首页> 外文期刊>Postharvest Biology and Technology >Cloning, characterisation and expression analyses of cDNA clones encoding cell wall-modifying enzymes isolated from ripe apples.
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Cloning, characterisation and expression analyses of cDNA clones encoding cell wall-modifying enzymes isolated from ripe apples.

机译:编码从成熟苹果中分离的细胞壁修饰酶的cDNA克隆的克隆,表征和表达分析。

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Fruit softening is accompanied by modifications of the cell wall pectic and hemicellulosic fractions, as the result of the combined action of several cell wall-modifying enzymes. The objective of this work was to clone specific cDNAs that encode isoforms of cell wall-modifying enzymes, which are expressed during the final stages of apple softening, and to establish a temporal sequence of their accumulation. A cDNA library enriched with mRNA isolated from over-ripe fruit was constructed and screened. A pectin methylesterase (MdPME1), a pectate lyase (MdPL1), an alpha-l-arabinofuranosidase (MdAF1) an endo-1,4- beta-glucanase (MdEG1), two xyloglucan endotransglucosylase/hydrolases (Md-XTH1 and Md-XTH2), and an alpha-expansin (MdEXPA3) specific cDNAs were identified by homology-based cloning, and their mRNA accumulation was examined during fruit growth and ripening. The expression of an apple beta-galactosidase ( beta-Gal; pABG1) and a polygalacturonase (PG; pGDPG-1) mRNA previously reported was also investigated using the same biological material. Transcripts of all enzymes, except MdPME1, could be unambiguously detected by semi-quantitative RT-PCR in fruit during ripening. However, transcripts of MdEG1 were more abundant at fruit set and MdPL1 exhibited higher expression before commercial maturity. The strongest RT-PCR signals in over-ripe fruit were observed for PG, beta-Gal and Md-XTH1 clones. Two XTHs were detected in over-ripe fruit. While Md-XTH1 acts constitutively during fruit development, Md-XTH2 showed a ripening-related pattern. The Md-XTH2-encoded protein was heterologously expressed in Saccharomyces cerevisiae and showed both transglycosylase and hydrolase activities. Expression analyses conducted in flowers, peduncles, young and expanded leaves, and petioles of senescent leaves revealed that none of the cloned cDNAs is fruit specific. All rights reserved, Elsevier.
机译:水果软化伴随着细胞壁果胶和半纤维素部分的修饰,这是几种细胞壁修饰酶共同作用的结果。这项工作的目的是克隆编码细胞壁修饰酶同工型的特定cDNA,该蛋白在苹果软化的最后阶段表达,并建立其积累的时间序列。构建并筛选了富含从过熟果实中分离的mRNA的cDNA文库。果胶甲基酯酶(MdPME1),果胶酸裂合酶(MdPL1),α-1-阿拉伯呋喃糖苷酶(MdAF1),1,4-β-葡聚糖内切酶(MdEG1),两个木葡聚糖内转葡糖苷酶/水解酶(Md-XTH1和Md-XTH2 ),并通过基于同源性的克隆鉴定了alpha-expansin(MdEXPA3)特异性cDNA,并在果实生长和成熟期间检查了它们的mRNA积累。还使用相同的生物材料研究了先前报道的苹果β-半乳糖苷酶(β-Gal; pABG1)和聚半乳糖醛酸酶(PG; pGDPG-1)mRNA的表达。在成熟过程中,通过半定量RT-PCR可以明确检测除MdPME1以外的所有酶的转录本。然而,MdEG1的转录本在坐果期更为丰富,而MdPL1在商业成熟之前表现出更高的表达。对于PG,β-Gal和Md-XTH1克隆,观察到过熟水果中最强的RT-PCR信号。在过熟的水果中检测到两个XTH。虽然Md-XTH1在果实发育过程中起主要作用,但Md-XTH2显示出与成熟相关的模式。 Md-XTH2编码的蛋白在酿酒酵母中异源表达,并显示糖基转移酶和水解酶活性。在花,花序梗,幼叶和膨胀叶以及衰老叶的叶柄中进行的表达分析表明,克隆的cDNA均不具有果实特异性。保留所有权利,Elsevier。

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