水稻品种对条纹叶枯病抗性遗传的研究
详细信息    本馆镜像全文|  推荐本文 |  |   获取CNKI官网全文
摘要
本研究通过选取江苏省主栽粳稻品种,鉴定其对条纹叶枯的抗性,并通过SSR标记对抗条纹叶枯基因进行定位,研究结果如下:
     1.选用江苏生产推广使用的粳稻品种镇稻88、淮优粳1号、扬粳鉴7号及IR24(为对照),进行抗病性和抗虫性鉴定,结果表明:淮优粳1号表现为中抗,具有非嗜性和抗生性两个抗虫特性:武育粳3号表现为感病,不具有非嗜性和抗生性两个抗虫特性;镇稻88和扬粳鉴7分别表现为抗病和中抗,具有中等非嗜性特性和抗生性特性;IR24表现为中抗,具有中等非嗜性特性和抗生性特性。
     2.利用抗病品种镇稻88、淮优粳1号、扬粳鉴7与感病品种武育粳3号配制抗感杂交组合,通过室内接种鉴定,研究了对条纹叶枯的抗性遗传。遗传分析表明:镇稻88、淮优粳1号、扬粳鉴7对条纹叶枯的抗性均由1对显性核基因控制,不受细胞质遗传的影响。
     3.选用镇稻88、淮优粳1号、扬粳鉴7等3个抗病品种为亲本,通过品种间进行杂交,统计F_1和F_2的发病率,来确定不同抗病品种之间的等位性。研究结果表明:镇稻88、淮优粳1号、扬粳鉴7这3个品种的抗病基因是等位的,或者是紧密连锁的。
     4.利用抗病品种镇稻88与感病品种武育粳3号配制F_2群体,采用水稻条纹叶枯病单分蘗鉴定法与苗期接种鉴定的方法分别对F_2群体、F_(2:3)家系进行抗病性鉴定,并根据F_(2:3)家系的抗病性表现推测相应F_2单株的基因型。结果显示:群体对条纹叶枯病抗性属于质量性状遗传,并且由一对主基因控制。水稻条纹叶枯病单分蘗鉴定法鉴定的结果与苗期抗性鉴定的结果是一致的。
     利用MAPMAKER/3.0软件对F_2作图群体进行分子标记和抗病基因之间连锁分析。在所选的21对SSR引物中,有4对引物的PCR产物在镇稻88与武育粳3号两个亲本之间存在多态,多态性指数分别为19.0%。找到了与抗条纹叶枯基因连锁的SSR标记RM229。SSR标记RM229与抗病基因对遗传距离为4.7cM,位于第11染色体的一侧。
     利用RAPD标记OPO11,在亲本镇稻88、武育粳3号进行PCR扩增,用0.8%的琼脂糖进行检测,发现镇稻88中有一个特异性条带,片段大约为2500bp。用该引物对F_2分离群体的200个单株的DNA进行PCR扩增,统计结果,用MAPMAKER/EXP3.0软件计算遗传距离,结果表明RAPD标记OPO11与抗病基因的遗传距离为0cM,表现为共分离。推测此抗病基因与stvb-i是同一个位点。
     5.利用抗病品种宁317与感病品种武育粳3号配制F_2群体,采用水稻条纹叶枯病单分蘗鉴定法与苗期接种鉴定的方法分别对F_2群体、F_(2:3)家系进行抗病性鉴定,并根据F_(2:3)家系的抗病性表现推测相应F_2单株的基因型。结果显示:群体对条纹叶枯病抗性属于质量性状遗传,并且由一对主基因控制。水稻条纹叶枯病单分蘗鉴定法鉴定的结果与苗期抗性鉴定的结果也也是一致的。
     利用MAPMAKER/3.0软件对F_2作图群体进行分子标记和抗病基因之间连锁分析。在所选的21对SSR引物中,有6对引物的PCR产物在宁317与武育粳3号两个亲本之间存在多态,多态性指数为28.6%。找到了与抗条纹叶枯基因连锁的SSR标记RM287。SSR标记RM287与抗病基因对遗传距离为21.7cM,位于第11染色体的一侧。
In this study,resistance to rice stripe in major japonica rice cultivar of Jiangsu Province was identified.The resistant gene was located by SSR makers.The main results were summarized as follows:
     1.The mechanism of resistance to RSV and vector,SBPH was studied and analyzed in four rice varieties by using seedling inoculation,non-preference test and antibiosis test.The results indicated that the mechanism of resistance to RSV and vector SBPH was different.Huaiyoujing No.1 was moderately resistant to RSV but resistant to vector SBPH.Wuyujing No.3 was susceptible to RSV and vector SBPH. Yangjingjian7 was moderately resistant to RSV and SBPH.Zhendao88 was resistant to RSV,but moderately resistant to SBPH.IR24 was moderately resistant to RSV and SBPH
     2.Crosses were made between Zhendao88、Huaiyoujing No.1、Yangjingjian7 which were resistant to RSV and Wuyujing No.3 which was susceptible to RSV.The resistance to rice stripe virus was identified by the method of the seedling inoculation. Genetical analysis indicated that the resistance to rice stripe virus in Zhendao88、Huaiyoujing No.1、yangjingjian7 were controlled by a major gene,but were not influenced by cytoplasm.
