期刊文献+

芥菜型油菜4-二氢黄酮醇还原酶基因的克隆和表达分析 被引量:15

Cloning and Expression Analysis of the Dihydroflavonol 4-reductase Gene in Brassica juncea
在线阅读 下载PDF
导出
摘要 利用同源克隆方法,在芥菜型油菜中克隆了DFR基因。在DNA和cDNA中扩增的DFR基因大小分别为1612bp和1214bp。该基因含有5个内含子,开放阅读框为1158bp,预计编码385个氨基酸,预测分子量为42886.0Da,推测的等电点为5.54。DFR基因在芥菜型油菜紫叶芥和黑籽近等基因系的叶片、胚和种皮中都表达,在四川黄籽中只在叶片和胚中表达。DFR基因在四川黄籽种皮中不表达,导致种皮中花色素和原花色素不能合成,从而种皮透明,形成黄籽,因此DFR基因是油菜种皮颜色形成途径中一个关键基因。本研究为利用该基因与种子、种皮特异启动子构建反义表达载体或RNAi载体,阐明油菜种皮颜色形成的分子机理和创造黄籽油菜新种质奠定了基础。 The yellow-seeded cultivars of rapeseed have higher oil content than those of the black-seeded varieties. Yellow seeds of rapeseed have lower fibre content compared with those of black-seeded varieties. They may also have higher protein content than black seeds. Higher protein content and lower crude fibre content are desirable traits in rapeseed meal, which is the most important fodder product of rape. However, there is little knowledge on the biosynthesis of seed coat color in rapeseed. Therefore, it is necessary to elucidate the mechanism of seed coat color in rapeseed. Dihydroflavonol 4-reductase (DFR) gene is a key gene in the way of proanthocyanidins biosynthesis of seed coat in Arabidopsis thaliana, its mutation caused transparent testa. In order to study molecular mechanism of seed coat color in rapeseed, dihydroflavonol 4-reductase (DFR) gene was cloned from Brassica juncea using homology-based cloning strategy. The cloned gene of 1612 bp contains 5 introns. The complementary DNA (cDNA) consists of 1214 bp and has an open reading frame of 1 158 bp encoding a deduced polypeptide of 385 amino acids with a predicted molecular weight of 42886.0 Da and an estimated isoelectric point of 5.54. RT-PCR analysis showed that DFR expressed in leaves, embryos and seed coats of Purple-leaf Mustard (PLM) and two black-seeded near-isogenic lines (NILs) developed from backcross breeding using Sichuan Yellow (SY) as a current parent, whereas the gene expressed only in the leaves and embryos of SY, not in the seed coats. No expression of DFR blocked the biosynthesis of anthocyanidins and proanthocyanidins in yellow seed coats, and seeds displayed yellow appearance because of transparent testa. So DFR is a key gene for the formation of seed coat color in B. juncea. This work provided a foundation for understanding molecular mechanism of seed coat color and developing novel yellow-seeded rapeseed germplasm through antisense expression or RNAi-suppression of DFR gene in black-seeded cultivars using a seedor seed-coat-specific promoter.
出处 《作物学报》 CAS CSCD 北大核心 2008年第1期1-7,共7页 Acta Agronomica Sinica
基金 国家自然科学基金项目(30471098) 教育部重点科技项目(204101) 湖南省教育厅重点项目(03A017)
关键词 芥菜型油菜 4-二氢黄酮醇还原酶基因 克隆 RT-PCR分析 Brassicajuncea Dihydroflavonol 4-reductase gene Cloning RT-PCR analysis
  • 相关文献

