Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (2): 191-202.doi: 10.3724/SP.J.1006.2009.00191
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Next Articles
ZHANG Jun12,ZHAO Tuan-Jie1,GAI Jun-YI1*
[1] Board J E, Modali H. Dry matter accumulation predictors for optimal yield in soybean. Crop Sci, 2005, 45: 1790–1799 [2] Yan W K, Rajcan I. Prediction of cultivar performance based on single- versus multiple-year tests in soybean. Crop Sci, 2003, 43: 549–555 [3] Xiong D-J(熊冬金), Zhao T-J(赵团结), Gai J-Y(盖钧镒). Geo-graphical sources of germplasm and their nuclear and cytoplas-mic contribution to soybean cultivars released during 1923 to 2005 in China. Acta Agron Sin (作物学报), 2008, 34(2): 175–183(in Chinese with English abstract) [4] Zhou X L, Carter Jr T E, Cui Z L, Miyazaki S, Burto J W. Ge-netic diversity patterns in Japanese soybean cultivars based on coefficient of parentage. Crop Sci, 2002, 42: 1331–1342 [5] Cui Z L, Carter Jr T E, Burton J W. Genetic diversity patterns in Chinese soybean cultivars based on coefficient of parentage. Crop Sci, 2000, 40: 1780–1793 [6] Breseghello F, Sorrells M E. Association mapping of kernel size and milling quality in wheat (Triticum aestivum L.) cultivars. Genetics, 2006, 172: 1165–1177 [7] Flint-Garcia S A, Thuillet A C, Yu J M, Pressoir G, Romero S M, Mitchell S E, Doebley J, Kresovich S, Goodman M M, Buckler E S. Maize association population: A high resolution platform for quantitative trait locus dissection. Plant J, 2005, 44: 1054–1064 [8] Ivandic1 V, Hackett C A, Nevo E, Keith R, Thomas W T B, Forster B P. Analysis of simple sequence repeats (SSRs) in wild barley from the Fertile Crescent: Associations with ecology, geo- graphy and flowering time. Plant Mol Biol, 2002, 48: 511–527 [9] Wilson L M, Whitt S R, Ibá?ez A M, Rocheford T R, Goodman M M, Buckler E S. Dissection of maize kernel composition and starch production by candidate gene association. Plant Cell, 2004, 16: 2719–2733 [10] Agrama H A, Eizenga G C, Yan W. Association mapping of yield and its components in rice cultivars. Mol Breed, 2007, 19: 341–356 [11] Zhang J(张军), Zhao T-J(赵团结), Gai J-Y(盖钧镒). Association analysis of agronomic trait QTLs with SSR markers in released soy-bean cultivars. Acta Agron Sin (作物学报), 2008, 34(12): 1–11(in Chinese with English abstract) [12] Guan R-X(关荣霞), Guo J-J(郭娟娟), Chang R-Z(常汝镇), Qiu L-J(邱丽娟). Marker-based evidence of broadening the genetic base of Chinese soybeans by using introduced soybeans. Acta Agron Sin (作物学报), 2007, 33(9): 1393–1398(in Chinese with English abstract) [13] Zhang B(张博), Qiu L-J(邱丽娟), Chang R-Z(常汝镇). Diversity comparison and genetic relationship analysis between awarded soybean cultivars and their ancestors in China. J Agric Biotechnol (农业生物技术学报), 2003, 11(4): 351–358(in Chinese with English abstract) [14] Qin J(秦君), Chen W-Y(陈维元), Guan R-X(关荣霞), Jiang C-X(姜成喜), Li Y-H(李英惠), Fu Y-S(付亚书), Liu Z-X(刘章雄), Zhang M-C(张孟臣), Chang R-Z(常汝镇), Qiu L-J(邱丽娟). Genetic contribution of foreign germplasm to elite Chinese soy-bean (Glycine max) cultivars revealed by SSR markers. Chin Sci Bull (科学通报), 2006, 51(6): 686–692(in Chinese) [15] Fu Y B, Peterson G W, Scoles G, Rossnagel B, Schoen D J, Richards K W. Allelic diversity changes in 96 Canadian oat culti-vars released from 1886 to 2001. Crop Sci, 2003, 43: 1989–1995 [16] Reif J C, Hamrit S, Heckenberger M, Schipprack W, Maurer H P, Bohn M, Melchinger A E. Trends in genetic diversity among European maize cultivars and their parental components during the past 50 years. Theor Appl Genet, 2005, 111: 838–845 [17] Fu Y B, Peterson G W, Richards K W, Somers D, DePauw R M, Clarke J M. Allelic reduction and genetic shift in the Canadian hard red spring wheat germplasm released from 1845 to 2004. Theor Appl Genet, 2005, 110: 1505–1516 |
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