Acta Agron Sin ›› 2010, Vol. 36 ›› Issue (1): 177-183.doi: 10.3724/SP.J.1006.2010.00177
• RESEARCH ACTIVITIES • Previous Articles Next Articles
LIU Xin-Long1,2,MAO Jun1,2,LU Xin1,2,MA Li1,2,Karen Sarah AITKEN 4,Phillip Andrew JACKSON4,CAI Qing1,3,FAN Yuan-Hong1,2,*
[1] D’Hont A, Grivet L, Feldmann P, Rao S, Berding N, Glaszmann J C. Characterization of the double genome structure of modern sugarcane cultivars (Saccharum spp.) by molecular cytogenetics. Mol Gen Genet, 1996, 250: 405-413[2] Bhat S R, Gill B S. The implication of 2n egg gametes in nobilisation and breeding of sugarcane. Euphytica, 1985, 34: 377-384[3] Irvine J E. Saccharum species as horticultural classes. Theor Appl Genet, 1999, 98: 186-194[4] D’Hont A, Paulet F, Glaszmann J C. Oligoclonal interspecific origin of ‘North Indian’ and ‘Chinese’ sugarcanes. Chrom Res, 2002, 10: 253-262[5] Brown J S, Schnell R J, Power E J, Douglas S L, Kuhn D N. Analysis of clonal germplasm from five Saccharum species: S. barberi, S. robustum, S. officinarum, S. sinense and S. spontaneum. A study of inter-and intra species relationships using microsatellite markers. Genet Resour Crop Evol, 2007, 54: 627-648[6] Grivet L, Arruda P. Sugarcane genomics: Depicting the complex genome of an important tropical crop. Curr Opin Plant Biol, 2001, 5: 122-127[7] Aitken K S, Jackon P A, McIntyre C L. A combination of AFLP and SSR markers provides extensive map coverage and identification of homo (eo)logous linkage groups in a sugarcane cultivar. Theor Appl Genet, 2005, 110: 789-801[8] Grivet L, D’Hont A, Roques D, Feldmann P, Lanaud C, Glaszmann J C. RFLP mapping incultivated sugarcane (Saccharum spp.): Genome organisation in a highly polyploid and Aneuploid interspecific hybrid. Genetics, 1996, 142: 987-1000[9] Hoarau J Y, Offmann B, D’ Hont A, Risterucci AM, Roques D, Glaszmann J C, Grivet L. Genetic dissection of a modern sugarcane cultivar (Saccharum spp.): 1. Genome mapping with AFLP markers. Theor Appl Genet, 2001, 103: 84-97[10] Al-Janabi S M, Honeycutt R J, McClelland M, Sobral B W S. A genetic linkage map of Saccharum spontaneum L. ‘SES 208’. Genetics, 1993, 134: 1249-1260[11] Da Silva J A G, Sorrells M E, Burnquist W L, Tanksley S D. RFLP linkage map and genome analysis of Saccharum spontaneum. Genome, 1993, 36: 782-791[12] Ming R, Liu S C, Lin Y R, Da Silva J A G, Wilson W, Braga D, van Deynze A, Wenslaff T F, Wu K K, Moore P H, Burnquist W, Sorrells M E, Irvine J E, Paterson A H. Detailed alignment of Saccharum and Sorghum chromosomes: Comparative organization of closely related diploid and polyploid genomes. Genetics, 1998, 150: 1663-1682[13] Ming R, Liu S C, Bowers J E, Moore P H, Irvine J E, Paterson A H. Construction of Saccharum consensus genetic map from two interspecific crosses. Crop Sci, 2002, 42: 570-583[14] Mudge J, Andersen W R, Kehrer R L, Fairbanks D J. A RAPD genetic map of Saccharum officinarum. Crop Sci, 1996, 36: 1362-1366[15] Guimaraes C T, Sills G R, Sobral B W S. Comparative mapping of Andropogoneae: Saccharum L. (sugarcane) and its relation to sorghum and maize. Proc Natl Acad Sci USA, 1997, 94: 14261-14266[16] D’Hont A, Lu Y H, Gonzalez De Leon D, Grivet L, Feldmann P, Lanaud C, Glaszmann J C. A molecular approach to unravelling the genetics of sugarcane, a complex polyploid of the Andropogoneae tribe. Genome, 1994, 37: 222-230[17] Fang X-J(方宣钧), Wu W-R(吴为人), Tang J-L(唐纪良). DNA Marker Assisted Selection Breeding of Crop. Beijing: China Science Press, 2002. pp 22-28 (in Chinese)[18] Cai Q, Aitken K, Fan Y H, Piperidis G, Jackson P, McIntyre C L. A preliminary assessment of the genetic relationship between Erianthus rockii and the ‘‘Saccharum complex’’ using micro-satellite (SSR) and AFLP markers. Plant Sci, 2005, 169: 976-984[19] Wu K K, Burnquist W, Sorrells M E, Tew T L, Moore P H, Tanksley S D. The detection and estimation of linkage in polyploids using single-dose restriction fragments. Theor Appl Genet, 1992, 83: 294-300[20] Stam P. Construction of integrated genetic linkage maps by means of a new computer package: JoinMap. Plant J, 1993, 3: 739-744[21] Xiao B-G(肖炳光), Xu Z-L(徐照丽), Chen X-J(陈学军), Shen A-R(申爱荣), Li Y-P(李永平), Zhu J(朱军). Genetic linkage map constructed by using a DH population for the flue-cured tobacco. Acta Tab Sin (中国烟草学报), 2006, 12(4): 35-40 (in Chinese with English abstract)[22] Ripol M I, Churchill G A, Da Silva J A G, Sorrells M. Statistical aspects of genetic mapping in autopolyploids. Gene, 1999, 235: 31-41[23] Wang G-L(王关林), Fang H-J(方宏筠). Plant Genetic Engineering (植物基因工程). Beijing: China Science Press, 2002. pp 232-239 (in Chinese) |
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