[1]陈曦,王锐,丁国华.植物DNA甲基化研究方法及进展[J].北方园艺,2013,37(12):188-191.
 CHEN Xi,WANG Rui,DING Guo-hua.Methods and Progress on Plant DNA Methylation[J].Northern Horticulture,2013,37(12):188-191.
点击复制

植物DNA甲基化研究方法及进展

参考文献/References:

[1]Dahl C,Guldberg P.DNA methylation analysis techniques[J].Biogerontology,2003(4):233-250.
[2]孙颖,葛锋,刘迪秋,等.植物中DNA甲基化模式及其相关机制[J].植物生理学报,2011,47(8):745-751.
[3]Zhang X,Yazaki J,Sundaresan A,et al.Genome-wide high-resolution mapping and functional analysis of DNA methylation in Arabidopsis[J].Cell,2006,126:1189-1201.
[4]Suzuk M M,Bird A.DNA methylation landscapes:provocative insightsfrom epigenomics[J].Nat Rev Genet,2008(9):465-476.
[5]Zilberman D,Gehring M,Tran R K,et a1.Genomewide analysis of Arabidopsis thaliana DNA methylation uncovers an interdependence between methylation and transcription[J].Nat Genet,2007,39(1):61-69.
[6]Lu G Y,Wu X M,Chen B Y,et al.Detection of DNA methylation changes during seed germination in rapeseed[J].Chinese Sci Bull,2006,51(2):182-190.
[7]杨金兰,柳李旺,龚义勤,等.镉胁迫下萝卜基因组DNA甲基化敏感扩增多态性分析[J].植物生理与分子生物学学报,2007,33(3):219-226.
[8]赵云雷,叶武威,王俊娟,等.DNA甲基化与植物抗逆性研究进展[J].西北植物学报,2009,29(7):1479-1489.
[9]彭海,张静.胁迫与植物DNA甲基化育种中的潜在应用与挑战[J].自然科学进展,2009,190(3):248-256.
[10]宋欣欣,刘宝.低氮水平下诱导的水稻DNA甲基化变异[D].长春:东北师范大学,2009.
[11]王子成,马洪霞,何艳霞.重金属镉对拟南芥DNA甲基化的影响[J].植物生理学通讯,2009,45(2):115-118. [12]高桂珍,应菲,陈碧云,等.热胁迫过程中白菜型油菜种子DNA的甲基化[J].作物学报,2011,37(9):1597-1604.[13]潘雅姣,傅彬英,王迪,等.水稻干旱胁迫诱导DNA甲基化时空变化特征分析[J].中国农业科学,2009,42(9):3009-3018.
[14]Waddington C H.Canalization of development and the inheritance of acquired  characters[J].Nature,1942,150:563-565.
[15]Habu Y M,Mathieu O,Tariq M,et al.Epigenetic regulation of transcription in intermediate heterochromatin[J].EMBO Rep,2006,7(12):1279-1284.
[16]Wang M B,Dennis E S.SPT5-like,a new component in plant[J].EMBO Rep,2009,10(6):573-575.
[17]Law J A,Jacobson S E.Establishing,maintaining and modifying DNA methylation patterns in plants and animals[J].Nature,2011(11):204-220.
[18]Boyko A,Kathiria P,Zemp F J,et al.Transgenerational changes in the genome stability and methylation inpathogen-infected plants:Virus-induced plant genome instability[J].Nucleic Acids Research,2007,35(5):1714-1725.
[19]Peng H,Zhang J.Plant genomic DNA methylation in response tostresses:Potential applications and challenges in plant breeding[J].Progress in Natural Science,2009,14(4):265-271.
[20]Dong X.Genetic dissection of systemic acquired resistance[J].Current Opinion in Plant Biology,2001(4):309-314.
[21]Tian Tian,Wang S R,WU J G,et al.Advances in methodology of DNA methylation assay[J].Science China Chemistry,2011,54(8):1233-1243.
[22]Yan S,Huang R,Zhou Y,et al.Aptamer-based turn-on fluorescent four-branched quaternary ammonium pyrazine probe for selective thrombin detection[J].Chem Commun,2011,47:1273-1275. [23]Feng X,Duan X,Liu L,et al.Cationic conjugated polyelectrolyte molecular beacon complex for sensitive,sequencespecific,realtime DNA detection[J].Langmuir,2008,24:12138-12141.
[24]Feng F,Wang H,Han L,et al.Fluorescent conjugated polyelectrolyte as an indicator for convenient detection of DNA methylation[J].Jam Chem Soc,2008,130:11338-11343.
[25]Bareyt S,Carell T.Selective detection of 5-methylcytosine sites in DNA[J].Angew Chem Int Ed Engl,2008,47:181-184.
[26]Nomura A,Tainaka K,Okamoto A.Osmium complexation of mismatched DNA:effect of the bases adjacent to mismatched 5-methylcytosine[J].Bioconjug Chem,2009,20:603-607.
[27]Okamoto A.5-methylcytosine-selective osmium oxidation[J].Nucleosides Nucleo-tides Nucleic Acids,2007,26:1601-1604.
[28]Okamoto A.Chemical approach toward efficient DNA methylation analysis[J].Org Biomol Chem,2009(7):21-26.
[29]Yamada H,Tanabe K,Nishimoto S.Photocurrent response after enzymatic treatment of DNA duplexes immobilized on gold electrodes:electrochemical discrimination of 5-methylcytosine modification in DNA[J].Org Biomol Chem,2008(6):272-277.
[30]Armstrong K M,Bermingham E N,Bassett S A,et al.Global DNA methylation measurement by HPLC using low amounts of DNA[J].Biotechnol,2010(6):113-117.
[31]Zhang J J,Zhang L,Zhou K,et al.Analysis of global DNA methylation by hydrophilic interaction ultra high-performance liquid chromatography  tandem mass spectrometry [J].Anal Biochem,2011,413:164-170.
[32]Shi X,Tang C,Zhou D,et al.Multiplex detection of CpG methylation using microarray combining with target-selectionpadlock probe[J].Clin Chim Acta,2010,411:1187-1194.
[33]Kelkar A,Deobagkar D.A novel method to assess the full genome methylation profile using monoclonal antibody combined with the high throughput based microarray approach[J].Epigenetics,2009(4):415-420.
[34]张莉,贾峰,张广乐,等.植物DNA甲基化研究进展[J].安徽农业科学,2012,40(6):3218-3221.
[35]Johnston J W,Harding K,Bremner D H,et al.HPLC analysis of plant DNA methylation:a study of critical methodological factors[J].Plant Physiol Biochem,2005,43:844-853.
[36]Xu M,Li X,Korban S S.AFLP-based detection of DNA methyhtion[J].Plant Mol Bioi Rep,2000,18:361-368.
[37]Herman J G,Graff J R.Methylation-specific PCR:A novel PCR assay for methylation status of CpG islands[J].Proc Natl Acad Sci,1996,93:9821-9826.
[38]吴春太,李维国,高新生,等.MSAP技术及其在橡胶树遗传育种研究中的应用前景[J].贵州农业科学,2009,37(11):9-14.
[39]Ashikawa.Surveying CpG methylation at 5′-CCGG in the genomes of rice cultivars[J].Plant Mol Biol,2001,45:31-39.
[40]张燕,陈波.DNA甲基化敏感扩增多态性技术及其在作物遗传研究中的应用[J].西昌学院学报,2009,23(4):7-11.
[41]郑鑫,马晓岗,迟德钊,等.高活力水稻种子萌发过程中DNA甲基化变化的MSAP分析[J].青海大学学报,2009,27(9):18-21.
[42]Liu B,Brubaker C L,Mergeai G,et al.Polyploid formation in cotton is not accompanied by rapid genomic changes[J].Genome,2001,44:321-330.
[43]Xu M,Li X,Korban S S.AFLP-based detection of DNA methylation[J].Plant Mol Biol Rep,2000,18:361-368.
[44]Cervera M T,Ruiz-Garcia L,Martinez-Zapater J M.Analysis of DNA methylation in Arabidopsis thaliana based onmethylation-sensitive AFLP markers[J].Mol Genet Genomics,2002,268:543-552.
[45]Peraza-Echeverria S,Herrera-Valencia V A,Kay A.Detection of DNA methylation changes in micropropagated banana plants using methylation-sensitive amplification polymerphism[J].Plant Sci,2001,161:359-367.
[46]Matthes M,Singh R,Cheah S C,et al.Variation in oil palm tissue culture-derived regenerants revealed by AFLPs with methylation-sensitive enzymes[J].Theor Appl Genet,2001,102:971-979.
[47]Joyce S M,Cassells A C.Variation in potato microplantmorphology in vitro and DNA methylation[J].Plant Cell Tiss,2002,70:125-137.
[48]付胜杰,王晖,冯丽娜,等,叶锈菌胁迫下的小麦基因组MSAP分析[J].遗传,2009,31(3):297-304.
[49]王春国,古瑜,陈成彬,等,不同倍性西瓜基因组DNA甲基化水平与模式的MSAP分析[J].分子细胞生物学报,2009,42(2):119-126.

