首页> 外文期刊>农业科学学报(英文版) >Molecular evidence for blocking erucic acid synthesis in rapeseed (Brassica napus L.) by a two-base-pair deletion in FAE1 (fatty acid elongase 1)
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Molecular evidence for blocking erucic acid synthesis in rapeseed (Brassica napus L.) by a two-base-pair deletion in FAE1 (fatty acid elongase 1)

机译:通过FAE1(脂肪酸延伸酶1)中的两个碱基对缺失阻止油菜(芥菜)中芥酸合成的分子证据

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摘要

DNA sequences of fatty acid elongase 1 genes FAE1.1 (EA) and FAE1.2 (EC) were isolated and characterized for 30 com-mercialized low erucic acid rapeseed (LEAR) cultivars in China. Four types of independent mutation leading to low erucic acid trait were found, i.e., a single-base transition (eA1), a two-base deletion (eC2) and four-base deletion (eC4) as wel as single-base transition with a four-base deletion (eA*). Three genotypes, i.e., eA1eA1eC2eC2, eA1eA1eC4eC4 and eA*eA*eC4eC4 were responsible for LEA content in storage lipids of different rapeseed cultivars. Most of the LEAR cultivars had a genotype of eA1eA1eC2eC2, which were descended from the ifrst LEAR cultivar, Oro. Yeast expression analysis revealed that two-base-pair (AA) deletion (eC2) at the base sites of 1 422–1 423 in the C genome FAE1 gene resulted in the absence of the condensing enzyme and led to the failure to produce erucic acid. Coexpression of FAE1 and ketoacyl-CoA reductase (KCR) or enoyl-CoA reductase (ECR) was found in high erucic acid rapeseed (HEAR) but not in LEAR (eA1eA1eC2eC2 or eA1eA1eC4eC4). Moreover, KCR and ECR were stil coordinately regulated in eA1eA1eC2eC2 or eA1eA1eC4eC4 genotypes, suggesting that the expression of two genes was tightly linked. In addition, speciifc detection methods were developed by high-resolution melting curve analysis in order to detect eA1 and eC4 .
机译:分离并鉴定了中国30个商品化低芥酸油菜(LEAR)品种的脂肪酸延伸酶1基因FAE1.1(EA)和FAE1.2(EC)的DNA序列。发现了四种导致低芥酸性状的独立突变,即单碱基过渡(eA1),两碱基缺失(eC2)和四碱基缺失(eC4),如单碱基过渡和四碱基删除(eA *)。三种基因型,即eA1eA1eC2eC2,eA1eA1eC4eC4和eA * eA * eC4eC4负责不同油菜品种贮藏脂质中的LEA含量。大多数LEAR品种的基因型均为eA1eA1eC2eC2,该基因型来自最早的LEAR品种Oro。酵母表达分析表明,C基因组FAE1基因中1 422– 1 423的碱基处的两个碱基对(AA)缺失(eC2)导致了缩合酶的缺乏,并导致无法产生芥酸。在高芥酸油菜籽(HEAR)中发现FAE1和酮酰基-CoA还原酶(KCR)或烯酰-CoA还原酶(ECR)的共表达,但在LEAR(eA1eA1eC2eC2或eA1eA1eC4eC4)中没有发现。此外,在eA1eA1eC2eC2或eA1eA1eC4eC4基因型中,KCR和ECR仍然受到协调调控,这表明两个基因的表达紧密相关。此外,通过高分辨率熔解曲线分析开发了特异性检测方法,以检测eA1和eC4。

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  • 来源
    《农业科学学报(英文版)》 |2015年第7期|1251-1260|共10页
  • 作者单位

    il Crops Research Institute, Chinese Academy of Agricultural Sciences/Key Laboratory of Biology and Genetic Improvement of 0il Crops, Ministry of Agriculture, Wuhan 430062, P.R.China;

    il Crops Research Institute, Chinese Academy of Agricultural Sciences/Key Laboratory of Biology and Genetic Improvement of 0il Crops, Ministry of Agriculture, Wuhan 430062, P.R.China;

    il Crops Research Institute, Chinese Academy of Agricultural Sciences/Key Laboratory of Biology and Genetic Improvement of 0il Crops, Ministry of Agriculture, Wuhan 430062, P.R.China;

    il Crops Research Institute, Chinese Academy of Agricultural Sciences/Key Laboratory of Biology and Genetic Improvement of 0il Crops, Ministry of Agriculture, Wuhan 430062, P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:24:40
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