[1]冯鹏,周港华,王鹤萌,等.植物卵形家族蛋白综述[J].北方园艺,2018,42(03):173-179.[doi:10.11937/bfyy.20173223]
 FENG Peng,ZHOU Ganghua,WANG Hemeng,et al.Review of Plant OVATE Family Protein[J].Northern Horticulture,2018,42(03):173-179.[doi:10.11937/bfyy.20173223]
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植物卵形家族蛋白综述

参考文献/References:

[1]HENDRICK U P,BOOTH N O.Mendelian characters in tomatoes[J].Proc Am Soc Hortic Sci,1907(5):19-24.

[2]LINDSTROM E W.Linkage of size,shape and color genes in Lycopersicum[J].Verh 5th Int Kong Vererb Ber,1928(2):1031-1057.
[3]KU H M,DOGANLAR S,CHEN K Y,et al.The genetic basis of pear-shaped tomato fruit[J].Theoretical & Applied Genetics,1999,99(5):844-850.
[4]LIU J,VAN E J,CONG B,et al.A new class of regulatory genes underlying the cause of pear-shaped tomato fruit[J].Proceedings of the National Academy of Sciences of the United States of America,2002,99(20):13302-13306.
[5]HACKBUSCH J,RICHTER K,MLLER J,et al.A central role of Arabidopsis thaliana ovate family proteins in networking and subcellular localization of 3-aa loop extension homeodomain proteins[J].Proceedings of the National Academy of Sciences of the United States of America,2005,102(13):4908-4912.
[6]WANG S,CHANG Y,GUO J,et al.Arabidopsis ovate family proteins,a novel transcriptional repressor family,control multiple aspects of plant growth and development[J].PLoS One,2011,6(8):23896.
[7]WANG S,CHANG Y,GUO J,et al.Arabidopsis ovate family protein 1 is a transcriptional repressor that suppresses cell elongation[J].Plant Journal for Cell & Molecular Biology,2007,50(5):858-872.
[8]PAGNUSSAT G C,YU H J,SUNDARESAN V.Cell-fate switch of synergid to egg cell in Arabidopsis eostre mutant embryo sacs arises from misexpression of the [STBX]BEL1-like homeodomain gene [STBX]BLH1[J].Plant Cell,2007,19(11):3578.
[9]LI E,WANG S,LIU Y,et al.OVATE family protein 4 (OFP4) interaction with KNAT7 regulates secondary cell wall formation in Arabidopsis thaliana[J].Plant Journal for Cell & Molecular Biology,2011,67(2):328-341.
[10]GUI B,WANG Y,WU H,et al.Cloning and sequence analysis of ovate orthologous gene in tobacco (Nicotiana tabacum L.)[J].Plant Physiology Communications,2007,43:1050-1056.
[11]RODRGUEZ G R,MUOS S,ANDERSON C,et al.Distribution of SUN,OVATE,LC,and FAS in the tomato germplasm and the relationship to fruit shape diversity[J].Plant Physiology,2011,156(1):275-285.
[12]TSABALLA A,PASENTSIS K,DARZENTAS N,et al.Multiple evidence for the role of an Ovate-like gene in determining fruit shape in pepper[J].BMC Plant Biology,2011,11(1):46.
[13]HUANG Z,HOUTEN J V,GONZALEZ G,et al.Genome-wide identification,phylogeny and expression analysis of SUN,OFP,and YABBY,gene family in tomato[J].Molecular Genetics & Genomics,2013,288(3-4):111-129.
[14]LIU D,SUN W,YUAN Y,et al.Phylogenetic analyses provide the first insights into the evolution of OVATE family proteins in land plants[J].Ann Bot,2014,113(7):1219-1233.
[15]袁月,张亚光,高世敏,等.葡萄OVATE基因家族生物信息学及表达[J].中国农业科学,2016,49(19):3786-3797.
[16]YU H,JIANG W,LIU Q,et al.Expression pattern and subcellular localization of the ovate protein family in rice[J].PLoS One,2015,10(3):e0118966.