     3.Reciprocal crosses were made among the four resistance cultivar:Zhendao88、Huaiyoujing No.1、yangjingjian7 and to analyze the allele inheritance model by the method of the seedling inoculation.The results indicated that the resistant gene in three cultivar were allelic.
     4.In this study,a resistance cultivar Zhendao88 was crossed to a susceptible cultivar Wuyujing No.3,A F_2 segregating population composed of 200 plants was constructed from the cross between Zhendao88 and Wuyujing No.3,and each F_2 plant was selfed to obtain F_(2:3) line RSV resistance was evaluated using 200 F_(2:3) lines by the method of the separation and the seedling inoculation,and the genotype of each F_2 plant was inferred from the phenotype of corresponding F_(2:3) line.Genetic analysis indicated that the genetic model belongs to qualitative character inheritance and the resistance to rice stripe is controlled by a major gene.
     SSR assay and linkage analysis were carried out to detect the resistant gene.21 SSR primers located on 11 chromosome were screened.Amplified DNA fragments were separated with 8%denaturing PAGE(polyacrylamide gelelectrophoresis) and displayed by silver staining.Four polymorphic DNA fragment were found between Zhendao88 and Wuyujing No.3.The polymorphic index is 19.0%.The microsatellite locus RM229 was found to be linked to the resistance gene.The genetic distance between RM229 and the resistant gene is 4.7cM(centMorgan).
     The parent was detected with Random Amplified Polymorphic DNA.Product from PCR reaction were resolved by electrophoresis in 0.8%agarose.The positive ampliation of about 2500bp fragment generated from OPO11 was observed in Zhendao88.200 F_2 population was detected with RAPD maker OPO11.The result indicated that OPO11 was complete linkage to resistant gene.It proved that the resistant gene was stvb-i.
     5.In this study,a resistance cultivar Ning317 was crossed to a susceptible cultivar Wuyujing No.3,A F_2 segregating population composed of 200 plants was constructed from the cross between Ning317 and Wuyujing No.3,and each F_2 plant was selfed to obtain F_(2:3) line RSV resistance was evaluated using 200 F_(2:3) lines by the method of the separation and the seedling inoculation and the genotype of each F_2 plant was inferred from the phenotype of corresponding F_(2:3) line.Genetic analysis indicated that the genetic model belongs to qualitative character inheritance and the resistance to rice stripe is controlled by a major gene.SSR assay and linkage analysis were carried out to detect the resistant gene.21 SSR primers located on 11 chromosome were screened.Six polymorphic DNA fragment were found between Ning317 and Wuyujing No.3.The polymorphic index is 28.6%.The microsatellite locus RM287 was found to be linked to the resistance gene.The genetic distance between RM287 and the resistant gene is 21.7cM(centMorgan).
引文
1.Toriyama S.Rice stripe virus[J].CMI/AAB Descriptions of Plant Virus,1983,No.269.
    2.Syumiya A,H.Nemoto.Rice breeding for virus resistance Nogyou Gijyutsu.1990,45(5):36-44.
    3.朱凤美,肖庆璞,王法明,等.江南稻区新发生的几种稻病.植物保护学报,1964,2(3):100-102.
    4.Hibino H.Biology and Epidemiology of rice viruses.Annual Review of Phytopathology,1996,34:249-174.
