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Chinese Agricultural Science Bulletin

Abbreviation (ISO4): Chin Agric Sci Bull      Editor in chief: Yulong YIN

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Recent Advance of Studies on Molecular Marker and Linkage Map in Cucumber (Cucumis sativus L)

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Online published: 2004-12-04

Abstract

The studies on molecular marker and linkage map of cucumber have dropped behind that of other crop, such as tomato and wheat.The existing maps that almost finished by Staub’s research unit comprised molecular markers more than 300, which are isozyme, RAPD, RFLP, SSR, AFLP, and the mean distance between the markers reach 2.1cM, but including cucumber’s genes or locus (F, B, de, ll, dm), less than 10.

Cite this article

Ding Guohua,, Qin Zhiwei . Recent Advance of Studies on Molecular Marker and Linkage Map in Cucumber (Cucumis sativus L)[J]. Chinese Agricultural Science Bulletin, 2004 , 20(6) : 14 -14 . DOI: 10.11924/j.issn.1000-6850.040614

References

1阮成江,何祯祥,钦佩.中国植物遗传连锁图谱构建研究进展[J].西北植物学报,2002,22(6):1526~1536
2方宣钧,吴为人,唐纪良.作物DNA标记辅助育种.北京:科学出版社,2002
3侯锋,李淑菊.我国黄瓜育种研究进展与展望[J].中国农业科学,2000,33(3):100~102
4张海英,王永建,许勇,等.黄瓜种质资源遗传亲缘关系的RAPD分析[J].园艺学报,1998,25(4):345~349
5顾兴芳,杨庆文.AFLP技术在黄瓜种质资源鉴定及分类上的应用初探[J].中国蔬菜,1999,(1):30~32
6Dijkhuizen A. Application of restriction fragment length polymorphism for the assessment of genetic variability and the study of quantitatively inherited traits in cucumber (Cucumis sativus L.). 1994.Ph.D. Dissertation. University of Wisconsin-Madison USA
7Kennard W C, Poette K, Dijkhuizen A, et al. Linkages among RFLP, RAPD, isozyme, disease resistance, and morphological markers in narrow and wide crosses of cucumber [J]. Theor Appl Genet, 1994,89: 42~48
8Knerr L D and Staub J E. Inheritance and linkage relationships of isozyme loci in cucumber (Cucumis sativus L.) [J]. Theor Appl Genet, 1992, 84:217~224
9Matsuura S, Saito A, Fujita Y. An approach for rapid checking of seed purity by RFLP analysis of nuclear DNA in F1 hybrid of cucumber (Cucumis sativus L.) [J]. Journal-of-the-Japanese-Society-for-Horticultural-Science, 1994,63(2):379~383
10Katzlr N, Danin-Poleg Y, Tzuri G, et al. Length polymorphism and homologies of micro satellites in several Cucurbitaceae species [J]. Theor Appl Genet, 1996, 93:1282~1290
11Dijkhuizen A, Kennard W C, Havey M J, et al. RFLP variation and genetic relationships in cultivated cucumber [J]. Euphytica, 1996, 90:79~87
12Truksa M, Prochazka S. Potential use of RAPD markers in verification of cucumber hybrids[J]. Rostlinna-Vyroba, 1996, 42(6):241~244
13Serquen F C, Bacher J, Staub J E. Mapping and QTL analysis of horticultural traits in a narrow cross in cucumber (Cucumis sativus L.) using random amplified polymorphic DNA markers [J]. Mol Breeding, 1997,3:257~268
14许勇,欧阳新星,张海英,等.西瓜黄瓜快速简单RAPD技术的研究[M].见:侯喜林,常有宏主编.园艺学进展(Ⅱ).南京:东南大学出版社.1998.457~462
15Stanb J E, Horejsi T. Genetic variation in cucumber (Cucumis sativus L.) as assessed by random amplified polymorphic DNA [J]. Genet Res Crop Evol, 1999, 46:337~350
16Lepse L. Comparison of inbreeding and family selection on the homogenesation of cucumber population by using RAPD markers[C]. Latvia Univ. of Agriculture, Jelgava (Latvia). [Reports of the International Scientific Conference "Science. Latvia. Europe", Jelgava, Latvia, 22-24 May, 2000]. Zinatne. Latvija. Eiropa. Starptautiskas zinatniskas konferences referati, Jelgava, 2000.gada 22.-24.maijs. Jelgava (Latvia). Latvia University of Agriculture. 2000, 331,91~98
17Park Y H, Wye C, Antonise R, et al. A genetic map of cucumber composed of RAPDs, RFLPs, AFLPs, and loci cinditioning resistance to papaya ringspot and zucchini yellow mosaic viruses [J]. Genome, 2000, 43:1003~1010
18Danin-Poleg Y, Reis N, Staub J E. Simple sequence repeats in Cucumis mapping and map merging [J]. Genome,2000,43:963~974
19Danin-Poleg Y, Reis N, Tznri G, et al. Development and characterization of microsatellite markers in Cucumis [J]. Theor Appl Genet, 2001,102: 61~72
20Bradeen J M, Staub J E, Wye C, et al. Towards an expanded and integrated linkage map of cucumber (Cucumis sativus L.) [J]. Genome, 2001, 44: 111~119
21Zhang G P, Xiang C P, Li XX. Analysis of 50 cucumber accessions by RAPD markers[J]. Hunan Agricultural Science & Technology Newsletter,2002,3:10~14
22 庄飞云,陈劲枫.黄瓜栽培种、近缘野生种、种间杂种及其回交后代的分析[J].园艺学报,2003,30(1): 47~50
23许勇.黄瓜.见:周长久主编.蔬菜种质资源概论.北京:北京农业大学出版社,1994.163~171
24冯东昕,李宝栋.主要瓜类作物抗霜霉病育种研究进展[J].中国蔬菜,1997,(2):45~48
25Horejsi T, Staub J E, Thomas C. Linkage of random amplified polymorphic DNA markers to downy mildew resistance in cucumber (Cucumis sativus L.) [J]. Euphytica, 2000,115:105~113
26Staub J E, Meglic V. Molecular genetic markers and their legal relevance for cultivars discrimination: A case study in cucumber [J]. HortTechnology, 1993,3:291~300
27Meglic V and Staub JE. Inheritance and linkage relationships of isozyme and morphological loci in cucumber (Cucumis Sativus L) [J]. Theor Appl Genet, 1996, 92: 865~872
28Pierce L K, Wehner TC. Review of Genes and Linkage Groups in Cucumber [J]. Hortscience, 1990, 25(6):605~615
29许占友,常汝镇,邱丽娟,李向华.大豆遗传图谱研究进展及对应的几个问题[J].大豆科学,2001,20(2):133~137
30Fanourakis N E, Simon P W. Analysis of genetic linkage in the cucumber [J]. The Journal of Heredity,1987,78:238~242
31Vakalounakis D J. Heartleaf, a recessive leaf shape marker in cucumber: Linkage with disease resistance and other traits [J]. The Journal of Heredity,1992,83:217~221
32黎裕.高粱的遗传图谱——分子标记的应用[J].国外农学—杂粮作物,1997,(2):12~16
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