[Objective]The aim was to screening the tartary buckwheat resources with higher Se content.[Method]35 accessions of tartary buckwheat resources were used as experimental materials,and the Se content of seeds were dete...[Objective]The aim was to screening the tartary buckwheat resources with higher Se content.[Method]35 accessions of tartary buckwheat resources were used as experimental materials,and the Se content of seeds were determined.[Result]The Se content of 35 kinds of tartary buckwheat will change in a range of 0.009 9 to 0.120 8 mg/g with an average of 0.040 6 mg/g.There was difference among tartary buckwheat from different origins.The seeds from Gansu had the highest content of Se,while the seeds from Nayong in Guizhou and Shaanxi had a lowest content of Se.[Conclusion]The study had important significance for further study on the genetic and variation law of Se content between different tartary buckwheat resources.展开更多
基金Supported by Science and Technology Foundation of Guizhou Province[Qiankehe-J(2009)No.2108)]Guizhou Normal University Fund for Doctor(2008)~~
文摘[Objective]The aim was to screening the tartary buckwheat resources with higher Se content.[Method]35 accessions of tartary buckwheat resources were used as experimental materials,and the Se content of seeds were determined.[Result]The Se content of 35 kinds of tartary buckwheat will change in a range of 0.009 9 to 0.120 8 mg/g with an average of 0.040 6 mg/g.There was difference among tartary buckwheat from different origins.The seeds from Gansu had the highest content of Se,while the seeds from Nayong in Guizhou and Shaanxi had a lowest content of Se.[Conclusion]The study had important significance for further study on the genetic and variation law of Se content between different tartary buckwheat resources.