    5.Kisimoto R,Yamada Y,Okada M,Matsui M,Ito K.Epidemiology of rice stripe disease.Plant Protection(Japan),1985,39(11):531-537.
    6.Yasuo S,Ishii M,Yamaguchi T.Studies on rice stripe disease Ⅰ.Epidemiological and ecological studies on rice stripe disease in the Kanto-Tosan district of central part of Japan.Review of Plant Protection Research,1968,1:96-104.
    7.魏太云,王辉,林含新,等.我国水稻条纹病毒种群体遗传结构初步分析.植物病理学报,2003,33(3):284-285.
    8.江苏省水稻条纹叶枯病协作攻关课题组,江苏省水稻条纹叶枯病协作攻关研究进展.江苏农业科学,2003,增刊:1-2.
    9.Nemoto H.Ishikawa K.Shimura E.The resistance to rice stripe virus and small brown planthopper in rice variety,IR50.Breeding Science.1994,44(1):13-18.
    10.南京农业大学、扬州大学农学院、安徽农业大学、浙江农业大学、华中农业大学、江西农业大学.农业植物病理学.江苏科学技术出版社,1996年6月第1版.102-104.
    11.林含新.水稻条纹病毒的病原性质、致病性分化及分子变异.1999,福建农业大学博士学位论文.
    12.谢联辉,周仲驹,林奇英,等.水稻条纹叶枯病的研究Ⅲ.病害的病原性质.福建农学院学报,1991,20(2):144-149.
    13.Kuribayashi K.Studies on the rice stripe disease.Bull.Nagano Agric.1931,2:45-69.
    14.阮义理.日本水稻条纹叶枯病的研究进展.国外农学(水稻),1986,(5):25-28.
    15. Gingery R.E., The rice stripe virus group. In: The Plant Virus (edited by Milne RG). Plenum Publishing Corp. New York. 1988, (4): 297-329.
    
    16. Koganezawa H., Doi Y, Yora K. Purification of rice stripe virus. Annals of Phytopathological Society of Japan. 1975, 41:148-154.
    17. Toriyama S. Characterization of rice stripe virus: a heavy component carrying infectivity. Journal of General Virology. 1982, 61:187-195.
    18. Toriyama S. Relationship between three RNA components and viral components of rice stripe virus. Annual of the phytopathological Society of Japan. 1981,47: 416.
    19. Ishikawa K, Omura T, Tsuchizaki T. Association of double-and single-stranded RNAs with each four components of rice stripe virus. Annual of the phytopathological Society of Japan. 1989, 55:315-323.
    20. Toriyama S and Watanabe Y Characterization of single- and double-stranded RNAS in particles of rice stripe virus. Journal of General Virology. 1989, 70:505-511.
    21. Toriyama S. Viruses and ambisense RNA genomes of tenuivirus[J]. Protein, Nucleic Acid and Enzyme 1986.37:2467-2473.
    22. Toriyama S. Ribonuceic acid polymerase activity in filamentous nucleoproteins of rice grassy stunt virus. Journal of General Vrology. 1987, 68:925-929.
    23. Takahashi M, Toriyama S, Hamamatsu C et al. Nucleotide sequence and possible ambisense coding strategy of rice stripe virus RNA segment 2. Journal of General Virology. 1993,74:769-773.
    24. Zhu Y, Hayakawa T. Toriyama T. et al. complete nucleotide sequence of RNA3 of rice stripe virus: an ambisense coding strategy. Journal of General Virology. 1991, 72:763-767.
    25. Kiso H., Yamamoto T. Infection and symptom development in rice stripe diseases, with special reference to disease specific protein other than virus. Rev[J]. Plant Protect. Res. (Japan) 1973,6:75-100.
    26. Hayano-Saito Y, Kakutani T, Hayashi T. Coding strategy of rice stripe virus: major nonstructural protein is encoded in viral RNA segment 4 and coat protein in RNA complementary to segment 3. Virology. 1990, 177:372-374.
    27. Zhu Y, Hayakawa T. Toriyama S. Complete nucleotide sequence of RNA4 of rice stripe virus isolate T,and comparison with another isolate and with maize stripe virus.Journal of General Virology.1992,73:1309-1312.
    28.胡淑霞.论植物病毒的传毒介体及传播方式.生物学杂志,1997,14(5):33-34.
