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首页> 外文期刊>Canadian Journal of Plant Science >Cloning and characterization of the mitochondrial genes Cox II and atpA from ramie (Boehmeria nivea (L.) Gaud.) and their possible role in cytoplasmic male sterility
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Cloning and characterization of the mitochondrial genes Cox II and atpA from ramie (Boehmeria nivea (L.) Gaud.) and their possible role in cytoplasmic male sterility

机译:来自苎麻(Boehmeria Nivea(L.)Gaud的线粒体基因COX II和ATPA的克隆和表征。及其在细胞质雄性不育中的可能作用

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摘要

Huang, H.-Q., Liu, J.-D., Duan, J.-Q., Liang, X.-N. and Liu, F.-H. 2012. Cloning and characterization of the mitochondrial genes Cox II and atpA from ramie (Boehmeria nivea (L.) Gaud.) and their possible role in cytoplasmic male sterility. Can. J. Plant Sci. 92: 1295-1304. In plants, cytoplasmic male sterility (CMS) is known to be associated with structural changes and the presence of new chimeric genes in mtDNA. In this study, fragments of the Cox II and atpA genes, cloned from mtDNA of three lines (CMS line, its maintainer and restorer lines) of ramie [Boehmeria nivea (L.) Gaud.], showed homology of 95% for Cox II and 97% for atpA compared with the reference dicotyledons in GenBank. The whole sequences of these two genes were obtained using the DNA walking strategy. Cox II showed no difference among the three lines in sequences of DNA and deduced amino acids. However, atpA from the CMS line obviously differed from that of fertile lines in DNA sequence, amino acid sequence and secondary structure of the predicted protein. Unusually low expression was revealed via RT-PCR for atpA in the CMS line at the budding and late-bloom stages. In conclusion, the variation in DNA sequence and the encoded product, and/or the abnormal expression of atpA in the CMS line, may cause male sterility in ramie.
机译:黄,H.-Q.,Liu,J.-D.,Duan,J.-Q.,Liang,X.-N。和刘,f。 - 2012年苎麻(Boehmeria Nivea(L.)Gaud)的线粒体基因COX II和ATPA的克隆和表征。及其在细胞质雄性不育中的可能作用。能。 J.植物SCI。 92:1295-1304。在植物中,已知细胞质雄性不育(CMS)与结构变化和MTDNA中新的嵌合基因的存在相关。在该研究中,COX II和ATPA基因的碎片,由三条线(CMS系列,其维护系和恢复系)的MTDNA克隆的苎麻[Boehmeria Nivea(L.)Gaud。]表现为Cox II的同源性为95%与Genbank中的参考二坐子相比,ATPA的97%。使用DNA行走策略获得这两个基因的整个序列。 Cox II在DNA序列中的三条线中显示出没有差异,并推导出氨基酸。然而,来自CMS线的ATPA显然不同于DNA序列中的肥沃线,氨基酸序列和预测蛋白的二次结构。通过RT-PCR在萌芽和晚绽放阶段通过RT-PCR揭示异常低的表达。总之,DNA序列和编码产物的变化和/或CMS系中ATPA的异常表达,可能导致苎麻中的雄性不育。

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