作物学报 ›› 2010, Vol. 36 ›› Issue (4): 549-554.doi: 10.3724/SP.J.1006.2010.00549
关荣霞1,陈玉波1,2,**,方宏亮3,刘硕4,腾卫丽5,李文滨5,王丕武2,常汝镇1,邱丽娟1,*
GUAN Rong-Xia1, CHEN Yu-Bo1,2,**, FANG Hong-Liang3, LIU Shuo4, TENG Wei-Li5, LI Wen-Bin5, WANG Pei-Wu2, CHANG Ru-Zhen1, and QIU Li-Juan1,*
摘要:
中品95-5117和中品95-5383是以中品661为亲本选育的抗东北花叶病毒病3号株系(SMV3)的大豆新品系。中品95-5383抗性基因的SCAR标记已被定位于大豆F连锁群(Chr.13),与抗病基因Rsv1紧密连锁。利用大豆F连锁群的34对SSR引物及与抗病基因紧密连锁的SCAR标记SCN11及Rsv1候选基因标记Rsv1-f/r,对中品95-5117系谱亲本进行检测,结合对SMV3的抗性鉴定结果进行分析,旨在明确抗SMV3基因在系谱中的传递规律,为利用分子标记辅助选择培育抗SMV3新品种提供依据。通过SSR标记分析发现,中品95-5117和中品95-5383与亲本中品661的相似性最高,而与另外一个亲本鲁豆4号关系较远。SCAR标记SCN11检测表明,只有1份材料Mangnolid(F-53)B为感病基因型。系谱的Rsv1-f/r标记分析表明,Williams 82是中品95-5117中Rsv1基因的供体亲本。抗病性鉴定发现鲁豆4号高抗SMV3,但它并不携带Rsv1基因。据上述结果推测中品95-5117中不仅含有Rsv1,还具有来自鲁豆4号的抗病基因,证明该品系比其亲本中品661具有对SMV3更强的抗性。
| [1] Liao L(廖林), Liu Y-Z(刘玉芝). Research of breeding of resistance to soybean mosaic virus. Soybean Bull (大豆通报), 1998, (3): 26-27 (in Chinese)[2] Ma G-Z(马桂珍), Bao Z-H(暴增海). Advance of soybean mosaic virus in China.Soybean Bull (大豆通报), 1995, (4): 20-22 (in Chinese)[3] Pu Z-Q(濮祖芹), Cao Q(曹琦), Fang D-C(房德纯), Xue B-D(薛宝娣), Fang Z-D(方中达). Identification of strains of soybean mosaic virus. Acta Phytophylac Sin(植物保护学报), 1982, 9(1): 15-19 (in Chinese)[4] Chen Y-X(陈永萱), Xue B-D(薛宝娣), Hu Y-Z(胡蕴珠), Fang Z-D(方中达). Identification of two new strains of soybean mosaic virus. Acta Phytophylac Sin (植物保护学报), 1986, 13(1): 221-226 (in Chinese)[5] Lü W-Q(吕文清), Zhang M-H(张明厚), Wei P-W(魏培文), Guo J-Q(郭井泉), Jiang Y-Y(姜永业), Geng Y-C(耿迎春), Variety and distribution of strains of soybean mosaic virus in the northeast three provinces. Acta Phytopatholog Sin (植物病理学报), 1985, 15(4): 225-228 (in Chinese)[6] Cho E K,Goodman R M. Stranins of soybean mosaic virus: Classification based on virulence in resistant soybean cultivars. Phytopathology, 1979, 69: 467-470[7] Cho E K, Goodman R M. Evaluation of resistance in soybeans to soybean mosaic virus strains. Crop Sci, 1982, 22: 1133-1136[8] Xu Z, Polston J E, Goodman R M. Identification of soybean mosaic, southern bean mosaic and tobacco ringspot viruses from soybean in the People's Republic of China. Ann Appl Biol, 1986, 108: 51-57[9] Takahashi K, Tanaka T, Iida W, Tsuda Y. Studies on virus diseases and causal viruses of soybean in Japan. Bull Tohoku Natl Agric Exp Stn, 1980, 62: 1-130[10]Yu Y G, Saghai Maroof M A, Buss G R, Maughan P J, Tolin A A. RFLP and microsatellite mapping of a gene for soybean mosaic virus resistance. Phytopathology, 1994, 84: 60-64[11]Jeong S C, Kristipati S, Hayes A J, Maughan P J, Noffsinger S L, Gunduz I, Buss G R, Saghai Maroof M A. Genetic and sequence analysis of markers tightly linked to the soybean mosaic virus resistance gene, Rsve3. Crop Sci, 2002, 42: 265-270[12]Hayes A J, Ma G, Bus G R, Saghai-Maroof M A. Molecular marker mapping of Rsv4, a gene conferring resistance to all know strains of soybean mosaic virus. Crop Sci, 2000, 40: 1434-1437[13]Zheng C M, Chang R Z, Qiu L J, Chen P Y, Wu X L, Chen S Y. Identification and characterization of a RAPD/SCAR marker linked to a resistance gene for soybean mosaic virus in soybean. Euphytica, 2003, 132: 199-210[14]Shi A N, Chen P Y, Zheng C M, Hou A F, Zhang B. A PCR-based marker for the Rsv1 locusconferring resistance tosoybean mosaic virus. Crop Sci, 2008, 48: 262-268[15]Guan R-X(关荣霞), Chang R-Z(常汝镇), Qiu L-J(邱丽娟). Rapid isolation of soybean DNA for SSR analysis. Soybean Sci (大豆科学), 2003, 22(1): 73-74 (in Chinese with English abstract)[16]Chen P, Buss G R, Tolin S A. Resistance to soybean mosaic virus conferred by two independent dominant genes in PI486355. J Hered, 1993, 84: 25-28[17]Chen P, Buss G R, Tolin S A, Gunduz I, Cicek M. Identification of a valuable gene in Suweon 97 for resistance to all strains of soybean mosaic virus. Crop Sci, 2002, 42: 333-337[18]Chen P, Buss G R, Roane C W, Tolin S A. Allelism among genes for resistance to soybean mosaic virus in strain-differential soybean cultivars. Crop Sci, 1991, 31: 305-309[19]Chen P, Ma G, Buss G R, Gunduz I, Roane C W, Tolin S A. Inheritance and allelism tests of Raiden soybean for resistance to soybean mosaic virus. J Hered, 2001, 92: 51-55[20]Buzzell R I, Tu J C. Inheritance of soybean resistance to soybean mosaic virus. J Hered, 1984, 75: 82[21]Zheng C-M(郑翠明), Chang R-Z(常汝镇), Qiu L-J(邱丽娟). Inheritance of resistance to SMV3 and identificationof RAPD marker linked to the resistance gene in soybean. Sci Agric Sin (中国农业科学), 2001, 34(1): 1-4 (in Chinese with English abstract)[22]Zhan Y(战勇), Yu D-Y(喻德跃), Chen S-Y(陈受宜), Gai J-Y(盖钧镒). Inheritance of resistance and gene location of soybean mosaic virus strains SC-7. Acta Agrono Sin (作物学报), 2006, 32(6): 936-938 (in Chinese with English abstract)[23]Hayes A J, Jeong S C, Gore M A, Yu Y G, Buss G R, Tolin S A, Saghai-Maroof M A. Recombination within a nucleotide-binding-site/leucine-rich-repeat gene cluster produces new variants conditioning resistance to soybean mosaic virus in soybeans. Genetics, 2004, 166: 493-503 |
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