设为首页  |  加入收藏  |  联系我们  |  English  |  中国科学院  
 首  页  实验室概况 研究队伍 科研工作 平台建设 开放交流 人才培养 规章制度
 
  当前位置:首页 > 科研工作 > 发表文章 > 2013年发表文章  
Y. Yang et al., Efficient isolation of ion beam-induced mutants for homoeologous loci in common wheat and comparison of the contributions of Glu-1 loci to gluten functionality. TAG

Y. Yang, S. Li, K. Zhang, Z. Dong, Y. Li, X. An, J. Chen, Q. Chen, Z. Jiao, X. Liu, H. Qin, and D. Wang. Efficient isolation of ion beam-induced mutants for homoeologous loci in common wheat and comparison of the contributions of Glu-1 loci to gluten functionality. Theoretical and Applied Genetics. 2013

 

Abstract:KEY MESSAGE: Ion beam mutations can be efficiently isolated and deployed for functional comparison of homoeologous loci in polyploid plants, and Glu - 1 loci differ substantially in their contribution to wheat gluten functionality. To efficiently conduct genetic analysis, it is beneficial to have multiple types of mutants for the genes under investigation. Here, we demonstrate that ion beam-induced deletion mutants can be efficiently isolated for comparing the function of homoeologous loci of common wheat (Triticum aestivum). Through fragment analysis of PCR products from M2 plants, ion beam mutants lacking homoeologous Glu-A1, Glu-B1 or Glu-D1 loci, which encode high molecular weight glutenin subunits (HMW-GSs) and affect gluten functionality and end-use quality of common wheat, could be isolated simultaneously. Three deletion lines missing Glu-A1, Glu-B1 or Glu-D1 were developed from the original mutants, with the Glu-1 genomic regions deleted in these lines estimated using newly developed DNA markers. Apart from lacking the target HMW-GSs, the three lines all showed decreased accumulation of low molecular weight glutenin subunits (LMW-GSs) and increased amounts of gliadins. Based on the test data of five gluten and glutenin macropolymer (GMP) parameters obtained with grain samples harvested from two environments, we conclude that the genetic effects of Glu-1 loci on gluten functionality can be ranked as Glu-D1 > Glu-B1 > Glu-A1. Furthermore, it is suggested that Glu-1 loci contribute to gluten functionality both directly (by promoting the formation of GMP) and indirectly (through keeping the balance among HMW-GSs, LMW-GSs and gliadins). Finally, the efficient isolation of ion beam mutations for functional comparison of homoeologous loci in polyploid plants and the usefulness of Glu-1 deletion lines for further studying the contribution of Glu-1 loci to gluten functionality are discussed.

 

文章链接:http://www.ncbi.nlm.nih.gov/pubmed/24212587

 
【打印本页】【关闭本页】
Copyright © 植物细胞与染色体工程国家重点实验室(中国科学院遗传与发育生物学研究所)
地址:北京市朝阳区北辰西路1号院2号 邮编:100101 电话: 010-64806537 传真: 010-64806537