参考文献18

  • 1Liu H-L(刘后利).Rapeseed Genetics and Breeding(油菜遗传育种学).Beijing:China Agricultural University Press,2000.pp 139-149
  • 2Rahman M H,Jeoersbo M,Poulsen M H.Development of yellow-seeded Brassica napus of double quality.Plant Breed,2001,120:473-478
  • 3Somers D J,Rakow G,Prabhu V K,Friesen K R D.Identification of a major gene and RAPD markers for yellow seed coat colour in Brassica napus.Genome,2001,44:1077-1082
  • 4Yan M L,Liu Z S,Guan C Y,Chen S Y,Yuan M Z,Liu X J.Molecular markers for the seed coat color in Brassica juncea.In:Proc.12th International Rapeseed Congress,Wuhan,China,Science Press USA Inc.,March,2007.pp 325-329
  • 5Lepiniec L,Debeaujon I,Routaboul J M,Baudry A,Pourcel L,Nesi N,Caboche M.Genetics and biochemistry of seed flavonoids.Annu Rev Plant Biol,2006,57:405-430
  • 6Xie D Y,Sharma S B,Paiva N L,Ferreira D,Dixon R A.Role of anthocyanidin reductase,encoded by BANYULS in plant flavonoid biosynthesis.Science,2003,299:396-399
  • 7Kitamura S,Shikazono N,Tanaka A.TRANSPARENT TESTA 19 is involved in the accumulation of both anthocyanins and proanthocyanidins in Arabidopsis.Plant J,2004,37:104-114
  • 8Debeaujon I,Nesi N,Perez P,Devic M,Grandjean O,Caboche M,Lepiniec L.Proanthocyanidin-accumulating cells in Arabidopsis testa:regulation of differentiation and role in seed development.Plant Cell,2003,15:2514-2531
  • 9曾盔,刘忠松,龙桑,严明理.芥菜型油菜黄黑种皮多酚差异的紫外-可见光谱研究[J].作物学报,2007,33(3):476-481. 被引量:11
  • 10Marles M A S,Gruber Y M,Scoles G J,Muir A D.Pigmentation in the developing seed coat and seedling leaves of Brassica carinata is controlled at the dihydroflavonol reductase locus.Phytochemistry,2003,62:663-672

二级参考文献17

  • 1陈玉萍,刘后利.甘蓝型油菜种子发育过程中种皮色素含量动态[J].中国油料,1994,16(4):13-16. 被引量:23
  • 2王汉中,刘后利.甘蓝型油菜黄籽和黑籽皮壳中花色素、多酚、苯丙烯酸含量和PAL酶活性的变异[J].华中农业大学学报,1996,15(6):509-513. 被引量:22
  • 3XiaoD-R(肖达人).Analysis on the correlations between seed coat color and oil contents of seeds in Brassica napus L[J].作物学报,1982,8(4):245-254.
  • 4Theander O,Aman P,Miksche G,Yasuda S.Carbohydrate,polyphenols and lignin in seed hulls of different colours from tumip rapeseed.J Agric Food Chem,1977,25(2):270-273
  • 5Pirie A,Mnllins M G.Changes in anthocyanin and phenolics content of grapevine leaf and fruit tissue treated with sucrose,nitrate and abscisic acid.Plant Physiol,1976,58:468-472
  • 6Wang Z-N(王泽农).Biochemistry on Tea Leaves (茶叶生物化学),2nd edn.Beijing:Agriculture Press,1990.pp 86-96
  • 7Chen Y-G(陈业高).Chemical Components on Plants(植物化学成分),1st edn.Beijing:Chemical Industry Press,2005.pp 223-240
  • 8Debeaujon I,Karen M L,Maarten K.Influence of the Testa on seed dormancy,germination,and longevity in Arabidopsis.Plant Physiol,2000,122(2):403-414
  • 9Deng Q-Y(邓芹英),Liu L(刘岚),Deng H-M(邓慧敏).Spectral Analysis Curriculum(波谱分析教程).1st edn.Beijing:Science Press,2004.pp 1-26
  • 10Huang L(黄量),Yu D-Q(于德泉).UV Spectrum Application in Organic Chemistry(Ⅱ)(紫外光谱在有机化学中的应用,下册).1st edn.Beijing:Science Press,2000.pp 281-344

共引文献10

同被引文献242

引证文献15

二级引证文献76

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部