|本期目录/Table of Contents|

[1]欧阳艳飞,刘灵娣,孙亚倩,等.丹参SmDREB2A基因的克隆与抗盐功能鉴定[J].江苏农业科学,2025,53(4):133-141.
 Ouyang Yanfei,et al.Cloning and functional identification of SmDREB2A,a stress-resistant gene in Salvia miltiorrhiza[J].Jiangsu Agricultural Sciences,2025,53(4):133-141.
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丹参SmDREB2A基因的克隆与抗盐功能鉴定(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第53卷
期数:
2025年第4期
页码:
133-141
栏目:
耐盐碱基因
出版日期:
2025-02-20

文章信息/Info

Title:
Cloning and functional identification of SmDREB2A,a stress-resistant gene in Salvia miltiorrhiza
作者:
欧阳艳飞1刘灵娣2孙亚倩2马建军3赵双印3姜涛2
1.河北省中医药发展中心,河北石家庄 050051; 2.河北省农林科学院经济作物研究所,河北石家庄,050051; 3.新疆巴音郭楞蒙古自治州农业科学研究院,新疆巴音郭楞 841000
Author(s):
Ouyang Yanfeiet al
关键词:
丹参DREB转录因子基因克隆转基因抗性鉴定盐胁迫
Keywords:
-
分类号:
S567.5+30.1
DOI:
-
文献标志码:
A
摘要:
DREB家族基因是研究植物非生物胁迫的重要转录因子之一。利用基因克隆技术和丹参遗传转化体系对丹参SmDREB2A基因进行克隆和功能验证,同时对其进行生物信息学分析和荧光定量PCR(qRT-RCR)分析。结果表明,丹参SmDREB2A开放阅读框(ORF)全长为1 014 bp,编码氨基酸337个,等电点为5.00;丹参SmDREB2A蛋白为不稳定亲水蛋白,定位于细胞核,不存在信号肽区域及跨膜区域;丹参与紫苏亲缘关系较近。qRT-PCR分析显示,盐胁迫能显著诱导SmDREB2A基因的表达,转基因丹参抗盐性鉴定显示盐胁迫下过量表达SmDREB2A基因能够提高丹参的耐盐性。这是首次从丹参中克隆出SmDREB2A基因,获得了转基因丹参植株,验证了SmDREB2A基因参与了丹参逆境胁迫下的表达,为培育丹参抗逆品种提供了参考依据。
Abstract:
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参考文献/References:

[1]顾观光,杨鹏举. 神农本草经[M]. 2版. 北京:学苑出版社,2002.
[2]国家药典委员会. 中华人民共和国药典:一部[M]. 北京:中国医药科技出版社,2020.
[3]李翔,吴磊宏,范骁辉,等. 复方丹参方主要活性成分网络药理学研究[J]. 中国中药杂志,2011,36(21):2911-2915.
[4]单晓晓,洪帮振,刘洁,等. 丹参化学成分、药理作用、临床应用的研究进展及质量标志物的预测分析[J]. 中国中药杂志,2021,46(21):5496-5511.
[5]Lin H C,Chang W L,Chen C F. Phytochemical and pharmacological study on Salvia miltiorrhiza(Ⅵ) - cytotoxic activity of tanshinones [J]. Chin Pharmacol J,1995,47(1):77-80.
[6]Chang J Y,Chang C Y,Kuo C C,et al. Salvinal,a novel microtubule inhibitor isolated from Salvia miltiorrhizae Bunge (Danshen),with antimitotic activity in multidrug-sensitive and-resistant human tumor cells [J]. Mol Pharmacol,2004,65(1):77-84.
[7]Wang X H,Morris-Natschke S L,Lee K H. New developments in the chemistry and biology of the bioactive constituents of Tanshen [J]. Med Res Rev,2007,27(1):133-148.
[8]Ji W,Gong B Q. Hypolipidemic activity and mechanism of purified herbal extract of Salvia miltiorrhiza in hyperlipidemic rats [J]. J Ethnopharmacol,2008,119(2):291-298.
[9]Zhang J,An S J,Fu J Q,et al. Mixed aqueous extract of Salvia miltiorrhiza reduces blood pressure through inhibition of vascular remodelling and oxidative stress in spontaneously hypertensive rats [J]. Cell Physiol Biochem,2016,40(1/2):347-360.
[10]Song Q T,Zhang Y Y,Han X,et al. Potential mechanisms underlying the protective effects of salvianic acid A against atherosclerosis in vivo and vitro [J]. Biomed Pharmacother,2019,109:945-956.
[11]文峰,吴小祝,廖亮,等. WRKY转录因子在植物抗逆生理中的研究进展[J]. 广西植物,2017,37(1):68-79.
[12]谢永丽,王自章,张淑平. DREB:一类应答植物非生物逆境胁迫的转录因子[J]. 青海大学学报(自然科学版),2006,24(2):54-58.
[13]Yamaguchi-Shinozaki K,Shinozaki K. Transcriptional regulatory networks in cellular responses and tolerance to dehydration and cold stresses [J]. Annual Review of Plant Biology,2006,57(1):781-803.
[14]Zhou M L,Ma J T,Pang J F,et al. Regulation of plant stress response by dehydration responsive element binding(DREB) transcription factors [J]. African Journal of Biotechnology,2010,9(54):9255-9269.
[15]Donde R,Gupta M K,Gouda G,et al. Computational characterization of structural and functional roles of DREB1A,DREB1B and DREB1C in enhancing cold tolerance in rice plant [J]. Amino Acids,2019,51(5):839-853.
[16]Akbudak M A,Filiz E,Kontbay K. DREB2 (dehydration-responsive element-binding protion 2) type transcription factor in sorghum (Sorghum bicolor):genome-wide identification,characterization and expression profiles under cadmium and salt stresses [J]. 3 Biotech,2018,8(10):426.
[17]Zhang Z L,Li W ,Gao X M,et al. DEAR4,a member of DREB/CBF family,positively regulates leaf senescence and response to multiple stressors in Arabidopsis thaliana[J]. Frontiers in Plant Science,2020,11:367.
[18]Du X P,Li W Y,Sheng L P,et al. Over-expression of chrysanthemum CmDREB6 enhanced tolerance of chrysanthemum to heat stress [J]. BMC Plant Biology,2018,18(1):178.
[19]Yang S U,Kim H,Kim R J,et al. AP2/DREB transcription factor RAP2.4 activates cuticular wax biosynthesis in Arabidopsis leaves under drought [J]. Frontiers in Plant Science,2020,11:895.
[20]党明青,王京平,冉昆,等. 泰山海棠抗旱基因MhDRER2A的克隆与功能鉴定[J]. 沈阳农业大学学报,2022,53(4):462-468.
[21]张婷,杨永恒,孙玉明,等. 甜叶菊水分胁迫响应基因SrDREB2A克隆及表达分析[J]. 中国糖料,2022,44(4):1-7.
[22]贾鑫,曾臻,陈月,等. 月季“月月粉”RcDREB2A的克隆与表达分析[J]. 园艺学报,2022,49(9):1945-1956.
[23]罗雯,孙占敏,边佳辉,等. 转PeDRER2A和KcERF基因紫花苜蓿的表型及抗旱耐盐性[J]. 草业科学,2023,40(3):732-739.
[24]莫纪波,李大勇,张慧娟,等. ERF转录因子在植物对生物和非生物胁迫反应中的作用[J]. 植物生理学报,2011,47(12):1145-1154.
[25]王灿. 黄瓜CsHSFA1功能鉴定及DREB家族生物信息学分析[D]. 泰安:山东农业大学,2022.
[26]Dong C,Xi Y,Chen X L,et al. Genome-wide identification of AP2/EREBP in Fragaria vesca and expression pattern analysis of the FvDREB subfamily under drought stress [J]. BMC Plant Biology,2021,21(1):295.
[27]杨希文,胡银岗. 谷子DREB转录因子基因的克隆及其在干旱胁迫下的表达模式分析[J]. 干旱地区农业研究,2011,29(5):69-74.
[28]郑佳秋,王薇薇,梅燚,等. 辣椒DREB转录因子鉴定及其在涝害胁迫下的表达分析[J]. 江苏农业学报,2023,39(1):148-159.
[29]Mushtaq N,Munir F,Gul A,et al. Genome-wide analysis,identification,evolution and genomic organization of dehydration responsive element-binding (DREB) gene family in Solanum tuberosum[J]. PeerJ,2021,9(2):e11647.
[30]徐金龙,张文静,向凤宁. 植物盐胁迫诱导启动子及其顺式作用元件研究进展[J]. 植物生理学报,2021,57(4):759-766.
[31]Xue Y,Wang Y Y,Peng R H,et al. Transcription factor MdCBF1 gene increases freezing stress tolerance in transgenic Arabidopsis thaliana[J]. Biologia Plantarum,2014,58(3):499-506.
[32]Maruyama K,Sakuma Y,Kasuga M,et al. Identification of cold-inducible downstream genes of the Arabidopsis DREB1A/CBF3 transcriptional factor using two microarray systems [J]. Plant Journal,2004,38(6):982-993.

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备注/Memo

备注/Memo:
收稿日期:2024-09-18
基金项目:国家现代农业产业技术体系建设专项(编号:CARS-21);河北省科技计划(编号:22326301D);河北省重大科技支撑计划(编号:242N6402Z);新疆维吾尔自治区科技援疆计划(编号:2024E02012);新疆维吾尔自治区科技特派员农村科技创业行动项目(编号:2024KZ008)。
作者简介:欧阳艳飞(1989—),男,河北武强人,硕士,助理研究员,主要从事中药资源开发利用及分子生药学研究。E-mail:1411424695@qq.com。
通信作者:姜涛,博士,副研究员,主要从事药用植物育种等研究。E-mail:jttaojiang@163.com。
更新日期/Last Update: 2025-02-20