    29.Wu Aizhong,Zhao Yan,Qu Zhicai,Shen Daleng,Pan Chongguang & Su Deming,Subcellular localization of the stripe disease-specific protein encoded by rice stripe virus(RSV) in its vector,the small brown planthopper,Laodelphax striatellus.Chinese Science Bulletin.2001,48(21):1819-1822.
    30.梁小波,鲁瑞芳,吴云锋,彭学贤.植物病毒昆虫介体传播的研究进展,生物工程进展.2001,21(4):11-17.
    31.吴爱忠,赵艳,曲志才,等.水稻条叶枯病毒(RSV)SP蛋白在介体灰飞虱内的亚细胞定位,科学通报,2001,4 6(14):1183-1186.
    32.陈光靖.酶联免疫吸附试验检测水稻条纹叶枯病介体昆虫带毒率,植物保学报,1984,11(2):73-78.
    33.徐云,林莉.A蛋白酶联法在水稻条纹川枯病流行研究中的应用.云南农业科技1996,(4):17-20.
    34.秦文胜,高东明,陈声祥,等.DIBA检测灰稻虱体内水稻条叶枯病毒的研究,微生物研究与应用,1992,4;10-12.
    35.周益军,刘海建,王贵珍,等.灰飞虱携带的水稻条纹病毒免疫检测.江苏农业科学.2004,1:50-51.
    36.吕英芝,邓可京,曲志才,等.逆转录聚合酶链式反应快速检测水稻条纹叶枯病毒.复旦学报(自然科学版),1999,38(5):581-593.
    37.Cai Lijun,Ma Xizhi,Kang Lin,Deng Kejing,Zhao shouyuan,Li Changben.Detecting Rice stripe virus(RSV)in the small brown plant hopper(Laodelphaxs triatellus)with high specificity by RT-PCR.Journal of Virological Methods,2003,11(2):115-120.
    38.Nemoto H.Ishikawa K.Shimura E.The resistance to rice stripe virus and small brown planthopperin rice variety.IR 50.Breeding Science.1994,44(1):13-18.
    39.邢祖颐,何家齐,刘志武,等.釉粳稻杂交种的研究,抗条纹叶枯病育种.作物学报,1985,11(1):1-7
    40.高东明,秦文胜.抗性品种对预防水稻条纹叶枯病发生和流行的研究.浙江农业学报,1994,6(3):141-149.
    41.Washio O.,Ezuka A.,Toryama K.,Sakurai Y.Testing method for Genetic of and Breeding for resistance to rice stripe disease.Bull.Chugoku Agr Exp.Sia.Series,1968,16:39-197.
    42.周彤,程兆榜,周益军,等.水稻品种淮优粳1号和盐粳5号对条纹叶枯病抗性的遗传分析.江苏农业学报,2005,21(3):241-242
    43.丁秀兰,江玲,刘世家,等.利用重组自交系群体检测水稻条纹叶枯病抗性基因及QTL分析[J].遗传学报,2004,31(3):287-292.
    44.Maeda H,Sugisawa T,Nemoto H,et al.QTL analysis for rice stripe resistance in the Japanese upland rice kanto72[J].Breeding Science.2004,54:19-26.
    45.朱宫昭男,根本博.抗条纹叶枯病和萎缩病遗传育种研究概况[J].杂交水稻,1992,(3):45-47.
    46.邢祖颐,何家奇,刘志武,等.籼粳稻杂交育种的研究Ⅱ.抗条纹叶枯病育种[J].作物学报,1985,11(1):1-6.
    47.王才林.江苏省水稻条纹叶枯病抗性育种研究进展[J].江苏农业科学,2006,(3):1-5.
    48.陈涛,张亚东,朱镇,等.水稻条纹叶枯病抗性遗传和育种研究进展[J].江苏农业科学,2006,(2):1-4.
    49.Yamaguchi T.,Yasuo S.,Ishi M.Studies on rice stripe disease,Ⅲ.Study on varietial resistance to stripe disease of rice plant.J.Vent.Agr.Exp.Sta.1965,8:109-160.
    50.Washio,O.,Ezaka A.,Sakurai Y.et al.Studies on the breeding of rice varieties to stripe disease.Varietial difference in resistance to stripe disease.Jap.J.Breed.1967,17(1):91-98.
    51.高东明,李爱民,等.江、浙两省主要粳、糯稻品种对条纹叶枯病的抗性测定.浙江农业科学.1991,(2):96-98.
