[1]董思言,孙备,李建东,等.微卫星分子标记在野生大豆遗传多样性研究中的应用[J].大豆科学,2008,27(01):145-149,157.[doi:10.11861/j.issn.1000-9841.2008.01.0145]
 DONG Si-yan,SUN Bei,LI Jian-dong,et al.Application of Microsatellite Molecular Marker in the Genetic Diversity of Glycine soja[J].Soybean Science,2008,27(01):145-149,157.[doi:10.11861/j.issn.1000-9841.2008.01.0145]
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微卫星分子标记在野生大豆遗传多样性研究中的应用

参考文献/References:

[1]Bell C J,and Ecker J R.1994.Assignment of 30 microsatellite loci to the linkage map of Arabidopsis thaliana.Genomics,19:137-144

[2]Chen L Z,ed.1993.China’s biodiversity status and Conservation Strategies.Science Press,China,Beijing,pp.99-113(陈灵芝,主编.1993.中国的生物多样性现状及其保护对策.科学出版社,中国,北京,pp.99-113)
[3]Colson I,Macdonald S J,and Goldstein D B.1999.Microsatellite markers for interspecific mapping of Drosophila stimulants and D.sechellia.Molecular Ecology,8(11):1951-1955.
[4]Guan R X,Liu X M,Chang R Z,Ning H X,Yuan C P,Liu Z X,and Qiu L J.2006.Genetic diversity analysis of wild soybean(Glycine soja Sieb.&Zucc.)from in-situ conserved population in Xinbin county of Liaoning province.High-tech communications,16(1):67-72(关荣霞,刘秀敏,常汝镇,宁慧霞,袁翠平,刘章雄,邱丽娟.2006.辽宁新宾显原位保护区野生大豆(G.soja Sieb.& Zucc.)遗传多样性分析.高技术通讯,16(1):67-72)
[5]Hai L,Wang K J,and Yang K.2002.Genetic diversity of semi-wild soybean using SSR markers.Northwest Plant Journal,22(4):751-757(海林,王克晶,杨凯.2002.半野生大豆种质资源SSR位点遗传多样性分析.西北植物学报,22(4):751-757)
[6]Hu Z H,and Zhou Z G.2006.Microsatellite DNA marker technique and its application to the genetic of marine organisms.Transactions of Oenology and Limnology,(1):37-45(胡则辉,周志刚.2006.微卫星DNA标记技术及其在海洋生物遗传学中的应用.海洋湖沼通报,(1):37-45)
[7]Huenneke L F.1991.Ecological implications of genetic variation in plant populations In:Falk D A and K E Holsinger(eds).Genetics and conservation of rare plants.Oxford University Press,New York,pp.31-44
[8]Jia J Z.1996.Molecular germplasm diagnostics and molecular marker assisted breeding.Scientia Agricultura Sinica,29(4):1-10(贾继增.1996.分子标记种质资源鉴定和分子标记育种.中国农业科学,29(4):1-10)
[9]Jin Y,Zhang W J,Fu D X,and Lu B R.2003.Sampling strategy within a wild soybean population based on its genetic variation detected by ISSR marker.Acta Botanica Sinica,45(8): 995-1002
[10]Kuroda Y,Kaga A,Tomooka N,and Vaughan D A.2006.Population genetic structure of Japanese wild soybean(Glycine soja)based on microsatellite variation.Molecular Ecology,15: 959-974
[11]Li R Y.1999.A simple sequence repeat(SSR)and its application in crop research.Shangdong Agricultural Sciences,(4):45-49(李汝玉.1999.简单序列重复(SSR)及其在农作物研究的应用.山东农业科学,(4):45-49)
[12]Li X H,Tian Z G,and Li F S.2003.Genetic analysis of newly collected wild soybean materials and conserved germplasm collected from the same places.Journal of Plant Genetic Resources,4(4):345-349(李向华,田子罡,李福山.2003.新考察收集野生大豆与已保存野生大豆的遗传多样性比较.植物遗传资源学报,4(4):345-349)