[17]MONFORTE A J,DIAZ A,CAODELGADO A,et al.The genetic basis of fruit morphology in horticultural crops:Lessons from tomato and melon[J].Journal of Experimental Botany,2014,65(16):4625.
[18]AZZI L,DELUCHE C,GVAUDANT F,et al.Fruit growth-related genes in tomato[J].Journal of Experimental Botany,2015,66(4):1075.
[19]WANG L,LI J,ZHAO J,et al.Evolutionary developmental genetics of fruit morphological variation within the Solanaceae[J].Frontiers in Plant Science,2015(6):248.
[20]WU S,CLEVENGER J P,SUN L,et al.The control of tomato fruit elongation orchestrated by sun,ovate,and fs8.1,in a wild relative of tomato[J].Plant Science an International Journal of Experimental Plant Biology,2015,238(1):95.
[21]LIU J,ZHANG J,HU W,et al.Banana ovate family protein MaOFP1 and MADS-box protein MuMADS1 antagonistically regulated banana fruit ripening[J].PLoS One,2015,10(4):e0123870.
[22]LIU Y,DOUGLAS C J.A role for OVATE family protein1 (OFP1) and OFP4 in a BLH6-KNAT7 multi-protein complex regulating secondary cell wall formation in Arabidopsis thaliana[J].Plant Signaling & Behavior,2015,10(7):e1033126.
[23]BROWN D M,ZEEF L A,ELLIS J,et al.Identification of novel genes in Arabidopsis involved in secondary cell wall formation using expression profiling and reverse genetics[J].Plant Cell,2005,17(8):2281-2295.
[24]WANG Y K,CHANG W C,LIU P F,et al.Ovate family protein 1 as a plant Ku70 interacting protein involved in DNA double-strand break repair[J].Plant Molecular Biology,2010,74(4-5):453-466.
[25]OHTA M,MATSUI K,HIRATSU K,et al.Repression domains of class II ERF transcriptional repressors share an essential motif for active repression[J].Plant Cell,2001,13(8):1959.
[26]HIRATSU K,MATSUI K,KOYAMA T,et al.Dominant repression of target genes by chimeric repressors that include the EAR motif,a repression domain,in Arabidopsis[J].Plant Journal for Cell & Molecular Biology,2003,34(5):733.
[27]TIWARI S B,HAGEN G,GUILFOYLE T J.Aux/IAA proteins contain a potent transcriptional repression domain[J].Plant Cell,2004,16(2):533-543.
[28]BOREVITZ J O,XIA Y,BLOUNT J,et al.Activation tagging identifies a conserved MYB regulator of phenylpropanoid biosynthesis[J].Plant Cell,2000,12(12):2383-2394.
[29]BHARGAVA A,AHAD A,WANG S,et al.The interacting MYB75 and KNAT7 transcription factions modulate secondary cell wall deposition both in stem sand seed coat in Arabidopsis[J].Planta,2013,237:1199-1211.
[30]ZHANG L,ZHANG X,JU H,et al.OVATE family protein1 interaction with BLH3 regulates transition timing from vegetative to reproductive phase in Arabidopsis[J].Biochemical & Biophysical Research Communications,2016,470(3):492-497.
[31]GONG S Y,HUANG G Q,SUN X,et al.Cotton KNL1,encoding a class II KNOX transcription factor,is involved in regulation of fibre development[J].Journal of Experimental Botany,2014,65(15):4133.
[32]MA Y,YANG C,HE Y,et al.Rice OVATE family protein 6 regulates plant development and confers resistance to drought and cold stresses[J].Journal of Experimental Botany,2017,68(17):4885-4898.

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备注/Memo

第一作者简介:冯鹏(1994-),男,硕士研究生,研究方向为植物资源学与分子生物学。E-mail:2510691499@qq.com.

责任作者:常缨(1970-),女,博士,教授,博士生导师,研究方向为植物资源学和分子生物学。E-mail:changyingnew@163.com.
基金项目:国家自然科学基金资助项目(31370221)。
收稿日期:2017-09-30

更新日期/Last Update: 2018-02-09