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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) 被引量:5

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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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 (eAl), a two-base deletion (ec2) and four-base deletion (eC4) as well 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 Iipids of different rapeseed cultivars. Most of the LEAR cultivars had a genotype of eA1eA1ec2ec2, which were descended from the first 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 ketoacyI-CoA reductase (KCR) or enoyI-CoA reductase (ECR) was found in high erucic acid rapeseed (HEAR) but not in LEAR (eA1eA1ec2ec2oreA1eA1ec4ec4). Moreover, KCR and ECR were still coordinately regulated in eA1eA1ec2ec2 or eA1eA1ec4ec4 genotypes, suggesting that the expression of two genes was tightly linked. In addition, specific detection methods were developed by high-resolution melting curve analysis in order to detect eA1 and ec4. 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 (eAl), a two-base deletion (ec2) and four-base deletion (eC4) as well 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 Iipids of different rapeseed cultivars. Most of the LEAR cultivars had a genotype of eA1eA1ec2ec2, which were descended from the first 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 ketoacyI-CoA reductase (KCR) or enoyI-CoA reductase (ECR) was found in high erucic acid rapeseed (HEAR) but not in LEAR (eA1eA1ec2ec2oreA1eA1ec4ec4). Moreover, KCR and ECR were still coordinately regulated in eA1eA1ec2ec2 or eA1eA1ec4ec4 genotypes, suggesting that the expression of two genes was tightly linked. In addition, specific detection methods were developed by high-resolution melting curve analysis in order to detect eA1 and ec4.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2015年第7期1251-1260,共10页 农业科学学报(英文版)
基金 financially supported by the National Natural Science Foundation of China (30471099) the National High Technology and Development Program of China (2006AA10A113)
关键词 erucic acid fatty acid elongase 1 natural mutation Brassica napus L. erucic acid, fatty acid elongase 1, natural mutation, Brassica napus L.
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  • 1Jixiang Han,Wilfried Lühs,Karin Sonntag,Ulrich Z?hringer,Dorothea S. Borchardt,Frank P. Wolter,Ernst Heinz,Margrit Frentzen.Functional characterization of β-ketoacyl-CoA synthase genes from Brassica napus L.[J]. Plant Molecular Biology . 2001 (2)
  • 2M. Fourmann,P. Barret,M. Renard,G. Pelletier,R. Delourme,D. Brunel.The two genes homologous to Arabidopsis FAE1 co-segregate with the two loci governing erucic acid content in Brassica napus[J]. TAG Theoretical and Applied Genetics . 1998 (6-7)
  • 3P. Barret,R. Delourme,M. Renard,F. Domergue,R. Lessire,M. Delseny,T. J. Roscoe.A rapeseed FAE1 gene is linked to the E1 locus associated with variation in the content of erucic acid[J]. TAG Theoretical and Applied Genetics . 1998 (2)
  • 4C. Jourdren,P. Barret,R. Horvais,N. Foisset,R. Delourme,M. Renard.Identification of RAPD markers linked to the loci controlling erucic acid level in rapeseed[J]. Molecular Breeding . 1996 (1)
  • 5B. Lemieux,M. Miquel,C. Somerville,J. Browse.Mutants of Arabidopsis with alterations in seed lipid fatty acid composition[J]. Theoretical and Applied Genetics . 1990 (2)
  • 6R. K. Downey,B. M. Craig.Genetic control of fatty acid biosynthesis in rapeseed (Brassica napus L.)[J]. Journal of the American Oil Chemists’ Society . 1964 (7)
  • 7Anand I J,Downey R K.A study of erucic acid alleles in digenomic rapeseed (Brassica napus L.). Canadian Journal of Plant Science . 1981
  • 8Kunst L,Taylor D C,Underhill E W.Fatty acid elongation in devel- oping seeds of Arabidopsis thaliana. Plant physiology and Biochemistry . 1992
  • 9Saghai-Maroof M A,Soliman K,Jorgensen R A,et al.Ribosomal DNA spacer-length polymorphisms in barley: Mendelian inheritance, chromosomal location, and population dynamics. Proceedings of the National Academy of Sciences of the United States of America . 1984
  • 10J?nsson R.Erucic-acid heredity in rapeseed (Brassica napus L. and Brassica campestris L.). Hereditas . 1977

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