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Studies of Multi-Allelic Polymorphism of Dominant Dwarfing Genes in Wheat

Studies of Multi-Allelic Polymorphism of Dominant Dwarfing Genes in Wheat

作     者:FU Da-xiong, RUAN Ren-wu, YIN Jia-min, ZONG Xue-feng, DAI Xiu-mei, ZHANG Jian-kui, LI Ke, QU Jie and WANG Yi-min (College of Agronomy and Life Science, Southwest Agricultural University, Chongqing 400716, P.R.China) 

作者机构:College of Agronomy and Life Science Southwest Agricultural University Chongqing 400716 P. R. China 

出 版 物:《Agricultural Sciences in China》 (中国农业科学(英文版))

年 卷 期:2003年第2卷第12期

页      面:1302-1313页

学科分类:09[农学] 0901[农学-作物学] 

基  金:This work was supported by Science and Technology Commission of Chongqing Municipality for the Project“Innovation of Genetic Resources of Wheat" by the National Natural Science Foundation of China for the Project“Studies of Mutialelie Polymorphism of Dominant Dwarfing Genes in Wheat(30370875/C02020502)” 

主  题:Wheat Dominant dwarfing sources Mutation Multiple alleles Dwarfing breeding 

摘      要:Dwarfing breeding of wheat in the world is confined to the exploitation of recessive dwarfing sources. None of the dominant dwarfing sources discovered in common wheat (Triticum aestivum L.) has found wide exploitation in wheat breeding due to the extreme dwarfness of their plants (2055 cm). We found in our work that some stable mutant lines with their plant height enhanced to different extents could be obtained in large populations derived from the stock seeds of the dominant dwarfing sources Aibian1 carrying Rht10 on 4DS and being 2055 cm tall and Aisu2 carrying Rht3 on 4BS and being 55 cm tall, or from their descendants of induced mutation treatments, or from the segregating descendants of their crosses with mid- or tall-statured genotypes. Subsequently, we studied these mutation-derived lines differing in plant height with near isogenic lines and observed that the character of their enhanced plant height bred true, each carrying a semi-dominant dwarfing gene for a definite height and that as the plant height of the mutation-derived lines increased, the yield-contributing characters of their near isogenic lines were significantly improved. When test crosses with marker genes and physiological and biochemical genetic marker tests were performed to re-localize the semi-dominant dwarfing genes carried by the mutation-derived lines, it was confirmed that they shared common loci with Rht10 and Rht3 and that they were all mutation-derived multiple alleles. It is thus speculated that dominant dwarfing genes are of multi-allelic polymorphism . In other words, dominant dwarfing genes, which are ultra-dwarfing, are liable to develop by mutation into a group of multiple alleles with plant height enhanced to different extents and some may have a height close to the ideal plant height for wheat breeding. Therefore, these results offer a fundamentally new approach for the exploitation of dominant dwarfing sources in wheat breeding.

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