QTL mapping for leaf area in maize(Zea mays L.)under multi-environments

被引:0
|
作者
CUI Ting-ting [1 ]
HE Kun-hui [1 ]
CHANG Li-guo [1 ]
ZHANG Xing-hua [1 ]
XUE Ji-quan [1 ]
LIU Jian-chao [1 ]
机构
[1] Key Laboratory of Biology and Genetic Improvement of Maize in Arid Area of Northwest Region,Ministry of Agriculture/College of Agronomy,Northwest A&F University/Maize Engineering & Technology Research Centre of Shaanxi Province
关键词
maize; leaf area; multi-environments; QTL×environment interaction; epistatic effect;
D O I
暂无
中图分类号
S513 [玉米(玉蜀黍)];
学科分类号
摘要
Leaves are the main organs of photosynthesis in green plants. Leaf area plays a vital role in dry matter accumulation and grain yield in maize(Zea mays L.). Thus,investigating the genetic basis of leaf area will aid efforts to breed maize with high yield. In this study,a total of 150Frecombinant inbred lines(RILs)derived from a cross between the maize lines Xu 178 and K12 were used to evaluate three ear-leaves area(TELA)under multi-environments. Inclusive composite interval mapping(ICIM)was used to identify quantitative trait loci(QTLs)for TELA under a single environment and estimated breeding value(EBV). A total of eight QTLs were detected under a single environmental condition,and four QTLs were identified for EBV which also can be detected in single environment. This indicated that the EBV-detected QTLs have high genetic stability. A major QTL(qTELA-9)located in chromosome bin 2.04/2.05 could be detected in four environments and has a high phenotypic contribution rate(ranging from 10.79 to 16.51%)that making it a good target for molecular breeding. In addition,joint analysis was used to reveal the genetic basis of leaf area in six environments. In total,six QTL×environment interactions and nine epistatic interactions were identified. Our results reveal that the genetic basis of the leaf area is not only mainly determined by additive effects,but also affected by epistatic effects environmental interaction effects.
引用
收藏
页码:800 / 808
页数:9
相关论文
共 50 条
  • [1] QTL mapping for leaf area in maize (Zea mays L.) under multi-environments
    Cui Ting-ting
    He Kun-hui
    Chang Li-guo
    Zhang Xing-hua
    Xue Ji-quan
    Liu Jian-chao
    JOURNAL OF INTEGRATIVE AGRICULTURE, 2017, 16 (04) : 800 - 808
  • [2] QTL mapping of resistance to sheath blight in maize (Zea mays L.)
    Yang, H
    Yang, JP
    Rong, TZ
    Tan, J
    Qiu, ZG
    CHINESE SCIENCE BULLETIN, 2005, 50 (08): : 782 - 787
  • [3] QTL mapping of resistance to sheath blight in maize (Zea mays L.)
    YANG Hua1
    2. Crops Institute of Sichuan Academy of Agricultural Science
    3. Chongqing Academy of Agricultural Science
    ChineseScienceBulletin, 2005, (08) : 782 - 787
  • [4] QTL Mapping for Stalk Related Traits in Maize (Zea mays L.) Under Different Densities
    Zhu Li-ying
    Chen Jing-tang
    Li Ding
    Zhang Jian-hua
    Huang Ya-qun
    Zhao Yong-feng
    Song Zhan-quan
    Liu Zhi-zeng
    JOURNAL OF INTEGRATIVE AGRICULTURE, 2013, 12 (02) : 218 - 228
  • [5] QTL Mapping for Stalk Related Traits in Maize (Zea mays L.) Under Different Densities
    ZHU Li-ying
    CHEN Jing-tang
    Li Ding
    ZHANG Jian-hua
    HUANG Ya-qun
    ZHAO Yong-feng
    SONG Zhan-quan
    LIU Zhi-zeng
    Journal of Integrative Agriculture, 2013, 12 (02) : 218 - 228
  • [6] Mapping of QTL conferring resistance to Turcicum Leaf Blight using Microsatellites in Maize (Zea mays L.)
    Jakhar, Dan Singh
    Singh, Rajesh
    Singh, Shravan Kumar
    MAYDICA, 2024, 67 (01):
  • [7] Genetic analysis and QTL mapping for pericarp thickness in maize (Zea mays L.)
    Gong, Guantong
    Jia, Haitao
    Tang, Yunqi
    Pei, Hu
    Zhai, Lihong
    Huang, Jun
    BMC PLANT BIOLOGY, 2024, 24 (01)
  • [8] QTL analysis of ear leaf traits in maize(Zea mays L.)under different planting densities
    Hongwu Wang
    Qianjin Liang
    Kun Li
    Xiaojiao Hu
    Yujin Wu
    Hui Wang
    Zhifang Liu
    Changling Huang
    The Crop Journal, 2017, 5 (05) : 387 - 395
  • [9] QTL analysis of ear leaf traits in maize (Zea mays L.) under different planting densities
    Wang, Hongwu
    Liang, Qianjin
    Li, Kun
    Hu, Xiaojiao
    Wu, Yujin
    Wang, Hui
    Liu, Zhifang
    Huang, Changling
    CROP JOURNAL, 2017, 5 (05): : 387 - 395
  • [10] Genetic analysis of leaf morphology underlying the plant density response by QTL mapping in maize (Zea mays L.)
    Ku, Lixia
    Ren, Zhenzhen
    Chen, Xiao
    Shi, Yong
    Qi, Jianshuang
    Su, Huihui
    Wang, Zhiyong
    Li, Guohui
    Wang, Xiaobo
    Zhu, Yuguang
    Zhou, Jinlong
    Zhang, Xin
    Chen, Yanhui
    MOLECULAR BREEDING, 2016, 36 (05)