相似文献/References:

[1]吴 超,丁晓瑜,黎 侠,等.东方百合“Siberia”基因组DNA提取方法比较研究[J].北方园艺,2014,38(02):108.
 WU Chao,DING Xiao-yu,LI Xia,et al.Comparative Study on Genomic DNA Extraction Methods From the Oriental Lily ‘Siberia’[J].Northern Horticulture,2014,38(12):108.
[2]石开明,邓志军,方响亮.贡水白柚基因组DNA提取方法研究[J].北方园艺,2014,38(21):97.
 SHI Kai-ming,DENG Zhi-jun,FANG Xiang-liang.Study on Extraction of Genome DNA in Gongshui Pomelo[J].Northern Horticulture,2014,38(12):97.
[3]杨卫民,杜京旗,赵君,等.ABA、H2O2与NO供体硝普钠对基因表达以及枣果发育的影响[J].北方园艺,2015,39(07):90.[doi:10.11937/bfyy.201507027]
 YANG Wei-min,DU Jing-qi,ZHAO Jun,et al.Effect of ABA,H2O2 and NO Donor SNP on the Gene Expression and Development of Jujube Fruit[J].Northern Horticulture,2015,39(12):90.[doi:10.11937/bfyy.201507027]

备注/Memo

第一作者简介:陈曦(1987-),女,黑龙江哈尔滨人,硕士研究生,研究方向为植物学分子生物学。E-mail:water_drinkme@163.com.’
责任作者:丁国华(1963-),男,山东梁山人,教授,研究方向为植物分子生物学。E-mail:hsdddgh@hrbnu.edu.cn.
基金项目:国家自然科学基金重点资助项目(30830027);黑龙江省高校科技创新团队研究计划资助项目(KJTD-2011-2);哈尔滨师范大学科技发展预研计划资助项目。
收稿日期:2013-01-04

更新日期/Last Update: 2014-08-20