|本期目录/Table of Contents|

[1]李先良,赵志常,高爱平,等.芒果ANR基因的克隆及其表达分析[J].江苏农业科学,2017,45(04):22-25.
 Li Xianliang,et al.Cloning and expression analysis of ANR gene from mango (Mangifera indica)[J].Jiangsu Agricultural Sciences,2017,45(04):22-25.
点击复制

芒果ANR基因的克隆及其表达分析(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第45卷
期数:
2017年04期
页码:
22-25
栏目:
生物技术
出版日期:
2017-02-20

文章信息/Info

Title:
Cloning and expression analysis of ANR gene from mango (Mangifera indica)
作者:
李先良1赵志常23高爱平23陈业渊23黄建峰23党志国23罗睿雄23
1.荆楚理工学院生物工程学院,湖北荆门 448000; 2.中国热带农业科学院热带作物品种资源研究所/
农业部华南作物基因资源与种质创制重点开发实验室; 3.国家热带果树品种改良中心,海南儋州 571737
Author(s):
Li Xianlianget al
关键词:
芒果原花青素花青素还原酶(ANR)基因克隆表达分析
Keywords:
-
分类号:
S667.701;Q785
DOI:
-
文献标志码:
A
摘要:
花青素还原酶(anthocyanidin reductase,简称ANR)基因是植物产生原花青素的关键基因,对于研究原花青素的代谢有重要的作用。根据已经报道的ANR基因的序列设计兼并引物,采用3′cDNA末端快速扩增(3′RACE)、5′cDNA末端快速扩增(5′RACE)方法,从芒果果实内克隆到1个ANR基因,其全长cDNA序列为1 201 bp。该基因开放阅读框为1 008 bp,编码335个氨基酸,等电点为5.41,分子量为36.33 ku。对基因组扩增得到了1 810 bp长度的片段,分析发现,该基因含有5个内含子,内含子位置分别为130~646 bp、733~814 bp、1 017~1 080 bp、1 259~1 349 bp、1 563~1 651 bp。通过系统发育树分析发现,该基因编码的蛋白与可可、葡萄等果树具有较近的亲缘关系。对不同芒果品种中ANR基因的表达进行分析发现,该基因在绿色的桂七品种中表达量较高,而在红色的贵妃品种中表达量较低。
Abstract:
-

参考文献/References:

[1]Dixon R A,Xie D Y,Sharma S B. Proanthocyanidins-a final frontier in flavonoid research?[J]. The New Phytologist,2005,165(1):9-28.
[2]Bagchi D,Bagchi M,Stohs S J,et al. Free radicals and grape seed proanthocyanidin extract:importance in human health and disease prevention[J]. Toxicology,2000,148(2/3):187-197.
[3]Bagchi D,Garg A,Krohn R,et al. Oxygen free radical scavenging abilities of vitamins C and E,and a grape seed proanthocyanidin extract in vitro[J]. Research Communications in Molecular Pathology and Pharmacology,1997,95(2):179-189.
[4]潘伟彬,黄毅斌. 植物单宁及其对牧草品质的影响研究进展Ⅲ.单宁对牧草品质和反刍动物养殖的影响[J]. 热带农业科学,2008,28(4):86-92.
[5]王晨,房经贵,曹雪,等. 葡萄中原花青素的代谢[J]. 中国农学通报,2009,25(9):169-173.
[6]Deluc L,Barrieu F,Marchive C,et al. Characterization of a grapevine R2R3-MYB transcription factor that regulates the phenylpropanoid pathway[J]. Plant Physiology,2006,140(2):499-511.
[7]Liu Y,Shi Z,Maximova S,et al. Proanthocyanidin synthesis in Theobroma cacao:genes encoding anthocyanidin synthase,anthocyanidin reductase,and leucoanthocyanidin reductase[J]. BMC Plant Biology,2013,13(1):202.
[8]Shen G A,Pang Y,Wu W,et al. Isolation and characterization of a putative anthocyanidin reductase gene from Ginkgo biloba[J]. Journal of Plant Physiology,2006,163(2):224-227.
[9]Ray H,Bock C,Georges F. Faba bean:Transcriptome analysis from etiolated seedling and developing seed coat of key cultivars for synthesis of proanthocyanidins,phytate,raffinose family oligosaccharides,vicine and convicine[J]. The Plant Genome,2015,8(1):346-348.

