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Genome-wide identification and expression analysis of rice pectin methylesterases: Implication of functional roles of pectin modification in rice physiology

机译:水稻果胶甲酯酶的全基因组鉴定和表达分析:果胶修饰在水稻生理中的功能作用

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Pectin, which is enriched in primary cell walls and middle lamellae, is an essential polysaccharide in all higher plants. Homogalacturonans (HGA), a major form of pectin, are synthesized and methylesterified by enzymes localized in the Golgi apparatus and transported into the cell wall. Depending on cell type, the degree and pattern of pectin methylesterification are strictly regulated by cell wall-localized pectin methylesterases (PMEs). Despite its importance in plant development and growth, little is known about the physiological functions of pectin in rice, which contains 43 different types of PME. The presence of pectin in rice cell walls has been substantiated by uronic acid quantification and immunodetection of JIM7 monoclonal antibodies. We performed PME activity assays with cell wall proteins isolated from different rice tissues. In accordance with data from Arabidopsis, the highest activity was observed in germinating tissues, young culm, and spikelets, where cells are actively elongating. Transcriptional profiling of OsPMEs by real-time PCR and meta-analysis indicates that PMEs exhibit spatial- and stress-specific expression patterns during rice development. Based on in silico analysis, we identified subcellular compartments, isoelectric point, and cleavage sites of OsPMEs. Our findings provide an important tool for further studies seeking to unravel the functional importance of pectin modification during plant growth and abiotic and biotic responses of grass plants. (C) 2015 Elsevier GmbH. All rights reserved.
机译:果胶富含初级细胞壁和中层薄片,是所有高等植物中必需的多糖。同型半乳糖醛酸(HGA)是果胶的主要形式,可以通过高尔基体中定位的酶进行合成和甲基化,然后转运到细胞壁中。根据细胞类型,果胶甲基酯化的程度和模式由细胞壁定位的果胶甲基酯酶(PME)严格控制。尽管果胶在植物发育和生长中具有重要作用,但对水稻中的果胶的生理功能知之甚少,其中含有43种不同类型的PME。水稻细胞壁中果胶的存在已通过糖醛酸定量和JIM7单克隆抗体的免疫检测得到证实。我们用分离自不同水稻组织的细胞壁蛋白进行了PME活性测定。根据拟南芥的数据,在萌发的组织,年轻的茎和小穗中,细胞活跃地活动时,观察到最高的活性。通过实时PCR和荟萃分析对OsPME进行转录谱分析表明,PME在水稻发育过程中表现出空间和胁迫特异性表达模式。基于计算机分析,我们确定了OsPMEs的亚细胞区室,等电点和裂解位点。我们的发现为进一步研究以揭示果胶修饰在植物生长以及草类植物的非生物和生物反应中的功能重要性提供了重要的工具。 (C)2015 Elsevier GmbH。版权所有。

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