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首页> 外文期刊>Journal of Plant Biology >An Expressed Sequence Tag Analysis for the Fast-Growing Shoots of Bambusa edulis Murno
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An Expressed Sequence Tag Analysis for the Fast-Growing Shoots of Bambusa edulis Murno

机译:野菜竹快速生长枝的表达序列标签分析

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Bamboo is one of the fastest growing plants in the world and is an economically important crop species in Asia. To identify the genes involved in fast shoot growth, an expressed sequence tag analysis was performed on Bambusa edulis Murno fast-growing shoots. Sequencing of the cDNA clones generated 1,402 5'-end high-quality expressed sequence tags (JG296384-JG297785, average length 655 bp), of which 1,101 clusters (143 consensus and 958 singletons) were revealed by sequence comparison to be unique and 597 (54% of total clusters) of them have a putative ATG start codon. A Basic Local Alignment Search Tool X analysis showed that 995 of these genes were similar to genes present in the National Center for Biotechnology database. A total of 868 genes were most similar to rice genes. The most abundant genes were three thionin-coding genes, which have 27, 17, or 10 clones, respectively, followed by aminocyclopropanecarboxylate oxidase and cysteine protease. Thionin and putative cell elongation-associated genes, xyloglucan endotransglycosylase/hydrolase, expansin, cellulose synthase, and pectin esterase were analyzed by real-time reverse transcription polymerase chain reaction using gene-specific primers. These results suggest that this high-quality library could be a good resource for understanding molecular events of bamboo shoot elongation, and the full-length clones could be used for crop improvement studies in the future.
机译:竹子是世界上生长最快的植物之一,是亚洲重要的经济作物。为了鉴定与快速芽生长有关的基因,对Bambusa edulis Murno快速生长芽进行了表达序列标签分析。 cDNA克隆的测序产生了1,402个5'端高质量表达的序列标签(JG296384-JG297785,平均长度655 bp),其中1,101个簇(143个共有序列和958个单例)通过序列比较显示是唯一的,还有597个(其中54%的簇具有推定的ATG起始密码子。基本的局部比对搜索工具X分析表明,这些基因中的995个与国家生物技术中心数据库中的基因相似。共有868个基因与水稻基因最相似。最丰富的基因是三个硫蛋白编码基因,分别具有27、17或10个克隆,其次是氨基环丙烷羧酸盐氧化酶和半胱氨酸蛋白酶。通过实时逆转录聚合酶链反应,使用基因特异性引物分析了硫蛋白和推定的细胞伸长相关基因,木葡聚糖内切糖基化酶/水解酶,扩展酶,纤维素合酶和果胶酯酶。这些结果表明,该高质量文库可能是理解竹笋伸长的分子事件的良好资源,并且全长克隆可用于将来的作物改良研究。

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