机译:研究了过氧化物酶与涉及叶表皮细胞壁木质化的可诱导的抗病机制的关系。芦苇金丝雀(Phalaris arundinacea L.)叶圆片接种了Helminthosporium avenae Eidam并漂浮在水上。在接种盘中,可溶性,离子壁结合和共价壁结合的过氧化物酶的活性约为未接种盘中活性的两倍。增加归因于三种阴极异过氧化物酶活性的增加和新的阴极异过氧化物酶的出现。接种椎间盘的低温恒温切片机切片中的过氧化物酶活性在组织化学上位于尝试穿透部位附近的壁中。当接种的圆盘漂浮在环己酰亚胺(25μg/ ml)的溶液上时,过氧化物酶活性的增加被抑制,并且真菌穿透了组织。过氧化物酶活性的抑制与阴极过氧化物酶活性的抑制有关。阳极过氧化物酶活性没有显示出对接种或环己酰亚胺处理的响应变化。有人认为,铜绿假单胞菌的抗性机制涉及在受攻击的组织中诱导阴极过氧化物酶。这些过氧化物酶可能在尝试渗透的位置处木质素的生物合成中起作用。

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