Genetic mapping and analysis of quantitative trait loci affecting fiber and lignin content in maize

被引:0
|
作者
A. Cardinal
M. Lee
K. Moore
机构
[1] Department of Agronomy,
[2] Iowa State University,undefined
[3] Ames,undefined
[4] IA 50011,undefined
[5] USA,undefined
[6] Present address: Crop Science Department,undefined
[7] 840 Method Rd. Unit 3,undefined
[8] Box 7629,undefined
[9] North Carolina State University,undefined
[10] Raleigh,undefined
[11] NC 27695-7629,undefined
[12] USA,undefined
来源
关键词
Quantitative trait loci Neutral detergent fiber Acid detergent fiber Acid detergent lignin Zea mays;
D O I
暂无
中图分类号
学科分类号
摘要
Plant cell walls of forage provide a major source of energy for ruminant animals. Digestion of cell walls is limited by the presence of lignin, therefore the improving the digestibility of forages by reducing lignin content is a major goal in forage crop breeding programs. A recombinant inbred line maize population was used to map quantitative trait loci (QTL) for neutral detergent fiber (NDF), acid detergent fiber (ADF), and acid detergent lignin (ADL) of leaf-sheath and stalk tissues. All traits were positively genetically correlated. The larger genetic correlations were between NDF and ADF in sheaths (r = 0.84), NDF and ADF (r = 0.96), ADF and ADL (r = 0.83), and NDF and ADL (r = 0.76) in stalks. Twelve QTL were detected for NDF and 11 QTL for ADF in leaf-sheaths. Eight QTL detected for both traits were defined by the same or linked marker loci. Eight QTL were associated with leaf-sheath ADL. Eleven QTL were detected for NDF and ADF, and 12 QTL for ADL in stalks. Nine of eleven QTL detected for both NDF and ADF in stalks coincided in their genomic position. A high proportion of QTL detected for these traits had the same parental effects and genomic locations, suggesting that it is only necessary to select on one fiber component (NDF or ADF) to improve digestibility. Favorable correlated responses of unselected fiber components are expected due to coincident genomic locations of QTL and the high genetic correlation between fiber components. Several QTL detected in this study coincided in their positions with putative cellulose synthase genes from maize.
引用
收藏
页码:866 / 874
页数:8
相关论文
共 50 条
  • [31] Integration of Quantitative Trait Loci Mapping and Expression Profiling Analysis to Identify Genes Potentially Involved in Ramie Fiber Lignin Biosynthesis
    Chen, Jianrong
    Rao, Jing
    Wang, Yanzhou
    Zeng, Zheng
    Liu, Fang
    Tang, Yinghong
    Chen, Xiaorong
    Liu, Chan
    Liu, Touming
    GENES, 2019, 10 (11)
  • [32] Genetic dissection of tocopherol content and composition in maize grain using quantitative trait loci analysis and the candidate gene approach
    Subhash Chander
    Y. Q. Guo
    X. H. Yang
    J. B. Yan
    Y. R. Zhang
    T. M. Song
    J. S. Li
    Molecular Breeding, 2008, 22
  • [33] Mapping of quantitative trait loci for oil content in cottonseed kernel
    Alfred, Quampah
    Liu, Hai Ying
    Xu, Hai Ming
    Li, Jin Rong
    Wu, Jian Guo
    Zhu, Shui Jin
    Shi, Chun Hai
    JOURNAL OF GENETICS, 2012, 91 (03) : 289 - 295
  • [34] Quantitative Trait Loci Mapping for Seed Calcium Content of Soybean
    Orazaly, M.
    Chen, P.
    Zhang, B.
    Zeng, A.
    CROP SCIENCE, 2014, 54 (02) : 500 - 506
  • [35] Genetic dissection of tocopherol content and composition in maize grain using quantitative trait loci analysis and the candidate gene approach
    Chander, Subhash
    Guo, Y. Q.
    Yang, X. H.
    Yan, J. B.
    Zhang, Y. R.
    Song, T. M.
    Li, J. S.
    MOLECULAR BREEDING, 2008, 22 (03) : 353 - 365
  • [36] Mapping of quantitative trait loci for oil content in cottonseed kernel
    QUAMPAH ALFRED†
    HAI YING LIU†
    HAI MING XU
    JIN RONG LI
    JIAN GUO WU
    SHUI JIN ZHU
    CHUN HAI SHI
    Journal of Genetics, 2012, 91 : 289 - 295
  • [37] Genetic analysis of quantitative trait loci for groat protein and oil content in oat
    Zhu, S
    Rossnagel, BG
    Kaeppler, HF
    CROP SCIENCE, 2004, 44 (01) : 254 - 260
  • [38] Molecular mapping of quantitative trait loci for drought tolerance in maize plants
    Rahman, H.
    Pekic, S.
    Lazic-Jancic, V.
    Quarrie, S. A.
    Shah, S. M. A.
    Pervez, A.
    Shah, M. M.
    GENETICS AND MOLECULAR RESEARCH, 2011, 10 (02): : 889 - 901
  • [39] Mapping of quantitative trait loci conferring resistance to maize streak virus
    Lu, XW
    Brewbaker, JL
    Nourse, SM
    Moon, HG
    Kim, SK
    Khairallah, M
    MAYDICA, 1999, 44 (04): : 313 - 318
  • [40] Quantitative Trait Loci Mapping in Maize for Resistance to Larger Grain Borer
    Mwololo, J. K.
    Mugo, S.
    Otim, M.
    Munyiri, S. W.
    Okori, P.
    MAYDICA, 2018, 63 (03):