[10]Ferraro K,Jin A L,Nguyen T D,et al. Characterization of proanthocyanidin metabolism in pea (Pisum sativum) seeds[J]. BMC Plant Biology,2014,14(1):1-17.
[11]Wang Z,Meng D,Wang A,et al. The methylation of the PcMYB10 promoter is associated with green-skinned sport in Max Red Bartlett pear[J]. Plant Physiology,2013,162(2):885-896.
[12]Tada K,Minami H,Oka Y,et al. The mango:botany,production and uses[J]. Scientia Horticulturae,1998,73(1):63-65.
[13]王家保,王令霞,刘志媛,等. 芒果DNA提取方法比较及ISSR反应体系的优化[J]. 生物技术,2005,15(5):37-41.
[14]Devic M,Guilleminot J,Debeaujon I,et al. The BANYULS gene encodes a DFR-like protein and is a marker of early seed coat development[J]. The Plant Journal,1999,19(4):387-398.
[15]Xie D,Sharma S,Dixon R. Anthocyanidin reductases from Medicago truncatula and Arabidopsis thaliana[J]. Archives of Biochemistry and Biophysics,2004,422(1):91-102.
[16]Albert S,Delseny M,Devic M. BANYULS,a novel negative regulator of flavonoid biosynthesis in the Arabidopsis seed coat[J]. The Plant Journal,1997,11(2):289-299.
[17]Lepiniec L,Debeaujon I J M,Baudry A,et al. Genetics and biochemistry of seed flavonoids[J]. Plant Biology,2006,57(57):405-430.
[18]Xie D,Sharma S,Paiva N,et al. Role of anthocyanidin reductase,encoded by BANYULS in plant flavonoid biosynthesis[J]. Science,2003,299(565):396-399.
[19]Bogs J,Downey M,Harvey J,et al. Proanthocyanidin synthesis and expression of genes encoding leucoanthocyanidin reductase and anthocyanidin reductase in developing grape berries and grapevine leaves[J]. Plant Physiology,2005,139(2):652-663.

相似文献/References:

[1]孙仓,李长权.稠李果实中原花青素的提取工艺[J].江苏农业科学,2013,41(05):279.
 Sun Cang,et al.Extraction technology of proanthocyanidin from fruits of [WTBX]Prunus padus[WTBZ] L.[J].Jiangsu Agricultural Sciences,2013,41(04):279.
[2]赵英,付海天,周俊岸,等.正交设计优化芒果SRAP-PCR反应体系及引物筛选[J].江苏农业科学,2014,42(12):41.
 Zhao Ying,et al.Optimization of mango SRAP-PCR reaction system using orthogonal design and screening of primers[J].Jiangsu Agricultural Sciences,2014,42(04):41.
[3]刘国银,于恩厂,魏军亚,等.2个芒果品种的叶片含水量与土壤水分的关系[J].江苏农业科学,2014,42(02):124.
 Liu Guoyin,et al.Relationship between soil humidity and leaf water content of two mango varieties[J].Jiangsu Agricultural Sciences,2014,42(04):124.
[4]郭利军,范鸿雁,邓会栋,等.氯吡苯脲和吲熟酯对台农1号芒果果实发育及品质的影响[J].江苏农业科学,2016,44(06):266.
 Guo Lijun,et al.Effects of CPPU and ethychlozate on growth and fruit quality of mango cultivar “Tainong No.1”[J].Jiangsu Agricultural Sciences,2016,44(04):266.
[5]张贺,许春青,贾静,等.芒果胶孢炭疽菌和尖孢炭疽菌的室内毒力测定[J].江苏农业科学,2015,43(08):128.
 Zhang He,et al.Indoor toxicity test of Colletotrichum gloeosporioides and Colletorichum acutatum from mango[J].Jiangsu Agricultural Sciences,2015,43(04):128.
[6]王赛格,蒲金基,杨永利,等.芒果新病害露水斑病病菌9种单剂间复配增效配比筛选[J].江苏农业科学,2015,43(10):191.
 Wang Saige,et al.Screening of compound synergistic ratios of 9 kinds of single agents against mango new disease pathogen[J].Jiangsu Agricultural Sciences,2015,43(04):191.
[7]李胤均,钱程,谢德芳.芒果套袋前后喷施吡虫啉·噻嗪酮农药的消解动态研究[J].江苏农业科学,2016,44(03):276.
 Li Yinjun,et al.Decline dynamics study on imidacloprid·buprofezin applied before or after bagging mango[J].Jiangsu Agricultural Sciences,2016,44(04):276.
[8]赵志常,张波,高爱平,等.芒果UFGT基因的克隆及表达分析[J].江苏农业科学,2016,44(05):31.
 Zhao Zhichang,et al.Cloning and expression analysis of UFGT genes in mango[J].Jiangsu Agricultural Sciences,2016,44(04):31.
[9]刘宽亮,赵志常,高爱平,等.芒果C4H基因的克隆及其表达分析[J].江苏农业科学,2017,45(14):8.
 Liu Kuanliang,et al.Cloning and expression analysis of C4H gene in mango (Mangifera indica)[J].Jiangsu Agricultural Sciences,2017,45(04):8.
[10]盖江涛,黄建峰,党志国,等.芒果ANS基因的鉴定及与其他植物的比较分析[J].江苏农业科学,2017,45(20):43.
 Gai Jiangtao,et al.Identification of ANS gene in Mangifera indica and its comparison analysis with other plants[J].Jiangsu Agricultural Sciences,2017,45(04):43.

备注/Memo

备注/Memo:
收稿日期:2016-01-07
基金项目:国家自然科学基金(编号:31471850);农业部热带作物种质资源保护(编号:15RZZY-07);农业部“948”计划(编号:2011-G13);湖北省荆门市科技局项目(编号:110588)。
作者简介:李先良(1976—),男,湖北武汉人,博士,副教授,研究方向为园艺植物遗传改良和分子生物学。E-mail:libusher@sina.com。
通信作者:赵志常,博士,副研究员,研究方向为热带果树遗传育种与分子生物学。E-mail:zhaozhichang2001@163.com。
更新日期/Last Update: 2017-02-20