[13]Liu F,Dong F Y,Zhou J J,Xu S Y,and Zhuang B C.2000.Soybean germplasm diversity and genetic variance detected by microsatellite Markers.Acta Genetica Sinica,27(7):628-633(刘峰,东方阳,邹继军,陈受宜,庄炳昌.2000.应用SSR进行大豆种质多样性和遗传变异性分析.遗传学报,27(7):628-633)
[14]Maughan P J,Saghai-Maroof M A,and Buss G R.1995.Microsatellite and amplified fragment length polymorphisms in cultivated and wild soybean.Genome,38:715-723
[15]Parker P G,Snow A A,Schug M D,Booton G C,and Fuerst P A.1998.What molecules can tell us about populations: choosing and using a molecular marker.Ecology,79:361-382
[16]Powell W,Morgante M,and Andre C.1999.The comparison of RFLP,RAPD and SSR(microsatellite)markers for germplasm analysis.Molecular Breeding,2:225-238
[17]Powell W,Morgante M,Doyle J J,McNicol J W,Tingey S V,and Rafalski A J.1996.Genepool variation in genus Glycine subgenus-Soja-revealed by polymorphic nuclear and chloroplast microsatellites.Genetics,144(2):793-803
[18]Rongwen J,Akkaya M S,Bhagwat A A,Lavi U,and Cregan P B.1995.The use of micro satellite DNA markers for soybean genotype identification.Theoretical and Applied Genetics,90(1): 43-48
[19]Schaal B A,Leverich W J,and Rogstad S H.1991.Comparison of methods for assessing genetic variation in plant conservation biology In Falk D A.,and Holsinger K E(eds.).Genetics and Conservation of Rare Plants.New York,Oxford University Press,pp.123-134
[20]Song Q J.1999.A review of development and application of simple sequence repeat(SSR)in soybean.Soybean Science,18(3):248-254(宋启建.1999.大豆SSR分子标记的创制及其应用.大豆科学,18(3):248-254)
[21]Wang B, and Qiu L J.2002.Current advance of simple sequence repeats in soybean.Chinese Bulletin of Botany,19(1):44-48(王彪,邱丽娟.2002.大豆SSR技术研究进展.植物学通报,19(1):44-48)
[22]Weber JL,and May P E.1989.Abundant class of human DNA polymorphism which can be typed using the polymerize chain reaction.Genetics,(44):388-396
[23]Wu J J.20〖05.The usage of microsatellite molecular marking in soybean.System Science and Comprehensive Studies in Agriculture.21(1):16-19(吴俊江.2005.微卫星分子标记在大豆中的应用.农业系统科学与综合研究,21(1):16-19)
[24]Wu X L,He C Y,Chen S Y,Zhuang B C,Wang K J,and Wang X C.2001.SSR markers with a soybean genetic evolutionary relationships between species.Journal of Genetics and Genomics,28(4):359-366(吴晓雷,贺超英,陈受宜,庄炳昌,王克晶,王学臣.2001.用SSR分子标记研究大豆属种间亲缘进化关系.遗传学报,28(4):359-366)
[25]XiongL Z,Wang S P,Liu K D,Dai X K,SaghaiMaroof M A,Hu J G,and Zhang Q F.1998.Distribution of simple sequence repeat and AFLP markers in molecular linkage map of rice.Plant Journal,40(7):605-614(熊立仲,王石平,刘克德,戴先凯,SaghaiMaroof M A,胡锦国,张启发.1998.微卫星DNA和AFLP标记在水稻分子标记连锁图上的分布.植物学报,40(7):605-614)
