Genetic analysis of drought-adaptive traits at seedling stage in early-maturing maize inbred lines and field performance under stress conditions

被引:0
作者
S. A. Adewale
R. O. Akinwale
M. A. B. Fakorede
B. Badu-Apraku
机构
[1] Obafemi Awolowo University,Department of Crop Production and Protection
[2] International Institute of Tropical Agriculture,undefined
[3] c/o L.W. Lambourne and Co.,undefined
来源
Euphytica | 2018年 / 214卷
关键词
Combining ability; Drought; Hybridization; Maize;
D O I
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学科分类号
摘要
Maize hybrids that are tolerant to drought at the seedling stage are needed to boost productivity in the rainforest agro-ecology of West Africa. Genetics of tolerance of maize seedling to drought stress is not well understood and is poorly documented. The objectives of this study were to screen early-maturing maize lines for seedling drought tolerance, determine the inheritance and the combining ability of selected inbred lines, and evaluate the performance of seedling drought-tolerant hybrids under field conditions. Forty-nine early maize lines were screened for drought tolerance at the seedling stage. Ten drought-tolerant and two susceptible inbred lines were selected and used in diallel crosses to generate 66 hybrids. The twelve inbred lines and their hybrids were evaluated under induced drought at seedling stage in the screen house and under marginal growing conditions on the field for two seasons. Data collected were subjected to analysis of variance using the DIALLEL-SAS program. Mean squares for both GCA and SCA were significant for most traits in all research environments, indicating that additive and non-additive gene actions are controlling seedling traits under stress conditions. However, for most traits, SCA was preponderant over GCA in all environments, indicating overdominating effect of non-additive gene action. Which in turn implied that the best improvement method for the traits is hybridization. Inbred TZEI 7 had the best GCA effect for seedling traits under screenhouse conditions and for grain yield and other agronomic traits under drought conditions in the field. Hybrids TZEI 357 × TZEI 411 and TZEI 380 × TZEI 410 showed superior SCA effects under screen house conditions. In conclusion, the study established wide genetic variability for drought tolerance at seedling stage among tropical early-maturing maize germplasm however, the non-additive gene action was more important for most seedling traits.
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  • [1] Akinwale RO(2014)Heterotic grouping of tropical early-maturing maize inbred lines based on combining ability in Field Crops Res 156 48-62
  • [2] Badu-Apraku B(2016)-infested and Maydica 62 1-5315
  • [3] Fakorede MAB(2016)-free environments and the use of SSR markers for genotyping Afr J Biotech 14 1684-194
  • [4] Vroh-Bi I(2011)Determinants of drought tolerance at seedling stage in early and extra-early maturing maize hybrids Field Crops Res 121 186-942
  • [5] Akinwale RO(2011)Selection criteria for drought tolerance at the vegetative phase in early maturing maize Can J Plant Sci 91 931-130
  • [6] Awosanmi FE(2004)Cultivar evaluation and trait analysis of tropical early maturing maize under Striga-infested and Striga-free environments J Genet Breed 58 119-557
  • [7] Ogunnniyi OO(2004)Identification of early-maturing maize inbred lines based on multiple traits under drought and low N environments for hybrid development and population improvement Agron J 103 544-536
  • [8] Fadoju AO(1978)Response of early maturing maize to multiple stresses in the Guinea savanna of West and Central Africa Crop Sci 18 533-5959
  • [9] Akinwale RO(1999)Combining ability and heterotic groups of early-maturing tropical white maize inbred lines under stress and nonstress environments Proc Natl Acad Sci USA 96 5952-30
  • [10] Fakorede MAB(1985)Issues in diallel analysis Exp Agric 21 19-40