期刊文献+

色素万寿菊中叶黄素合成相关基因的表达分析 被引量:5

Expression Analysis of Lutin Biosynthetic Genes in Pigment Marigold
下载PDF
导出
摘要 本项研究以生产中用于杂交制种的8个色素万寿菊品种资源的花蕾期(Ⅰ)、鲜花半开期(Ⅱ)、鲜花盛开期(Ⅲ)的花瓣以及盛开期时的叶子(Ⅳ)为材料,采用实时荧光定量PCR方法,检测了叶黄素合成过程中3个相关基因lcyb(lycopene b-cyclase)、lcye(lycopene e-cyclase)和zds(ζ-carotene desaturase)在8个供试品种的不同发育时期的相对表达量。结果表明:3个基因的表达量在叶片中依次为lcyb>zds>lcye,花瓣中依次为lcye>zds>lcyb。lcye在花瓣中的表达量随花瓣的开放程度呈现先升高后降低的趋势,并在Ⅱ期达到最大值,且均高于叶片中lcye的表达量。Zds的表达趋势为Ⅱ>Ⅳ>Ⅰ>Ⅲ。Lcyb在叶中的表达高于花瓣中的任何时期。父本花瓣Ⅲ期的lcye表达量高于其他品种,且它的叶片中的lcyb的表达也高于其它品种。本项研究结果将有助于进一步阐明lcyb、lcye和zds基因与色素万寿菊叶黄素合成积累之间的关系,为进行色素万寿菊的基因工程育种奠定基础。 In order to clarify the important roles of lcyb(lycopene b-cyclase),lcye(lycopene e-cyclase),zds(ζ-carotene desaturase) gene in the lutin biosynthetic pathway,real-time fluorescence quantitative PCR was employed to analyze the relative expression of these three genes in different tissues(bud,semi-open flower,fully open flower and leaf) of eight different kinds of pigment marigold cultivars.The results indicated that the relative expression level of these three genes should follow lcybzdslcye in leaves,while lcyezdslcyb in petals.The relative expression level of lcye reached the maximum in semi-open flowers,whereas the relative expression trend of zds from high to low was in semi-open flowerleafbudfully open flower.The relative expression level of lcyb in leaves was higher than in petals.The expression of lcye in fully open flower of paternal parent was also higher than that of other varieties.Results of this study would be helpful to further figure out the relationship between the genes of lcyb,lcye and zds and lutein synthesis and accumulation of pigment marigold,which might be a basis for the purpose of genetically engineered pigment marigold development.
出处 《分子植物育种》 CAS CSCD 北大核心 2012年第1期67-72,共6页 Molecular Plant Breeding
基金 北京市农林科学院创新能力建设项目资助
关键词 万寿菊 叶黄素 基因表达 实时荧光定量PCR lcyb(lycopene b-cyclase) lcye(lycopene e-cyclase) zds(ζ-carotene desaturase) Marigold Lutin Gene expression Real-time fluorescence quantitative PCR lcyb(lycopene b-cyclase) lcye(lycopene e-cyclase) zds(ζ-carotene desaturase)
  • 相关文献

参考文献13

  • 1Breitenbach J.,and Sandmann G.,2005,ξ-Carotene cis isomers as products and substrates in the plant poly-cis carotenoid biosynthetic pathway to lycopene,Planta,220(5):785-793.
  • 2Cunningham F.X.J,and Gantt E.,2001,One ring or two-Determination of ring number in carotenoids by lycopene epsilo-cyclases,Proc.NatL Acad.Sci.,USA,98(5):2905-2910.
  • 3Del Villar-Martínez A.A.,García-Saucedo P.A.,Carabez-Trejo A.,Cruz-Hemández A.,and Paredes-Lópeza O.,2005,Carotenogenic gene expression and ultrastructural changes during development in marigold,J.Plant Physiol.,162 (9):1046-1056.
  • 4Dwyer J.H.,Navab M.,Dwyer K.M.,Hassan K.,Sun P.,Shircore A.,Hama-Levy S.,Hough G.,Wang X.,Drake T.,Merz C.N.,and Fogelrnan A.M.,2001,Oxygenated carotenoid lutein and progression of early atherosclerosis,Circulation,103(24):2922-2927.
  • 5Granado F.,Olmedilla B.,and Blanco L.,2003,Nutritional and clinical relevance of lutein in human health,Br.J.Nutr.,90(3):487-502.
  • 6Hirschberg J.,2001,Carotenoid biosynthesis in flowering plants,Curr.Opin.Plant Biol.,4(3):210-218.
  • 7Moehs C.P.,Tian L.,Osteryoung K.W.,and DellaPenna D.,2004,Analysis of carotenoid biosynthetic gene expression during marigold petal development,Plant Molecular Biology,45(3):281-293.
  • 8Pfaffl M.W.,2001,A new mathematical model for relative quantification in real-time RT-PCR,Nucleic Acids Res.,29(9):e45.
  • 9Pogson B.J.,and Rissler H.M.,2000,Genetic manipulation of carotenoid biosynthesis and photoprotection,Philos.Trans.R.Soc.Lond.B.Biol.Sci.,355(1402):1395-1403.
  • 10Tanaka Y.,Sasaki N.,and Ohmiya A.,2008,Biosynthesis of plant pigments:anthocyanins,betalains and carotenoids,Plant J.,54(4):733-749.

二级参考文献19

  • 1刘石泉,余庆波,李小军,路群,周根余.观赏植物花色基因工程的研究进展[J].贵州林业科技,2004,32(2):13-18. 被引量:17
  • 2Cunningham Jr FX, et al.Plant Cell, 1996,8( 9 ) : 1613-1626.
  • 3Ausich RL. Pure Appl Chem, 1997,69 : 2169-2173.
  • 4Ralley L, et al. Plant J, 2004,39 : 477-486.
  • 5Morris WL, et al. Metab Eng, 2006,8 : 253-263.
  • 6Jayaraj J, et al. Transgenic Res, 2007.
  • 7Shewmaker CK, et al. Plant J, 1999,20 :.401-412.
  • 8Duereux LJ,et al. J Exp Bot,2005,56:81-89.
  • 9Diretto G, et al. PLoS ONE, 2007,2 : e350.
  • 10Morris WL,et al. J Exp Bot,2006,57:3007-3018.

共引文献1

同被引文献59

引证文献5

二级引证文献19

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