    52.林含新,林奇田,魏太云,等.水稻品种对水稻条纹叶枯病毒及其介体灰飞虱的抗性鉴定.福建农业大学学报.2000,29(4):453-458.
    53.孙黛珍.水稻条纹叶枯病抗性的遗传分析和基因定位[学位论文].南京:南京农业大学,2006:23-31.
    54.丁秀兰.水稻条纹叶枯病抗性基因的定位研究[学位论文].南京:南京农业大学,2004:17-18.
    55.高东明,秦文胜.抗性品种对预防水稻条纹叶枯病发生和流行的研究.浙江农业学报,1994,6(3):141-149.
    56.Ishikawa.K.,H.Nemoto,T.Omura and T.Tsuchizaki.Improvement of test method for rice stripe virus with simplified ELISA.Ann.Phytopath.Soc.Japan.1987,54:123.
    57.Okamoto D.and H.Inoue.Studies in the smaller brown planthopper,Laodelphax striatellus fallen as vector of rice stripe virus.Varietal resistance of rice to the smaller brown planthopper.Chugoku Agr.Exp.Sta.,Bull.E.1967,1:115-136.
    58.Palter R H.Insect Resistance in Crop Plants.Lawrence.KS:University of Kansas Press,1951.
    59.Kobayashi A,Supaad M A,Othrnan O.Inheritance of resistance of rice tungro and biotype selection of green leafhopper in Malaysia.JARQ,1983,16(4):306-311.
    60.Takita T,Habibuddin H.Relationship between laboratory-developed biotypes of greenhopper and resistant varieties of rice in Malaysia.JARQ.,1985,19(3):219-223.
    61.陆家安,万常妱,邹馥梅,等.水稻条纹叶枯病抗性的遗传[J].上海农业学报,1990,6(4):33-37.
    62.Washio O.Ezuka A.Sakurai Y.et al.Studies on the breeding of rice varieties resistant to stripe disease Ⅱ.Genetic study on resistance to stripe disease in Japanese upland rice.Japan Journal of Breeding.1968a,18:96-101.
    63.Washio O.Ezuka A.Sakurai Y.et al.Studies on the breeding of rice varieties resistant to stripe disease Ⅲ.Genetic studies on resistance to stripe disease in foreign varieties.Japan Journal of Breeding.1968b,18:167-172.
    64.Hayano-Saito Y,Tsuji T,Fuji K,K.Saito,M.Iwasaki,A.Saito.Localization of the rice stripe disease resistance gene,Stv-b~i,by graphical genotyping and linkage analysis with molecular markers.Theoretical and Applied Genetics,1998,96(8):1044-1049.
    65.Hayano-Saito Y.,Satiok,Nakamura S.et al.Fine physical mapping of the rice stripe resistance gene locus,Stv-b~i.Theoretical and Applied Genetics.2000,101:59-63.
    66.丁秀兰,江玲,刘世家,等.利用重组自交系群体检测水稻条纹叶枯病抗性基因.遗传学报,2004,31(3):287-292.
    67.Maeda H,Nemoto H,Yagi T,Fukuta Y.QTL analysis for rice stripe disease resistance using recombinant inbred lines(RILs) derived from crossing between Milyang and Akihikari.In:China Association of Agricultural Science Societies,China National Rice Research Institute,China National Hybrid Rice Research and Development Center,China Foundation Society for Agricultural Science and Education(eds).Prospects of rice genetics and breeding for the 21st century-Paper collection of international rice genetics and breeing symposium.Beijing:China Agricultural Science Technology Press,1999,53-57.
    68.丁秀兰,江玲,张迎信,等.利用回交重组自交群体检测水稻条纹叶枯病抗性位点.作物学报.,2005,31(8):1041-1046.
    69.Maeda H,Takeshi Sugisawa,Hiroshi Nemoto,Yoshihiro Sunohara.QTL analysis for rice stripe resistance in the Japanese upland rice kanto72.Breeding science.2004,54:19-26.
    70.燕义唐,王晋芳,邱并生,等.水稻条纹叶枯病毒外壳蛋白基因在工程水稻植株中的表达.植物学报,1992,34(12):899-906.
