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Articles citing this paper The effect of different height reducing genes on the early growth of wheat Marc H. Ellis, Greg J. Rebetzke, Peter Chandler, David Bonnett, Wolfgang Spielmeyer and Richard A. Richards Functional Plant Biology 31(6) 583 - 589 Full text doi:10.1071/FP03207 14 articles found in CrossRef database. Physiological traits and cereal germplasm for sustainable agricultural systems Richards R. A., Watt M., Rebetzke G. J. Euphytica. 2007 154(3). p.409 [CrossRef] The effects of dwarfing genes on seedling root growth of wheat Wojciechowski T., Gooding M.J., Ramsay L., Gregory P.J. Journal of Experimental Botany. 2009 60(9). p.2565 [CrossRef] Molecular mapping of genes for Coleoptile growth in bread wheat (Triticum aestivum L.) Rebetzke G. J., Ellis M. H., Bonnett D. G., Richards R. A. Theoretical and Applied Genetics. 2007 114(7). p.1173 [CrossRef] A QTL on chromosome 6A in bread wheat (Triticum aestivum) is associated with longer coleoptiles, greater seedling vigour and final plant height Spielmeyer W., Hyles J., Joaquim P., Azanza F., Bonnett D., Ellis M. E., Moore C., Richards R. A. Theoretical and Applied Genetics. 2007 115(1). p.59 [CrossRef] Effects of specific Rht and Ppd alleles on agronomic traits in winter wheat cultivars grown in middle Europe Šíp Václav, Chrpová Jana, Žofajová Alžběta, Pánková Kateřina, Užík Martin, Snape John W. Euphytica. 2009 [CrossRef] Longer coleoptiles improve emergence through crop residues to increase seedling number and biomass in wheat (Triticum aestivum L.) Rebetzke G. J., Bruce S. E., Kirkegaard J. A. Plant and Soil. 2005 272(1-2). p.87 [CrossRef] Genetic analysis of coleoptile length and diameter in wheat Rebetzke G. J., Richards R. A., Sirault X. R. R., Morrison A. D. Australian Journal of Agricultural Research. 2004 55(7). p.733 [CrossRef] Isolation and characterisation of six putative wheat cell wall-associated kinases Liu Yong, Liu Dongcheng, Zhang Haiying, Gao Hongbo, Guo Xiaoli, Fu Xiangdong, Zhang Aimin Functional Plant Biology. 2006 33(9). p.811 [CrossRef] Molecular mapping of gibberellin-responsive dwarfing genes in bread wheat Ellis M. H., Rebetzke G. J., Azanza F., Richards R. A., Spielmeyer W. Theoretical and Applied Genetics. 2005 111(3). p.423 [CrossRef] The contribution of the gibberellin-insensitive semi-dwarfing (Rht) genes to genetic variation in wheat seedling growth in response to osmotic stress LANDJEVA S., KORZUN V., STOIMENOVA E., TRUBERG B., GANEVA G., BÖRNER A. The Journal of Agricultural Science. 2008 146(3). [CrossRef] Response to selection, combining ability and heritability of coleoptile length in winter wheat Murphy K., Balow K., Lyon S. R., Jones S. S. Euphytica. 2008 164(3). p.709 [CrossRef] Reduced height (Rht) and photoperiod insensitivity (Ppd) allele associations with establishment and early growth of wheat in contrasting production systems Addisu M., Snape J. W., Simmonds J. R., Gooding M. J. Euphytica. 2009 166(2). p.249 [CrossRef] Using a model-based framework for analysing genetic diversity during germination and heterotrophic growth of Medicago truncatula Brunel S., Teulat-Merah B., Wagner M.-H., Huguet T., Prosperi J. M., Durr C. Annals of Botany. 2009 103(7). p.1103 [CrossRef] Variation in south Asian wheat germplasm for seedling drought tolerance traits Rosyara Umesh R., Ghimire Amrit A., Subedi Sushil, Sharma Ram C. Plant Genetic Resources. 2008 7(1). p.88 [CrossRef] |






