Identification and characterization of quantitative trait loci for grain yield and its components under different nitrogen fertilization levels in rice (Oryza sativa L.)

被引:0
作者
Han-hua Tong
Liang Chen
Wei-ping Li
Han-wei Mei
Yong-zhong Xing
Xing-qiao Yu
Xiao-yan Xu
Shan-qing Zhang
Li-jun Luo
机构
[1] Huazhong Agricultural University,College of Plant Science and Technology, National Key Laboratory of Crop Genetic Improvement
[2] Shanghai Agrobiological Gene Center,Chinese National Center for Rice Improvement, National Key Laboratory of Rice Biology
[3] China National Rice Research Institute,undefined
来源
Molecular Breeding | 2011年 / 28卷
关键词
Rice; Recombinant inbred line; Nitrogen use efficiency; Grain yield; Correlation analysis; Path analysis; Quantitative trait locus;
D O I
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中图分类号
学科分类号
摘要
A set of rice (Oryza sativa L.) recombinant inbred lines from a cross between Zhenshan 97 (indica) and HR5 (indica) was planted for four different growing seasons in two locations at three nitrogen (N) fertilization levels (N300, 300 kg urea/ha; N150, 150 kg urea/ha; and N0, 0 kg urea/ha). Grain yield and its components were evaluated, including grain yield per plant (GYPP), panicle number per plant (PNPP), grain number per panicle (GNPP), filled grains per panicle (FGPP), spikelet fertility percentage (SFP) and 100-grain weight (HGW). Correlation and path analysis indicated that SFP had the greatest contribution to GYPP at the N300 and N150 levels, but FGPP contributed the most to GYPP at the N0 level. Quantitative trait loci (QTL) were mapped based on a mixed linear model; genetic components (main effects, epistatic effects and QTL-by-environment interactions) were estimated separately. Six to 15 QTL with main effects were detected for each trait except SFP. Clusters of main-effect QTL associated with PNPP, GNPP, SFP and HGW were observed in regions on chromosomes 1, 2, 3, 5, 7 and 10. The main-effect QTL (qGYPP-4b and qGNPP-12) were only detected at the N0 level and explained 10.9 and 10.2% of the total phenotypic variation, respectively. A total of 33 digenic interactions among grain yield and its components were also identified. The identification of genomic regions associated with yield and its components at different nitrogen levels will be useful in marker-assisted selection for improving the nitrogen use efficiency of rice.
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页码:495 / 509
页数:14
相关论文
共 221 条
[1]  
Agrama HAS(1999)Identification of quantitative trait loci for nitrogen efficiency in maize Mol Breed 5 187-195
[2]  
Zakaria AG(2003)QTLs conferring cold tolerance at the booting stage of rice using recombinant inbred lines from a Theor Appl Genet 106 1084-1090
[3]  
Said FB(2001) ×  Maydica 46 53-68
[4]  
Tuinstra MR(1987) cross Agron J 79 786-791
[5]  
Andaya VC(2002)Genetic variation for nitrogen use efficiency in a set of recombinant maize inbred lines: II. QTL detection and coincidences Theor Appl Genet 104 1192-1203
[6]  
Mackill DJ(2007)Measures of nitrogen utilization efficiency in rice genotypes Mol Cell 23 72-79
[7]  
Bertin P(2008)QTL mapping and introgression of yield-related traits from Plant Physiol 147 469-486
[8]  
Gallais A(1988) to cultivated rice ( Nature 334 207-208
[9]  
Broadbent FE(2003) L Theor Appl Genet 106 649-658
[10]  
De Datta SK(1990)) using microsatellite markers Field Crop Res 23 81-92