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首页> 外文期刊>Plant Molecular Biology >The essential role of GhPEL gene, encoding a pectate lyase, in cell wall loosening by depolymerization of the de-esterified pectin during fiber elongation in cotton
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The essential role of GhPEL gene, encoding a pectate lyase, in cell wall loosening by depolymerization of the de-esterified pectin during fiber elongation in cotton

机译:编码果胶酸裂合酶的GhPEL基因在棉花纤维伸长过程中因去酯化果胶解聚而在细胞壁松弛中的重要作用

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Cotton fiber elongation, largely achieved by cell wall loosening, is an important stage during cotton fiber development. In this present research, a fiber preferential cDNA encoding a pectate lyase (PEL) which could exclusively degrade the de-esterified pectin was isolated from a cotton (Gossypium hirsutum) fiber cDNA library. Subsequently, the corresponding PEL genes were isolated from four different cotton species and characterized. In vitro enzyme assays indicated that GhPEL really exhibited cleavage-activity against de-esterified pectin. The temporal-spatial expression analyses revealed that the GhPEL gene was preferentially expressed in fibers at 10 days-post anthesis (DPA). Antisense GhPEL transgenic cotton plants were generated by Agrobacterium-mediated transformation. Six homozygous lines, each with one or two copies of the transgene inserted as determined by southern blot analysis of the NPTII gene, were selected for further functional analysis. The GhPEL expression during fiber elongation in these transgenic lines was significantly suppressed in various degrees. Furthermore, the reduction of GhPEL enzymatic activity by decreasing GhPEL transcripts severely affected the degradation of de-esterified pectin in primary cell walls of transgenic cotton fibers, which consequently blocked cell wall loosening in early fiber development. Ultimately, the fiber elongation of all these transgenic lines was repressed. These results suggested that GhPEL may play an important role in the process of normal fiber elongation in cotton. Keywords GhPEL gene - Cotton (Gossypium hirsutum) - Pectate lyase - Fiber elongation - Cell wall - Pectin
机译:棉纤维的伸长在很大程度上是通过细胞壁的松弛实现的,是棉纤维发展过程中的重要阶段。在本研究中,从棉(陆地棉)纤维cDNA文库中分离出一种纤维优先cDNA,其编码可专门降解去酯化果胶的果胶酸裂合酶(PEL)。随后,从四种不同的棉花品种中分离出相应的PEL基因并进行了表征。体外酶分析表明,GhPEL确实表现出对去酯化果胶的裂解活性。时空表达分析表明,在花后10天(DPA),GhPEL基因在纤维中优先表达。通过农杆菌介导的转化产生反义GhPEL转基因棉花植物。选择六个纯合系,每个纯合系插入一​​个或两个拷贝的转基因,如通过NPTII基因的Southern印迹分析所确定的,用于进一步的功能分析。这些转基因品系在纤维伸长期间的GhPEL表达在不同程度上被显着抑制。此外,通过降低GhPEL转录物来降低GhPEL酶活性,严重影响了转基因棉纤维原代细胞壁中去酯化果胶的降解,从而阻止了纤维早期发育中细胞壁的松动。最终,所有这些转基因品系的纤维伸长被抑制。这些结果表明,GhPEL可能在棉花正常纤维伸长过程中起重要作用。关键词GhPEL基因-棉花(棉)-果胶裂解酶-纤维伸长率-细胞壁-果胶

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