Chinese Agricultural Science Bulletin ›› 2008, Vol. 24 ›› Issue (8): 69-73.
Special Issue: 园艺
• 农业生物技术科学 • Previous Articles Next Articles
Zhao Guangwei, Xu Zhihong, Xu Yongyang
Received:
2008-04-23
Revised:
2008-05-30
Online:
2008-08-08
Published:
2008-08-08
CLC Number:
Zhao Guangwei, Xu Zhihong, Xu Yongyang. SRAP Molecular Marker and its Applications to Vegetable Crops[J]. Chinese Agricultural Science Bulletin, 2008, 24(8): 69-73.
[1] Li G, Quiros C F. Sequence-related amplified polymorphism (SRAP), a new marker system based on a simple PCR reaction: its application to mapping and gene tagging in Brassica . Theor App1 Genet, 2001, 103: 455-461. [2] Vos P, Hogers R, Bleeker M, et al. AFLP: a new technique for DNA fingerprinting. Nucleic Acids Re , 1995, 23:4407-4414. [3] Haanstra J P W, Wye C, Verbakel H, et al. An integrated high-density RFLP-AFLP map of tomato based on two Lycopersicum esculentum L. pennellii F2 populations. Theor Appl Genet, 1999,99:254-271. [4] Sun Zudong, Wang Zining, Tu Jinxing, et al. An ultradense genetic reconbination map for Brassica napus,consisting of 13551 SRAP markers. Theoretical and Applied Genetics, 2007,114:1305-1317. [5] 钱文成,张桂华,陈飞雪,等.SRAP在检测黄瓜基因组多态性中的特征.遗传,2006,28(11):1435-1439. [6] 杨琦,张鲁刚.大白菜SRAP反应体系的建立与优化.西北农业学报,2007,16(3):119-123. [7] 刘冲,葛才林,任云英,等.SRAP,ISSR技术的优化及在甘蓝类植物种子鉴别中的应用.生物工程学报,2006,22(4):657-661. [8] 王振国,张海英,于广建,等.黄瓜SRAP反应体系的正交设计优化.华北农学报,2007,22 (4):112-115. [9] 王燕,龚义勤,赵统敏,等.番茄SRAP-PCR反应体系优化与品种分子鉴定.南京农业大学学报,2007,30(1): 23-29. [10] 王华忠,吴则东,韩英,等.甜菜SRAP-PCR反应体系的优化.中国糖料,2007,2:1-4. [11] 李严,张春庆.新型分子标记—SRAP技术体系优化及应用前景分析.中国农学通报,2005,21,(5):108-112. [12] 吴鑫,雷天刚,何永睿,等.柑桔SRAP和ISSR分子标记技术体系的建立与优化.分子植物育种,2008,6(1):170-176. [13] Baudracco-Amas S, Pitrat M J.A genetic map of melon(Cucumis melo L.) with RFLP, RAPD, isozyme, discease resistance and morphological markers.Theor Appl Genet,1991,93(1-2):57-64. [14] Wang Y H, Thomas C E, Dean R A.A Genetic map of melon(Cucumis melo L.) based on amplified fragment length polymorphism(AFLP) marks.Theor Appl Genet,1997,95(5):791-798. [15] Liou P C, Chang Y M, Hsu W S, et al. Construction of a linkage map in Cucumis melo L. using random amplidied polymorphic DNA markers.Acta Hortic,1998,461:123-131. [16] Oliver M, Garcia-Mas J, Cardus M, et al. Construction of a reference linkage map for melon.Genome,2001,44: 836-845. [17] Périn C, Hagen L S, Conto De V, et al. A reference map of Cucumis melo based on two recombinant inbred line populations.Theor Appl Genet,2002,104:1017-1034. [18] PAN J S H(潘俊松),WANG G(王 刚),LI X Z(李效尊).Construction of a cucumber genetic map with SRAP markers and location of the genes responsible for the first-flower-node trait in cucumber(Cucumis sativus L.). Progress In Natural Science,2005,15(5):407-413. [19] 王建设,姚建春,刘玲,等.利用中国香瓜与哈密瓜的F2群体构建SRAP连锁遗传图谱.