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首页> 外文期刊>Plant Molecular Biology >ISOLATION AND CHARACTERISATION OF CDNA CLONES REPRESENTING THE GENES ENCODING THE MAJOR TUBER STORAGE PROTEIN (DIOSCORIN) OF YAM (DIOSCOREA CAYENENSIS LAM)
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ISOLATION AND CHARACTERISATION OF CDNA CLONES REPRESENTING THE GENES ENCODING THE MAJOR TUBER STORAGE PROTEIN (DIOSCORIN) OF YAM (DIOSCOREA CAYENENSIS LAM)

机译:代表山药(大叶藻)的主要管贮藏蛋白(二叶鞘脂)基因的CDNA克隆的分离和表征

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摘要

cDNA clones encoding dioscorins, the major tuber storage proteins (M(r) 32000) of yam (Dioscorea cayenensis) have been isolated. Two classes of clone (A and B, based on hybrid release translation product sizes and nucleotide sequence differences) which are 84.1% similar in their protein coding regions, were identified. The protein encoded by the open reading frame of the class A cDNA insert is of M(r) 30015. The difference in observed and calculated molecular mass might be attributed to glycosylation, Nucleotide sequencing and in vitro transcription/translation suggest that the class A dioscorin proteins are synthesised with signal peptides of 18 amino acid residues which are cleaved from the mature peptide, The class A and class B proteins are 69.6% similar with respect to each other, but show no sequence identity with other plant proteins or with the major tuber storage proteins of potato (patatin) or sweet potato (sporamin). Storage protein gene expression was restricted to developing tubers and was not induced by growth conditions known to induce expression of tuber storage protein genes in other plant species. The codon usage of the dioscorin genes suggests that the Dioscoreaceae are more closely related to dicotyledonous than to monocotyledonous plants. [References: 32]
机译:已分离出编码薯os素的薯clone,薯di为薯(Dioscorea cayenensis)的主要块茎贮藏蛋白(M(r)32000)。确定了两类克隆(A和B,基于杂种释放翻译产物的大小和核苷酸序列差异),它们的蛋白质编码区相似度为84.1%。 A类cDNA插入片段的开放阅读框编码的蛋白是M(r)30015。观察到的分子量和计算得出的分子量差异可能归因于糖基化,核苷酸测序和体外转录/翻译,这表明A类dioscorin蛋白质是用从成熟肽上切割下来的18个氨基酸残基的信号肽合成的,A类和B类蛋白彼此相似为69.6%,但与其他植物蛋白或主要块茎没有序列同一性马铃薯(patatin)或甘薯(sporamin)的贮藏蛋白。贮藏蛋白基因的表达仅限于正在发育的块茎,并且不受已知诱导块茎贮藏蛋白基因在其他植物物种中表达的生长条件的诱导。薯sco酯基因的密码子使用表明,薯os科与双子叶植物比与单子叶植物更紧密相关。 [参考:32]

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