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首页> 外文期刊>Physiological and Molecular Plant Pathology >Cytochemical localization of reactive oxygen species (O-2(-) and H2O2) and peroxidase in the incompatible and compatible interaction of wheat - Puccinia striiformis f. sp tritici
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Cytochemical localization of reactive oxygen species (O-2(-) and H2O2) and peroxidase in the incompatible and compatible interaction of wheat - Puccinia striiformis f. sp tritici

机译:小麦(Puccinia striiformis)不相容和相容相互作用中活性氧(O-2(-)和H2O2)和过氧化物酶的细胞化学定位。小麦

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The subcellular localization of superoxide anion (O-2(-)) and hydrogen peroxide (H2O2) and peroxidase activity has been studied in leaves of wheat plants cv. 'Suwon 11' infected with an incompatible pathotype CY23 and a compatible pathotype CY31, 5 days after inoculation (dai) using cytochemical methods. O-2(-) and H2O2 were detected by means of Mn/DAB and CeCl3 staining methods; peroxidase was demonstrated using the DAB procedure. Distinct differences in intensity and distribution of O-2(-) and H2O2 were found in both interactions. In general, precipitates of both reactive oxygen species (ROS) were more pronounced in the incompatible interaction compared to the compatible relation. In the incompatible interaction O-2(-) and H2O2 were found in the cell wall, plasma membrane and tonoplast of mesophyll cells in contact with death cells of HR, and mesophyll cells adjacent to hyphae. In addition, H2O2 was detected in tonoplasts of host cells penetrated by haustoria, in the intercellular space and in walls of hyphae extending intercellularly. The subcellular accumulations of both ROS were restricted to the infection sites. However, in the compatible relation O-2(-) was not detected in the host cell wall and plasmalemma and H2O2 was not found in tonoplasts of mesophyll cells as well as in tonoplasts around haustoria in infected host cells. Peroxidase was demonstrated in cell walls, intercellular spaces, plasma membrane of mesophyll cells adjacent to HR cells and hyphae. Distribution pattern of peroxidase corresponded to that of H2O2 in the infection sites of the incompatible interaction. The significance of the subcellular accumulation of ROS and peroxidase leading to cell wall modi. cations and HR is emphasized. (C) 2010 Elsevier Ltd. All rights reserved.
机译:研究了小麦植株叶片中超氧阴离子(O-2(-))和过氧化氢(H2O2)的亚细胞定位和过氧化物酶活性。接种(dai)5天后,通过细胞化学方法感染了不相容的CY23型和CY31的'Suwon 11'。 Mn / DAB和CeCl3染色法检测O-2(-)和H2O2。使用DAB程序证明了过氧化物酶。在两种相互作用中,O-2(-)和H2O2的强度和分布存在明显差异。通常,与相容关系相比,两种不相容的相互作用中两种活性氧(ROS)的沉淀更为明显。在不相容的相互作用中,在与HR的死亡细胞接触的叶肉细胞的细胞壁,质膜和液泡膜中以及与菌丝相邻的叶肉细胞中发现了O-2(-)和H2O2。此外,H2O2在被haushaus穿透的宿主细胞的液泡膜中,细胞间空间和在细胞间延伸的菌丝壁中被检测到。两种ROS的亚细胞积累仅限于感染部位。但是,在兼容关系中,在宿主细胞壁中未检测到O-2(-),在叶肉细胞的液泡膜和感染宿主细胞的精液管的液泡膜中也未发现质膜和H2O2。过氧化物酶在细胞壁,细胞间隙,与HR细胞相邻的叶肉细胞质膜和菌丝中得到证实。过氧化物酶在不相容相互作用的感染部位的分布模式与过氧化氢的分布模式相对应。 ROS和过氧化物酶亚细胞积累导致细胞壁变型的意义。阳离子和人力资源。 (C)2010 Elsevier Ltd.保留所有权利。

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