WANG Chong,CHENG Yu-xiang.The Expression Patterns of Arabidopsis thaliana GDPDL6 and GDPDL7 and the Subcellular Localization of GDPDL6[J].Northern Horticulture,2015,39(11):90-94.[doi:10.11937/bfyy.201511022]
AtGDPD-Like 6和AtGDPD-Like 7基因启动子表达特性及AtGDPD-Like 6蛋白定位
- Title:
- The Expression Patterns of Arabidopsis thaliana GDPDL6 and GDPDL7 and the Subcellular Localization of GDPDL6
- 文章编号:
- 1001-0009(2015)11-0090-05
- 分类号:
- Q 945
- 文献标志码:
- A
- 摘要:
- 以野生型(Col-0)拟南芥为试材,采用RT-PCR法,研究AtGDPDL6和AtGDPDL7基因组织表达特性。以ProAtGDPDL6::GUS和ProAtGDPDL7::GUS转基因拟南芥为试材,采用GUS组织化学染色法,研究AtGDPDL6和AtGDPDL7基因启动子表达模式,并以Pro35S::AtGDPDL6-GFP转基因拟南芥为试材,采用激光共聚焦显微镜进行荧光观察,研究AtGDPDL6蛋白的细胞内定位。结果表明:AtGDPDL6基因在拟南芥花组织中特异表达;AtGDPDL7基因在花和角果中特异表达。AtGDPDL6和AtGDPDL7基因特异表达在拟南芥成熟的花粉囊和柱头中。AtGDPDL6蛋白定位于细胞膜和细胞壁区域。
- Abstract:
- Using wild type (Col-0) Arabidopsis thaliana as plant materials,the expression pattern of AtGDPDL6 and AtGDPDL7 was studied by RT-PCR.Using the ProAtGDPDL6::GUS and ProAtGDPDL7::GUS transgenic plants as plant materials,the expression pattern of AtGDPDL6 and AtGDPDL7 promoter were studied by GUS activity staining.Using the Pro35S::AtGDPDL6-GFP transgenic plants as plant materials,the subcellular localization of GDPDL6 was studied by fluorescence microscopy.The results showed that AtGDPDL6 was specifically expressed in flowers,and AtGDPDL7 was expressed in flowers and siliques;ProAtGDPDL6::GUS and ProAtGDPD7::GUS were mainly expressed in mature pollen sacs and stigma;the AtGDPDL6 was localized to the plasma membrane or the cell wall.
参考文献/References:
[1]Larson T,Ehrmann M,Boos W,et al.Periplasmic glycerophosphodiester phosphodiesterase of Escherichia coli,a new enzyme of the glp regulon [J].The Journal of Biological Chemistry,1983,258(9):5428-5432.[2]Tommassen J,Eiglmeier K,Cole S,et al.Characterization of two genes,glpQ and ugpQ,encoding glycerophosphoryl diester phosphodiesterases of Escherichia coli [J].Molecuar and General Genetics,1991,226(1-2):321-327. [3]Paltauf F,Zinser E,Daum G,et al.Utilization of exogenous glycerophosphodiesters and glycerol-3-phosphate by inositol-starved yeast,Saccharomyces uvarum [J].Biochimica et Biophysica Acta,1985,835(2):322-330.[4] Van der Rest B,Boisson A,Gout E,et al.Glycerophosphocholine metabolism in higher plant cells [J].Plant Physiology,2002,130(1):244-255.[5]Lloyd-Davies K,Michell R,Coleman R,et al.Glycerylphosphorylcholine 〖JP2〗phosphodiesterase in rat liver [J].The Biochemical Journal,1972,127(2):357-368. [6]Cheng Y,Zhou W, Sheery E,et al.Characterization of the Arabidopsis glycerophosphodiester phosphodiesterase (GDPD) family reveals a role of the plastid-localized AtGDPD1 in maintaining cellular phosphate homeostasis under phosphate starvation [J].The Plant Journal,2011,66(5):781-795.[7]Jones M,Ravmond M,Smirnoff N,et al.Analysis of the root-hair morphogenesis transcriptome reveals the molecular identity of six genes with roles in root-hair development in Arabidopsis[J].The Plant Journal,2006,45(1):83-100.[8]Hayashi S,Ishii T,Matsunaga T,et al.The glycerophosphoryl diester phosphodiesterase-like proteins SHV3 and its homologs play important roles in cell wall organization [J].Plant and Cell Physiology,2008,49(10):1522-1535. [9]Clough S,Bent A.Floral dip:a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana[J].The Plant Journal,1998,16(6):735-743.[10]Springer N.Isolation of plant DNA for PCR and genotyping using organic extraction and CTAB[J].Cold Spring Harbor Protocols,2010(11):1228-1229.[11]Cole R,Fowler J.Polarized growth:maintaining focus on the tip[M].Current Opinion in Plant Biology,2006,9(6):579-588.[12]Carol R,Dolan L.Building a hair:tip growth in Arabidopsis thaliana root hairs [J].Philosophical Transactions of the Royal Society of London,2002,357(1422):815-821.[13]Feijo J,Costa S,Prado A,et al.Signalling by tips [J].Current Opinion in Plant Biology,2004,7(5):589-598.[14]Monteiro D,Castanho Coelho P,Rodrigues C,et al.Modulation of endocytosis in pollen tube growth by phosphoinositides and phospholipids [J].Protoplasma,2005,226(1-2):31-38.
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备注/Memo
第一作者简介:王崇(1989-),男,黑龙江哈尔滨人,硕士研究生,研究方向为林木遗传育种。E-mail:nefuwangchong@163.com.责任作者:程玉祥(1972-),男,教授,现主要从事树木分子遗传与育种等研究工作。E-mail:chengyuxiang@nefu.edu.cn.基金项目:国家“863”计划课题资助项目(2013AA102702)。