    71.Yan Y.T.Wang J.F QiuB.S.Tien R Resistance to Rice Stripe Virus Conferred by Expression of Coat Protein in Transgenic Indica Rice Plants Regenerated from Bombarded Suspension Culture,Virologica Sinica,1997,12(3):260-269.
    72.T Hayakawa,Y Zhu,K Itoh,Y Kimura,T izawa,K Shimamoto and S Toriyama Genetically Engineered Rice Resistant to Rice Stripe Virus,an Insect-Transmitted Virus.Procedings of the National Academy of Sciences,1992,89:98 65-9869,by National Academy of Sciences.
    73.Powell Abel,P.,R.S.Nelson,B.De,N.Hofmann,S.G.Rogers,R.T.Fraley and R.N.Beachy.Delay of disease development in transglnic plants that express the tobacco virus coat protein gene.Science 1986,232:738-743.
    74.刘力,陈声祥,邱并生,等.抗水稻条纹叶枯病毒核醉的设计、克隆及体外活性测定.中国病毒学,1996,11(2):157-163.
    75.方宣钧,吴为人,唐纪良.作物DNA标记辅助育种.2001,2.
    76.Hamada H,Petrino M G,Kakunaga.A novel repeat edelement with Z-DNA-forming potential is widely found in evolutionarily diverse cukaryotic genomes.Proc.Natl.Acad.Sci.USA.1982,79(11):6465-6469.
    77.Tautz D,Renz M.Simple sequences are ubiquitous repetitive componenets of eukaryotic genomes.Nucleic Acids Res.1984,12(10):4127-4138.
    78.Weberl L,May P E.Abundant class of human DNA polymorphisms which can be typed using the polymerase chain reaction.Am J Hum Genet.1989,44(3):388-396.
    79.郭小平,赵元明.SSR技术及其在植物遗传育种中的应用.华北农学报,1998,13(3):73-76.
    80.Powell W,Morgante M,Andre C,et al.The comparison of RFLP,RAPD,AFLP and SSR(microsatellite) markers for germplasm analysis.Molecular Breeding.1996,2:225-238.
    81.Tautz D.Hypervariability of simple sequences as a general source for polymorphic DNA markers.Nucleic Acid Res.1989,17:6463-6471.
    82.Hancock J M.Simple sequences in a minimal genome.Nat Genet.19 96,14(1):14-15.
    83.Westman A L,Kresovich S.The potential far cross taxa simple sequence repeat (SSR) amplification between Arabidopsis thaliana L.and crop brassicas.Tbeor.Appl.Genet.1998,96:272-281.
    84.Horpkins M S,Casa A M,Wang T,et al.Discovery and characterization of polymorphic simple sequence repeat(SSRs)in peanut.Crop Science,1999,394:1243-1274.
    85.Plieske J,Struss D M.Microsatellite markers for genome analysis in Brassica.1.Development in Brassica napus and abundance in Brassicaceae speeies.Theor Appl Genet,2001,103:689-694.
    86.Brown S M,Hopkins M S,Mitchell S E.Multiple methods for the identification of polymorphic simple sequence repeats(SSRs)in sorghum(sorghum bicolor (L.)Mornch).Theor Appl Genet,1996,93:190-198.
    87.Kijas J M H,Fowler J G S,Garbett C A,Thomas M R.Enrichment of microsatellite from the citrus genome using biotinylated oligonuckeotide sequences bound to streptavidin-coated magnetic particles.Bio Techniques,1994,16:657-662.
    88.Fischer D,Bachmann K.Microsatellite enrichment in organisms with large genomes (Allium cepa L.).Bio Techniques,1998,24:796-802.
    89.Zane L,Bargelloni L,Patarnello T.Strategies for microsatellite isolation:a review.Mol Ecol,2002,11:1-16.
    90.张玉刚,郭绍霞,韩振海.微卫星DNA分亍标记及其在高等植物遗传育种中的应用.莱阳农学院学报,2003,20(1):51-56.
    91.熊立仲,王石平,张启发,等.微卫星DNA和AFLP标记在水稻分子标记连锁图上的分布[J],植物学报,1998,40(7):605-614.
    92.黄青阳,何予卿,景润春,等.利用微卫星标记定位水稻红莲型细胞质雄性不育恢复基因[J].科学通报,1999,44(14):1517-1520.
    93.马渐新,周荣华,董玉探,等.用微卫星标记定位一个未知的小麦条锈病基因[J].科学通报,1999,44(14):1513-1517.
