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大麦(Hordeum vulgare L.)中一种在胁迫叶片中不溶性的类萌发素蛋白的结构、表达及定位

Structure, expression and localization of a germin-like protein in barley (Hordeum vulgare L.) that is insolubilized in stressed leaves.

作者信息

Vallelian-Bindschedler L, Mösinger E, Métraux J P, Schweizer P

机构信息

Institut de Biologie Végétale, Université de Fribourg, Switzerland.

出版信息

Plant Mol Biol. 1998 May;37(2):297-308. doi: 10.1023/a:1005982715972.

Abstract

The primary leaves of young barley seedlings contain two major, extracellular, acid-soluble proteins of ca. 22 and 23 kDa apparent molecular mass. These proteins disappeared from the intercellular washing fluid upon stress treatments that enhanced H2O2 levels and that induced resistance to subsequent challenge by the powdery mildew fungus Erysiphe graminis f. sp. hordei. A partial peptide sequence of the 22 kDa protein was determined, and a cDNA clone was isolated. The 22 kDa protein belongs the the group of germin-like proteins (GLPs) and was designated HvGLP1. Despite its similarity to germin, i.e. oxalate oxidase, no oxalate oxidase activity of HvGLP1 could be detected. The RNA and soluble protein of HvGLP1 was highly abundant in young leaves, less abundant in older leaves and absent in roots. HvGLP1 RNA oscillated with a circadian rhythm, the minimum and maximum of RNA abundance being at the end of the dark and light periods, respectively. Heat and H2O2 treatment as well as pathogen infection caused disappearance of HvGLP1 protein from the fraction of soluble proteins of the intercellular space. HvGLP1 protein could be re-solubilized from cell walls of heat- or H2O2-treated leaves by boiling in SDS suggesting non-covalent cross linking. Although a physiological role of HvGLP1 insolubilization is still open, the protein may serve as marker for oxidative stress in cereals.

摘要

大麦幼苗的初生叶含有两种主要的细胞外酸溶性蛋白质,表观分子量约为22 kDa和23 kDa。在增强过氧化氢水平并诱导对白粉病菌(禾本科布氏白粉菌)后续侵染产生抗性的胁迫处理后,这些蛋白质从细胞间洗涤液中消失。测定了22 kDa蛋白质的部分肽序列,并分离出一个cDNA克隆。22 kDa蛋白质属于类萌发素蛋白(GLP)家族,被命名为HvGLP1。尽管它与萌发素(即草酸氧化酶)相似,但未检测到HvGLP1的草酸氧化酶活性。HvGLP1的RNA和可溶性蛋白在幼叶中含量很高,在老叶中含量较低,在根中则不存在。HvGLP1的RNA以昼夜节律振荡,RNA丰度的最小值和最大值分别出现在黑暗期和光照期结束时。热激、过氧化氢处理以及病原体感染导致HvGLP1蛋白从细胞间隙可溶性蛋白组分中消失。通过在SDS中煮沸,HvGLP1蛋白可从经热激或过氧化氢处理的叶片细胞壁中重新溶解,这表明存在非共价交联。尽管HvGLP1不溶性的生理作用尚不清楚,但该蛋白可能作为谷物氧化应激的标志物。

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