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Chinese Journal of Applied Ecology ›› 2012, Vol. 23 ›› Issue (06): 1569-1576.

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Genetic characteristics associated with drought tolerance of plant height and thousand-grain mass of recombinant inbred lines of wheat.

YANG De-long1, 2, ZHANG Guo-hong3, LI Xing-mao3, XING Hua2, CHENG Hong-bo2, NI Sheng-li3, CHEN Xiao-ping2   

  1. (1Gansu Province Key Laboratory of Aridland Crop Science, Lanzhou 730070, China; 2College of Life Science and Technology, Gansu Agricultural University, Lanzhou 730070, China; 3Dryland Farm Institute, Gansu Academy of Agricultural Sciences, Lanzhou 730070, China)
  • Online:2012-06-18 Published:2012-06-18

Abstract: A total of 120 recombinant inbred lines (RIL) derived from Chinese winter wheat cultivars Longjian 19×Q9086 and the two parents were taken as test materials to study the quantitative genetics characteristics of their plant height at different development stages, thousand-grain mass, as well as the correlations between the two traits under rainfed (drought stress) and wellwatered conditions, and evaluate the genetic variation of the RIL. Under the two water conditions, the target traits of the RIL showed substantial transgressive segregation and great sensitivity to water condition. The drought stress coefficient of the plant height was higher at jointing stage, being up to 0.851. There was a significant positive correlation between the plant height at different development stages and the thousand-grain mass, and comparing with that at other growth stages, the plant height at jointing stage had a higher correlation coefficient with the thousand-grain mass (R2DS=0.32,R2WW=0.28). The plant height at both jointing and flowering stages had significant positive and direct effect but negative and indirect gross effect on the thousand-grain mass, while the plant height at heading and maturing stages was in adverse. The target traits showed a lower heritability ranged from 0.27 to 0.60. The numbers of the gene pairs controlling the thousandgrain mass were 10 under rainfed and 13 under well-watered conditions, while those of the gene pairs controlling the plant height at different development stages were 3-7 under rainfed and 4-14 under well-watered conditions, respectively. According to the clustering of the drought stress coefficient of plant height, the RIL could be classified into five subgroups, showing the abundant variation of the RIL in their phenotypes and in the sensitivity to water condition. It was considered that the test RIL were appropriate for the study of the quantitative genetics of wheat drought resistance.