[1]金宝霞,魏小红,朱晓林,等.番茄ERFb2转录因子的克隆、生物信息学及表达特征分析[J].北方园艺,2021,(23):1-10.[doi:10.11937/bfyy.20212435]
 JIN Baoxia,WEI Xiaohong,ZHU Xiaolin,et al.Cloning,Bioinformatics and Expression Analysis of ERFb2 Transcription Factor in Tomato[J].Northern Horticulture,2021,(23):1-10.[doi:10.11937/bfyy.20212435]
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番茄ERFb2转录因子的克隆、生物信息学及表达特征分析

参考文献/References:

[1]deCORATO U,PATRUNO L,AVELLA N,et al.Soil management under tomato-wheat rotation increases the suppressive response against Fusarium wilt and tomato shoot growth by changing the microbial composition and chemical parameters[J].Applied Soil Ecology,2020,154:103601.[2]段奥其,冯凯,刘洁霞,等.芹菜NAC转录因子基因AgNAC1的克隆及其对非生物胁迫的响应[J].园艺学报,2018,45(6):1125-1135.[3]ZHANG Y L,ZHANG C L,WANG G L,et al.Apple AP2/EREBP transcription factor MdSHINE2 confers drought resistance by regulating wax biosynthesis[J].Planta,2019,249(5):1627-1648.[4]张麒,陈静,李俐,等.植物AP2/ERF转录因子家族的研究进展[J].生物技术通报,2018,34(8):1-7.[5]LICAUSIF,TAKAGIM O,PERATAP.APETALA2/Ethylene responsive factor (AP2/ERF) transcription factors:Mediators of stress response sand developmental programs[J].New Phytologist,2013,199(3):639-649.[6]JOFUKU K D,BOERB G,OKAMURO M,et al.Control of arabidops is flower and seed development by the homeotic gene APETALA2[J].Plant Cell,1994,6(9):1211-1225.[7]SAKUMA Y,LIU Q,DU-BOUZET J G,et al.DNA binding specificity of the ERF/AP2 domain of Arabidopsis DREBs,transcription factors involved in dehydration and cold inducible gene expression[J].Biochem Biophys Res Commun,2002,290(3):998-1009.[8]乔永刚,陈亮,崔芬芬,等.基于转录组金银花AP2基因家族的生物信息学及表达分析[J].核农学报,2019,33(9):1698-1706.[9]GILMOUR S J,SEBOLT A M,SALAZAR M P,et al.Over expression of the Arabidopsis CBF3 transcriptional activator mimics multiple biochemical changes associated with cold acclimation[J].Plant Physiology,2000,124(4):1854-1865.[10]JIN W M,DONG J,HU Y L,et al.Improved cold resistant performance in transgenic grape (Vitis vinifera L.) over expressing cold inducible transcription factors AtDREB1b[J].Hortscience,2009,44:35-39.[11]OWENS C L,THOMASHOW M F,HANCOCK J F,et al.CBF1 or thologs in sour cherry and strawberry and the heterologous expression of CBF1 in strawberry[J].J Am SocHortic Sci,2002,127:489-494.[12]FENG W Q,LI J,LONG S X,et al.A DREB1 gene from zoysiagrass enhances Arabidopsis tolerance to temperature stresses without growth inhibition[J].Plant Sci,2018,278:20-31.[13]SUN J,PENG X J,FAN W H,et al.Functional analysis of BpDREB2 gene involved in salt and drought response from a woody plant Broussonetia papyrifera[J].Gene,2014,535(2):140-149.[14]JUNG H,CHUNGP J,PARK S H,et al.Overexpression of OsERF48 causes regulation of OsCML16,a calmodulin-like protein gene that enhances root growth and drought tolerance[J].Plant Biotechnol J,2017,15(10):1295-1308.[15]YU Y,YANG D,ZHOU S,et al.The ethylene response factor OsERF109 negatively affects ethylene biosynthesis and drought tolerance in rice[J].Protoplasma,2017,254(1):401-408.[16]葛廷,黄雪,谢让金.柑橘CitPG34的克隆、定位与表达分析[J].中国农业科学,2019,52(19):3404-3416.[17]陈东,范海云,高世雯,等.大蒜防御素基因AsPDF1的克隆与表达分析[J].植物生理学报,2019,55(2):177-184.[18]万雪丽,冯依,刘庆华,等.香石竹DcHsfA4基因克隆及表达特性分析[J].农业生物技术学报,2019,27(10):1751-1760.[19]丁旭,王雅慧,李彤,等.胡萝卜 DcPSY2 基因克隆及其在非生物胁迫响应中的表达分析[J].农业生物技术学报,2019,27(12):2110-2119.