    94.郭小平,赵元明.SSR技术及其在植物遗传育种中的应用.华北农学报,1998,13(3):73-76.
    95.Stephan W,Cho S.Possible role of natural selection in the formation of tandem repetitive noncoding DNA[J].Genetics,1994,136:333-341.
    96.Powell W,et al.The comparision of RFLP,RAPD,AFLP and SSR markers foe gerplasm analysis[J].Molecular Breeding,1996,2:225-238.
    97.K.D.Scott,P.Eggler,et al.Analysis of SSRs derived from grape E STS[J].Theor Appl Genet,2000,100:723-726.
    98.Fahima T,Sun G,Chaguc V,et al.Identification of molecular markers linked to the Yrl 5 stripe rust resistance gene of wheat originated in wild emmer wheat,Triticum dicocoides[J].Theoretical Application Genet.1997,95:622-628.
    99.Plaschke J,Bormer A,Wwndehak K,et al.The use of aneuploids for the chromosomal assignment of micrisatellite loci[J].Euphytica,1996,8 9:33-40.
    100.杨官品,M.A.Saghai Maroof,张启发,等.水稻一多拷贝微卫星DNA多态性分析[J),遗传,1998,20(2):27-30.
    101.Turuspekov Y,Nakamura K,Yoshikawa R,Tuberosa R.Genetic diversity of Japanese barley cultivars based on SSR analysis[J].Breeding Science,2001,51(3):215-218.
    102.Tanya P,Srinives P,Toojinda T,et al.Evaluation of genetic diversity among soybean genotypes using SSR and SNP[J].Korean Journal of Crop Science,2001,46(4):3 34-340.
    103.Dalbo M A,et al,(2000).A gene controlling sex in grapevines placed on a molecular marker-based genetic map[J].Genome,43:333-340.
    104.Mba REC,StephesinP,Edwards K,et al.Simple sequence repeat sequence (SSR)markers survey of the cassava(Manihot esculenta Cranta)genome:towards an SSR-based molecular genetic map of cassava[J].Theoretical and Applied Genetics,2001,102(1):21-31.
    105.Wang Z ey al.Survey of plant short tandem DNA repeats.Theor Appl Genet,1994,88:16.
    106.Beyermann B,Nurmberg P,Weihe A,et al.Fingerprinting plant genomes with oligo mucletide probes specific foe simple repetive DNA sequence[J].Theoreical Application Genet,1992,83:691-694.
    107.Rongwen,J_ Akkaya,M.S.,Bhagwat,A.A.,Lavi,U.,Cregan,P.B.The use of microsatellite DNA markers foe soybean genotype identification[J].Theor Appl Genet,1995,26(1):51-53.
    108.栾雨时,安利佳,黄百渠,等.用SSR探针进行番茄品种的DNA指纹分析[J]园艺学报,1999,26(1):51-53.
    109.Guilford P,et al.Microsatellite in Malus Ⅹ dimestica(apple):abundance、polymorphism and cultivar identification[J].Theor Appl Genet,1997,94:249-254.
    110.Chen F,Temnykh S,Xu Y,Cho Y G,McCouch S R.Development of a microsatellite framework map providing genome-wide coverage in rice(Oryza sativa L.).Theor Appl Genet.1997,95:553-567.
    111.Dellapporta S L,Wood J,Hicks J B.A plant DNA mini preparation:Version Ⅱ.Plant Mol Biol Rep,1983,1:19-21.
    112.Lander E S,Green P,Abrahamson J,Barlow A,Daly M J,Lincoln S E,Newburg L.1987.MAPMAKER:an interactive computer package for constructing primary genetic maps of experimental and natural populations.Genomics,1:174-181.
    113.Hiroshi Nemoto,Kouichi Ishikawa,Eiji Shimura.The resisitance to Rice Stripe Virus and Small Brown Plantthopper in Rice Variety,IRS0.Breeding Science[J],1994,44:13-18.
    114.潘学彪,梁国华,陈宗祥,等.江苏抗水稻条纹叶枯病育种策略[J].江苏农业 科学,2005,5:22-23.
    115.林奇英,谢联辉,周仲驹,等.水稻条纹叶枯病的研究,Ⅰ病害的分布和损失.福建农学院学报,1990,19(4):421-425.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700