Acta Agron Sin ›› 2012, Vol. 38 ›› Issue (12): 2170-2177.doi: 10.3724/SP.J.1006.2012.02170
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
WANG Jian-Jun1,2,3,YONG Hong-Jun2,ZHANG Xiao-Cong2,LI Ming-Shun2,ZHANG De-Gui2,BAI Li2,GAO Zhi-Qiang1,*,ZHANG Shi-Huang2,LI Xin-Hai2,*
[1]Li X-H(李新海), Yuan L-X(袁力行), Li X-H(李晓辉), Zhang S-H(张世煌), Li M-S(李明顺), Li W-H(李文华). Heterotic grouping of 70 maize inbred lines by SSR markers. Sci Agric Sin (中国农业科学), 2003, 36(6): 622–627 (in Chinese with English abstract) [2]Yuan L-X(袁力行), Fu J-H(傅骏骅), Zhang S-H(张世煌), Liu X-Z(刘新芝), Peng Z-B(彭泽斌), Li X-H(李新海). Heterotic grouping of maize inbred lines using RFLP and SSR markers. Acta Agron Sin (作物学报), 2001, 27(2): 149–156 (in Chinese with English abstract)[3]Zhang S H, Li X H, Peng Z B, Yuan L X. Heterotic groups and exploitation of heterosis-the methodology, strategy, and use in hybrid maize breeding in China. In: Proceedings of the 8th Asian Regional Maize Workshop. Bangkok, Thailand, 2002. pp 64–68[4]Meng Y-J(孟义江), Yan J-B(严建兵), Teng W-T(滕文涛), Li J-S(李建生). Trends in genetic diversity among widely used inbreds from 1991 to 2001 in China and application of three major germplasm groups in maize breeding. Sci Agric Sin (中国农业科学), 2010, 43(4): 670–679 (in Chinese with English abstract)[5]Tallury S P, Goodman M M. Experimental evaluation of the potential of tropical germplasm for temperate maize improvement. Theor Appl Genet, 1999, 98: 54–61[6]Vasal S K, Srinivasan G, González F, Beck D L, Crossa J. Heterosis and combining ability of CIMMYT’s quality protein maize germplasm: II. Subtropical. Crop Sci, 1993, 33: 51–57[7]Liang W-K(梁文科), Zhang S-H(张世煌), Qi T-X(戚廷香), Qiu F-Z(邱法展), Tuo H-Z(庹洪章), Liu Y-Z(刘永忠), Zheng Y-L(郑用琏). Dissection of heritability and genetic variance components for yield traits in tropical and temperate maize populations. Sci Agric Sin (中国农业科学), 2006, 39(11): 2178–2185 (in Chinese with English abstract) [8]Zhang D-G(张德贵), Li X-H(李新海), Li M-S(李明顺), Xie C-X(谢传晓), Hao Z-F(郝转芳), Bai L(白丽), Zhang S-H(张世煌), Pan G-T(潘光堂). Direct selection response for flowering traits in four tropical and subtropical maize populations by mass selection. Acta Agron Sin (作物学报), 2010, 36(1): 28–35 (in Chinese with English abstract) [9]Chen H-M(陈洪梅), Wang Y-F(汪燕芬), Yao W-H(姚文华), Luo L-M(罗黎明), Li J-L(李佳莉), Xu C-X(徐春霞), Fan X-M(番兴明), Guo H-C(郭华春). Utilization potential of the temperate maize inbreds integrated with tropical germplasm. Acta Agron Sin (作物学报), 2011, 37(10): 1785–1793 (in Chinese with English abstract)[10]Li M-S(李明顺), Zhang S-H(张世煌), Pan G-T(潘光堂), Li X-H(李新海), Xia X-C(夏先春), Tian Q-Z(田清震), Bai L(白丽). Combining ability and heterotic grouping of CIMMYT subtropical quality protein maize lines. Sci Agric Sin (中国农业科学), 2005, 38(4): 671–677 (in Chinese with English abstract)[11]Mungom C, Pollak L M. Heterotic patterns among ten Corn Belt and exotic maize populations. Crop Sci, 1988, 28: 500–504[12]Melani M D, Carena M J. Alternative heterotic patterns for the northern Corn Belt. Crop Sci, 2005, 45: 2186–2194[13]Rasmussen C C, Hallauer A R. 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Potential of tropical maize populations for improving an elite maize hybrid. Maydica, 2011, 56: 359–366[30]Hallauer A R. Introgression of Elite Subtropical and Tropical Germplasm with U.S. Corn Belt Germlasm. North Central Regional Corn Breeding Meeting, American, 2003. http://corn2.agron.iastate.edu/ncr167/Abstracts/2003/Hallauer_2003_Abstract.pdf |
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