[26] Xu D H,Abe J,Gai J,Shimamoto Y.2002.Diversity of chloroplast DNA SSRs in wild and cultivated soybeans: evidence for multiple origins of cultivated soybean.Theoretical and applied Genetics,105: 645-653
[27]Xu L,and Zhao G F.2002.Microsatellite DNA marker and its application in genetic diversity research.Acta Botanica Boreali-Occidentalia Sinica,22(3):714-722(徐莉,赵桂仿.2002.微卫星DNA标记技术及其在遗传多样性研究中的应用.西北植物学报,22(3):714-722)
[28]28Xu Z Y,Qiu L J,Chang R Z,Li X H,Zheng C M,Liu L H,and Guo P.1999.Using SSR markers to evaluate genetic diversity of soybean in China.ScientiaAgricultura Sinica.32(Supplement):40-48(许占友,邱丽娟,常汝镇,李向华,郑翠明,刘立宏,郭蓓.1999.利用SSR标记鉴定大豆种质.中国农业科学,32(增刊):40-48)
[29]Zhang Y M,Huang Y,Shi X W,and Liu C A.2006.Application of microsatellite markers in the genetic diversity of goats.Journal of Yunnan Agricultural university,21(2):217-221(张玉梅,黄英,史宪伟,刘朝安.2006.微卫星标记在山羊遗传多样性研究中的应用.云南农业大学学报,21(2):217-221)
[30]Zhao H K,Wang Y M,Li Q Y,Zhang M,and Zhuang B C.2001.SSR analysis of wild soybean(G.soja)and cultivated soybean from different latitude in China.Soybean Science,20(3):172-176(赵洪锟,王玉民,李启云,张明,庄炳昌.2001.中国不同纬度野生大豆和栽培大豆SSR分析.大豆科学,20(3):172-176)
[31]Zhao L M, Dong Y S,Liu B,Hao S,Wang K J,and Li X H.2005.China’s one-year-old wild soybean(Glycinesoja)construction of core resources.Chinese Science Bulletin,50(10):992-999(赵丽梅,董英山,刘宝,郝水,王克晶,李向华.2005.中国一年生野生大豆(Glycine soja)核心资源构建.科学通报,50(10):992-999)
[32]Zhou X F,Zhuang B C,Wang Y M,and Zhao H K.2002.Population differentiation of wild soybean based on the RAPD and SSR analysis.Chinese Journal of Eco-Agriculture,10(4):6-10(周晓馥,庄炳昌,王玉民,赵洪琨.2002.利用RAPD与SSR技术进行野生大豆种群内分化的研究.中国生态农业学报,10(4):6-10)
[33]Zhou Y Q.2005.DNA molecular marker technology in the study of plant.Chemical Industry Press,China,Beijing(周延清.2005.DNA分子标记技术在植物研究中的应用.化学工业出版社,中国,北京)
[34]Zhu W Y,Zhou T Y,Zhong M,and Lu B R.2006.Sampling strategy for wild soybean(Glycine soja)populations based on their genetic diversity and fine-scale spatial genetic structure.Journal of Fudan University(Natural Science),45(3):321-327(朱维岳,周桃英,钟明,卢宝荣.2006.基于遗传多样性和空间遗传结构的野生大豆居群采样策略.复旦学报(自然科学版),45(3):321-327)
[35]Zhuang B C.1999.Researches on wild soybean(Glycine soja)in China for twenty years.Journal of Jilin Agricultural Sciences,24(5):3-10(庄炳昌.1999.中国野生大豆研究二十年.吉林农业科学,24(5):3-10)
[36]Zhuang B C.2000.Genetic diversity of wild soybean(G.soja)in China and character of QTL location.Thesis for Ph D,Dissertation of China Agricultural University,Supervisor:Wang X K(庄炳昌.2000.中国野生大豆的遗传多样性及品质性状的QTL定位,北京:中国农业大学,导师:王象坤)

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备注/Memo

作者简介:董思言(1982-),男,在读硕士,从事野生大豆遗传多样性研究。

通讯作者(Corresponding author):李建东, 教授。

更新日期/Last Update: 2014-10-09