Acta Agron Sin ›› 2010, Vol. 36 ›› Issue (11): 1805-1819.doi: 10.3724/SP.J.1006.2010.01805
• REVIEW • Next Articles
YAN Wei-Kai
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GGE biplot—an ideal method for analyzing genotype by environment interaction patterns. Acta Agron Sin (作物学报), 2001, 27(1): 21-28 (in Chinese with English abstract) [21]Yang R C, Crossa J, Cornelius P L, Burgueño J. Biplot analysis of genotype × environment interaction: Proceed with caution. Crop Sci, 2009, 49: 1564-1576 [22]Yan W. Singular value partitioning for biplot analysis of multi-environment trial data. Agron J, 2002, 94: 990-996 [23]Gauch H G Jr, Zobel R W. AMMI analysis of yield trials. In: Kang M S, Gauch H G, eds. Genotype-by-Environment Interaction. Boca Raton, FL: CRC Press, 1996. pp 85-122 [24]Yan W, Tinker N A. A biplot approach to the investigation of QTL-by-environment patterns. Mol Breed, 2005, 15: 31-43 [25]Vargas M, Crossa J, van Eeuwijk F A, Ramírez M E, Sayre K. Using partial least squares regression, factorial regression, and AMMI models for interpreting genotype x environment interaction. Crop Sci, 1999, 39: 955-967 [26]Chapman S, Schenk P, Kazan K, Manners J. Using biplots to interpret gene expression patterns in plants. Bioinformatics, 2002, 18: 202-204 [27]Yan W, Frégeau-Reid J A, Pageau D, Martin R, Mitchell-Fetch J, Etienne M, Rowsell J, Scott P, Price M, de Haan B, Cummiskey A, Lajeunesse J, Durand J, Sparry E. Identifying essential test locations for oat breeding in eastern Canada. Crop Sci, 2010, 50: 504-515 (http://crop.scijournals.org/ cgi/reprint/50/2/504) [28]Yan W, Holland J B. A Heritability-adjusted GGE Biplot for test environment evaluation. Euphytica, 2010, 171:355-369 (http://www.springerlink. com/content/p816144m1574x358/fulltext.pdf ) [29]Smith A, Cullis, B R, Thompson R. Exploring variety-environment data using random effects AMMI models with adjustment for spatial field trends: Part 1: Theory. In: Kang M S ed. Quantitative Genetics, Genomics and Plant Breeding. Wallingford, Oxon, UK: CABI Publishing, 2003. pp 323-336 [30]Yan W, Tinker N A. An integrated system of biplot analysis for displaying, interpreting, and exploring genotype-by-environment interactions. Crop Sci, 2005, 45: 1004-1016 [31]Yan W, Rajcan I. Biplot Analysis of test sites and trait relations of soybean in Ontario. Crop Sci, 2002, 42: 11-20 [32]Casanoves F, Baldessari J, Balzarini M. Evaluation of multienvironment trials of peanut cultivars. Crop Sci, 2005, 45: 18-26 [33]Blanche S B, Myers G O. Identifying discriminating locations for cultivar selection in Louisiana. Crop Sci, 2006, 46: 946-949 [34]Lebart L. Which bootstrap for principal axes methods. In: Vrito P, Bertrand P, Cucumel G F, de Carvalho F eds. Selected Contributions in Data Analysis and Classification, Part VII. Berlin, Heidelberg: Springer, 2007. pp 581-588 [35]Yan W, Frégeau-Reid J A. Breeding line selection based on multiple traits. Crop Sci, 2008, 48: 417-423 [36]Allen F L, Comstock R E, Rasmusson D C. Optimal environments for yield testing. 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Plant Breed, 2008, 127: 554-560 [42]Yan W, Hunt L A. Biplot analysis of diallel data. Crop Sci, 2002, 42: 21-30 [43]Shang Y(尚毅), Li S-Q(李少钦), Li D-R(李殿荣). GGE biplot analysis of diallel cross of B. napus L. Acta Agron Sin (作物学报), 2006, 3(2): 243-248 (in Chinese with English abstract) [44]Yan W, Falk D E. Biplot analysis of host-by-pathogen interaction. Plant Dis, 2002, 86: 1396-1401 [45]Chen S-L(陈四龙), Li Y-R(李玉荣), Cheng Z-S(程增书), Liu J-S(刘吉生). GGE biplot analysis of effects of planting density on growth and yield components of high oil peanut. Acta Agron Sin (作物学报), 2009, 35(7): 1328-1335 (in Chinese with English abstract) [46]Ma B-L, Yan W, Dwyer L M, Frégeau-Reid J A, Voldeng H D, Dion Y, Nass H. Graphic analysis of genotype, environment, nitrogen fertilizer and their interactions on spring wheat yield. Agron J, 2004, 96: 169-180 [47]Yan W, Glover K D, Kang M S. Comment on “Biplot Analysis of Genotype × Environment Interaction: Proceed with Caution”. Crop Sci, 2010, 50: 1121-1123 |
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