[20]KONG W,BENDAHMANE M,FU X,et al.Genome-wide identification and characterization of aquaporins and their role in the flower opening processes in carnation (Dianthus caryophyllus)[J].Molecules,2018,23(8):E1895.[21]ZHANG H,CAO Y,SHANG C,et al.Genome-wide characterization of GRAS family genes in Medicago truncatula reveals their evolutionary dynamics and functional diversification[J].PLoS One,2017,12(9):e0185439.[22]ZHU X,WEI X,WANG B,et al.Identification and analysis of AP2/ERF gene family in tomato under abiotic stress[J].BIOCELL,2020,44(4):777-803.[23]SHIGYO M,HASEBE M,ITO M.Molecular evolution of the AP subfamily[J].Gene,2006,366(2):256-265.[24]CUI M,ZHANG W,ZHANG Q,et al.Induced over expression of the transcription factor OsDREB2A improves drought tolerance in rice[J].Plant Physiol Biochem,2011,49:1384-1391.[25]武辉,戴海芳,张巨松,等.棉花幼苗叶片光合特性对低温胁迫及恢复处理的响应[J].植物生态学报,2014,38(10):1124-1134,[26]MIZOI J,SHINOZAKI K,YAMAGUCHI-SHINOZAKI K.AP2/ERF family transcription factors in plant abiotic stress responses[J].Biochim Biophys Acta,2012,819(2):86-96.[27]SINGHK,FOLEY R C,ONATE-SANCHEZ L.Transcription factors in plant defense and stress response[J].Current Opinion in Plant Biology,2002(5):430-436.[28]LIU Z,KONG L,ZHANG M,et al.Genome-wide identification,phylogeny,evolution and expression patterns of AP2/ERF genes and cytokinin response factors in Brassica rapa ssp.Pekinensis[J].PLoS One,2013,8(12):e83444.[29]QIN F,YOH S,LI J,et al.Cloning and functional analysis of a novel DREB1/CBF transcription factor involved in cold-responsive gene expression in Zea mays[J].Plant & Cell Physiology,2004(8):1042-1052.[30]ZHANG Z J,HUANG R F.Enhanced tolerance to freezing in tobacco and tomato overexpressing transcription factor TERF2/LeERF2 is modulated by ethylene biosynthesis[J].Plant Molecular Biology,2010,73(3):241-249.[31]PAN I,LI C W,SU R C,et al.Ectopic expression of an EAR motif deletion mutant of SlERF3 enhances tolerance to salt stress and Ralstonia solanacearum in tomato[J].Planta,2010,232(5):1075-1086.[32]ZHANG Z,HUANG R.Enhanced tolerance to freezing in tobacco and tomato over expressing transcription factor TERF2/LeERF2 is modulated by ethylene biosynthesis[J].Plant Mol Biol,2010,73(3):241-249.[33]CUI M,ZHANG W,ZHANG Q,et al.Induced over expression of the transcription factor OsDREB2A improves drought tolerance in rice[J].Plant Physiol Biochem,2011,49:1384-1391.[34]CHEN J Q,MENG X P,ZHANG Y,et al.Over expression of OsDREB genes lead to enhanced drought tolerance in rice[J].Biotechnol Lett,2008(30):2191-2198.[35]ZHANG X X,TANG Y J,MA Q B,et al.OsDREB2A.a rice transcription factor,significantly affects transgenic soybean[J].PLoS One,2013(8):e83011.[36]ZHANG G,CHEN M,LI L C,et al.Overexpression of the soybean 〖STBX〗GmERF3 〖STBZ〗gene,an AP2/ERF type transcription factor for increased tolerances to salt,drought,and diseases in transgenic tobacco[J].J Exp Bot,2009,60(13):3781-3796.

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备注/Memo

第一作者简介:金宝霞(1995-),女,硕士研究生,研究方向为樱桃番茄抗黄化曲叶病毒病。E-mail:3506451627@qq.com.责任作者:魏小红(1964-),女,博士,教授,博士生导师,现主要从事植物逆境生理与分子生理等研究工作。E-mail:weixh@gsau.edu.cn.基金项目:国家自然科学基金资助项目(32060401);甘肃省教育厅优秀研究生“创新之星”资助项目(2021CXZX-001)。收稿日期:2021-06-08

更新日期/Last Update: 2022-02-21