|Table of Contents|

Cloning and Transformation of NCED4 Gene from Arabidopsis thaliana(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2014年17期
Page:
105-110
Research Field:
Publishing date:

Info

Title:
Cloning and Transformation of NCED4 Gene from Arabidopsis thaliana
Author(s):
GUO TaoCHAO Yue-hui2YANG Qing-chuan2JIN Hong1ZHANG Tie-jun2KANG Jun-mei2
1.Collefe of Ecology and Environment,Inner Mongolia Agricultural University,Huhhot,Inner Mongolia 010019;
2. Beijing Institute of Animal Husbandry and Veterinary,Chinese Academy of Agricultural Sciences,Beijing 100193
Keywords:
Arabidopsis thalianaNCED4abscisic acidtranformation
PACS:
Q943.2
DOI:
-
Abstract:
Taking Arabidopsis thaliana as material,a gene which was named as NCED4was cloned by PCR technique.NCED4 gene was inserted into plasmid and resulting a plant expressing vector pBI-NCED4 with DNA recombination technology.Transgenic Arabidopsis plants with kanamycin resistance were obtained finally,and this were the basis of researching that the effect of NCED4 gene overexpression on plant.The results showed that,PCR and Real Time RT-PCR analysis of 4 kanamycin resistant plants showed that the target gene was inserted into the genomes of the Arabidopsis thaliana and NCED4 gene was over-expressed in transgenic Arabidopsis successfully;the expression levels of NCED4 genes were changed obviously when exogenous hormones were added,and these results showed that NCED4 gene may play an important role in hormone biosynthesis and regulation.

References:

[1]Da Silva E A,Peter E T,Andre A M,et al.ABA inhibits embryo cell expansion and early cell division events during coffee (Coffea arabica ‘Rubi’) seed germination[J].Annals of Botany,2008,102(3):425-433.

[2]Sarath G,Hou G,Baird L M,et al.ABA,ROS and NO are key players during switchgrass seed germination[J].Plant Signal Behav,2007,2(6):492-493.
[3]Shinozaki K,Yamaguchi-Shinozaki K.Plant genes induced by drought stress and ABA[J].Tanpakushitsu Kakusan Koso,1992,37(7):1190-1199.
[4]Li Y,Pan H C,Li D Q.Responses of ABA and CTK to soil drought in leafless and leafy apple tree[J].Journal of Zhejiang University Science,2003,4(1):101-108.
[5]Ricardo A,Maria del M A,Paolo V,et al.Plant responses to drought stress and exogenous ABA application are modulated differently by mycorrhization in tomato and an ABA-deficient mutant (sitiens) [J].Microb Ecol,2008,56(4):704-719.
[6]Seo M,Koshiba T.Complex regulation of ABA biosynthesis in plants[J].Trends in Plant Science,2002,7:41-48.
[7]Yang J,Guo Z.Cloning of a 9-cis-epoxycarotenoid dioxygenase gene (SgNCED1) from Stylosanthes guianensis and its expression to abiotic stresses[J].Plant Cell Reports,2007,26:1383-1390.
[8]Lefebvre V,North H,Frey A,et al.North,Functional analysis of ArabidopsisNCED6 and NCED9 ?genes indicates that ABA synthesized in the endosperm is involed in the induction of seed dormancy[J].The Plant Journal,2006,45:309-319.
[9]魏开发,贾文锁,林子英,等.NCED3基因雌二醇诱导表达对ABA合成酶基因和代谢酶基因表达的影响[J].湖北民族学院学报(自然科学版),2009,27(1):70-80.
[10]朱国辉,徐慰盈,吴丹,等.拟南芥ABA生物合成基因NCED6对葡萄糖诱导其种子萌发延迟的作用[J].植物生理学通讯,2010,46(2):139-142.
[11]Frey A,Effroy D,Lefebvre V.Epoxycarotenoid cleavage by NCED5 fine-tunes ABA accumulation and affects seed dormancy and drought tolerance with other NCED family members[J].Plant Journal,2012,70(3):501-512.
[12]Iuchi S,Kobayashi M.Regulation of drought tolerance by gene manipulation of 9-cis-epoxycarotenoid dioxygenase,a key enzyme in abscisic acid biosynthesis in Arabidopsis[J].Plant Journal,2001,27,325-333.
[13]Huo H,Dahal P,Kunusoth K,et al.Expression of 9-cis-EpoxyCarotenoid Dioxygenase4 is essential for Thermoinhibition of lettuce seed germination but not for seed development or stress tolerance[J].Plant Cell,2013,25(3):884-900.
[14]程强,张新叶,黄敏仁.实时定量RT-PCR技术及在植物基因表达分析中的应用[J].中国生物工程杂志,2005,S1,82-86.
[15]Zhang M,Leng P,Zhang G,et al.Cloning and functional analysis of 9-cis-epoxycarotenoid dioxygenase (NCED) genes encoding a key enzyme during abscisic acid biosynthesis from peach and grape fruits[J].Journal of Plant Physiology,2009,166(12):1241-1252.
[16]朱海生,李永平,花秀凤,等.草莓9-顺式-换杨磊胡萝卜素双加氧酶基因FaNCED的克隆及表达分析[J].园艺学报,2012,39(1):40-48.
[17]王晓庆,张超,王彦杰,等.牡丹NCED基因的克隆和表达分析[J].园艺学报,2012,39(10):2033-2034.
[18]迟晓雪,孙洁峰,方程.结缕草种子中NCED基因和CYP707A基因的克隆及其克隆及其表达动态[J].草地学报,2012,20(1):146-147.
[19]万小荣,莫爱琼,潘家辉,等.拟南芥AtNCED2基因启动子区域序列克隆及其活性分析[J].生物技术,2010,20(6):18-23.
[20]贾娟娟,孟秀萍,刘蕊,等.拟南芥NCED3基因在水稻中的过量表达可以提高水稻的干旱胁迫耐受性[J].复旦学报(自然科学版),2008,47(3):288-294.
[21]于奎军,许志斌,李新,等.玉米NCED基因的序列特征及生物信息学分析[J].宁夏农林科技,2010(5):14-17.
[22]张怡,康俊梅,杨青川,等.紫花苜蓿MsPOD基因的克隆及对拟南芥的转化[J].中国草地学报,2013,35(3):6-10.
[23]陆平,田跃胜,王名雪,等.枸杞脱落酸生物合成关键酶基因NCED的克隆及表达分析[J].植物遗传资源学报,2013,14(2):303-310.
[24]李康,聂小军,方桂英,等.普通小麦及其近缘种NCED基因的克隆及其表达分析[J].西北农业学报,2010,19(6):55-59.

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Last Update: 2014-09-26