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通过IEF免疫印迹分析对烟草PR-5蛋白积累的表征。

Characterization of accumulation of tobacco PR-5 proteins by IEF-immunoblot analysis.

作者信息

Koiwa H, Sato F, Yamada Y

机构信息

Department of Agricultural Chemistry, Faculty of Agriculture, Kyoto University, Japan.

出版信息

Plant Cell Physiol. 1994 Jul;35(5):821-7. doi: 10.1093/oxfordjournals.pcp.a078663.

Abstract

Accumulation of group 5 pathogenesis-related (PR) proteins in tobacco was characterized by immunological analysis combined with isoelectric focusing. This method clearly distinguished 3 subclasses of PR-5 proteins; basic (osmotin), neutral (osmotin-like protein: OLP) and acidic (PR-S). A high accumulation of PR-5 proteins was detected only in root tissues in which neutral osmotin-like protein was mainly accumulated, in addition to a small amount of osmotin. Immunohistochemical analysis revealed that OLP accumulated in the cortex of the root. Cultured tobacco cells accumulated large amounts of neutral PR-5 proteins (OLP) in cells and the acidic form (PR-S) in the medium. Adaptation to salt stress was associated with a higher accumulation of basic PR-5 (osmotin) and less neutral PR-5. In an analysis of the effect of biotic and abiotic stimuli on the synthesis of PR-5 proteins in leaf tissues, ethylene was found to induce a high accumulation of basic and neutral PR-5 proteins. Tobacco mosaic virus (TMV) infection induced accumulation of all major PR-5 proteins, but induction of OLP was less than that of the other isoforms. Systemic induction of PR-5 proteins in upper non-infected leaves was not observed. Salicylate induced only a small accumulation of PR-S. These results indicate that each PR-5 protein has an independent regulatory pathway for its gene expression.

摘要

通过免疫分析结合等电聚焦对烟草中第5类病程相关(PR)蛋白的积累进行了表征。该方法清晰地区分了PR - 5蛋白的3个亚类:碱性(渗透素)、中性(类渗透素蛋白:OLP)和酸性(PR - S)。仅在根组织中检测到PR - 5蛋白的高积累,其中主要积累的是中性类渗透素蛋白,此外还有少量渗透素。免疫组织化学分析表明,OLP积累在根的皮层中。培养的烟草细胞在细胞中积累大量中性PR - 5蛋白(OLP),在培养基中积累酸性形式(PR - S)。适应盐胁迫与碱性PR - 5(渗透素)的更高积累和较少的中性PR - 5相关。在分析生物和非生物刺激对叶片组织中PR - 5蛋白合成的影响时,发现乙烯可诱导碱性和中性PR - 5蛋白的高积累。烟草花叶病毒(TMV)感染诱导所有主要PR - 5蛋白的积累,但OLP的诱导低于其他同工型。未观察到上部未感染叶片中PR - 5蛋白的系统诱导。水杨酸盐仅诱导PR - S的少量积累。这些结果表明,每种PR - 5蛋白在其基因表达方面都有独立的调控途径。

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