园艺学报,2007,34 (1):135-140. [20] Ferriol M, Pico B, Nuez F. Genetic diversity of a germplasm collection of Cucurbita pepo using SRAP and AFLP markers. Theor Appl Genet,2003,107:271-282. [21] Ferriol M, Pico B, Cordova de PF, et al. Molecular Diversity of a Germplasm Collection of Squash(Cucurbita moschata) Determined by SRAP and AFLP Markers.Crop Science,2004, 44: 653-664. [22] 李丽,郑晓鹰,柳李旺.用SRAP标记分析黄瓜品种遗传多样性及鉴定品种.分子植物育种,2006,4(5):702-708. [23] 郝玉民,郭兰,韩延闯,等.甘薯品种的SRAP遗传多样性分析.武汉植物学研究,2007,4:406-409. [24] 李慧兰,尹燕枰,张春庆,等.SRAP在葱栽培品种遗传多样性研究中的适用性分析.园艺学报,2007,4: 929-934. [25] 赵丽萍,柳李旺,龚义勤,等.萝卜品种指纹图谱SRAP与AFLP分析.植物研究,2007,(6):49-55,76. [26] 雷剑,柳俊.一个与马铃薯青枯病抗性连锁的SRAP标记筛选.中国马铃薯,2006,20(3):150-153. [27] 王刚,潘俊松,李效尊,等.黄瓜SRAP遗传连锁图的构建及侧枝基因定位.中国科学C辑(生命科学),2004,34(6):510-516. [28] 邓思立,潘俊松,何欢乐,等.黄瓜M基因连锁的SRAP分子标记.上海交通大学学报(农业科学版),2006,24 (3):240-244. [29] Arabidopsis Genome Initiative.Analysis of the genome sequence of the flowering plant Arabidopsis thaliana. Nature 2000,408:796-815. [30] Lan T H, DelMonte T A, Reischmann K P, et al.An EST-enriched comparative map of Brassica oleracea and Arabidopsis thaliana.Genome Res,2000,10:776-788. [31] Paterson AH, Bowers JE, Burow MD, et al. Comparative genomics of plant chromosomes[J]. Plant Cell, 2001, (2):1523-1539. [32] Chen M, Presting G, Barbazuk WB. An integrated physical and genetic map of the rice genome. Plant Cell,2002,14:537-545. [33] 宋雪梅,李宏斌,杜立新.比较基因组学及其应用.生命的化学,2006,5:42-44. [34] Li G , Gao M, Yang B, et al. Gene for gene alignment between the Brassica and Arabidopsis genomes by direct transcriptome mapping.Theoretical and Applied Genetics,2003,107:168-180. [35] Cavell A, Lydiate D, Parkin IAP, et al. Collinearity between a 30-centimorgan segment of Arabidopsis thaliana chromosome 4 and duplicated regions within the Brassica napus genome.Genome,1998,41:62-69. [36] Neill CM, Bancroft I. Comparative physical mapping of segments of the genome of Brassica oleracea var. alboglabra that are homoeologous to sequenced regions of chromosomes 4 and 5 of Arabidopsis thaliana. Plant J, 2000,23:233-243. [37] Draye X, Lin Y R, Qian X Y, et al. Toward integration of comparative genetic,physical,diversity,and cytomolecular maps for grasses and grains,using the sorghum genome as a foundation.Plant Physiol,2001,125:1325-1341. [38] Fulton T M, Hoeven VRD, Eannetta N T, et al. Identification, analysis, and utilization of conserved ortholog set markers for comparative genomics in higher plants.Plant Cell,2002,14:1457-1467. [39] Parkin IAP, Lydiate DJ, Trick M. Assessing the level of colinearity between Arabidopsis thaliana and Brassica napus for Athaliana chromosome 5.Genome,2002,45:356-366. [40] Budak H, Searman R C, Parmeksiz I, et al. Comparative analysis of seeded and vegetative biotype buffalograsses based on phylogenetic relationship using ISSRs,SSRs,RAPDs,and SRAPs.Theor. Appl. Genet, 2004,109:280-288. [41] 柳李旺,龚义勤,黄号,等.新型分子标记—SRAP与TRAP及其应用.遗传,2004,26(5):777-78l. |
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