Promoter Variation Results in Differential Phytoalexin Accumulation in Two Maize Inbred Lines

被引:0
|
作者
Panpan Yang
Jingye Fu
Jin Liang
Qinqin Shen
Lijun Liu
Liping Wang
Qiang Wang
机构
[1] Sichuan Agricultural University,Institute of Ecological Agriculture
来源
关键词
Maize; Phytoalexin; Promoter; Inbred line; -Element;
D O I
暂无
中图分类号
学科分类号
摘要
Crop varieties exhibited phenotype variations during domestication and breeding. Such phenotype variations include secondary metabolism differentiation; however, the underlying mechanisms remain to be clarified. Here, two elite maize inbred lines Mo17 and HZ4 were analyzed to determine constitutive phytoalexin accumulation including zealexins and kauralexins. Both inbred lines produced phytoalexins in above- and belowground tissues in sterile culture. HZ4 accumulated much more kauralexin A3 than Mo17, which was consistent with higher gene expression of kauralexin biosynthesis in HZ4. Promoter cloning and sequence analysis disclosed a number of sequence variations including fragment insertion/deletion and nucleotide substitution in promoter regions of both inbred lines. Further analysis showed that one key biosynthetic gene (KSL5) of maize phytoalexins exhibited higher promoter activity in HZ4 than in Mo17. The underlying mechanism was explored and promoter mutation in both inbred lines accounted for such promoter activity difference. Specifically, one W-box element with a positive effect in KSL5 promoter from HZ4 was identified; meanwhile, a 413-bp fragment in KSL5 promoter from Mo17 played a negative role in gene expression. Both inbred lines accumulated these sequence mutations in promoters during breeding, which resulted in different gene expression and phytoalexin production, potentially contributing to basic resistance.
引用
收藏
页码:165 / 174
页数:9
相关论文
共 50 条
  • [21] Heterotic affinity and combining ability of exotic maize inbred lines for resistance to aflatoxin accumulation
    Meseka, Silvestro
    Williams, W. Paul
    Warburton, Marilyn L.
    Brown, Robert L.
    Augusto, Joao
    Ortega-Beltran, Alejandro
    Bandyopadhyay, Ranajit
    Menkir, Abebe
    EUPHYTICA, 2018, 214 (10)
  • [22] Arsenic accumulation and distribution in the tissues of inbred lines in maize (Zea mays L.)
    Liu, Z. H.
    Li, W. H.
    Qi, H. Y.
    Song, G. L.
    Ding, D.
    Fu, Z. Y.
    Liu, J. B.
    Tang, J. H.
    GENETIC RESOURCES AND CROP EVOLUTION, 2012, 59 (08) : 1705 - 1711
  • [23] Variation of vitamin B contents in maize inbred lines: Potential genetic resources for biofortification
    Azam, Fardous Mohammad Safiul
    Lian, Tong
    Liang, Qiuju
    Wang, Weixuan
    Zhang, Chunyi
    Jiang, Ling
    FRONTIERS IN NUTRITION, 2022, 9
  • [24] Epigenetics and Genetics: Global Profiling in Maize Inbred Lines Examines Variation in DNA Methylation
    Mach, Jennifer
    PLANT CELL, 2013, 25 (08): : 2769 - 2769
  • [25] Genetic Variation and Association Analysis of Elite Waxy Maize Inbred Lines in South Korea
    Kyu Jin Sa
    Hyeon Park
    So Jung Jang
    Si‑Hwan Ryu
    Jae‑Keun Choi
    Ju Kyong Lee
    Plant Molecular Biology Reporter, 2024, 42 : 97 - 110
  • [26] Genetic Variation and Association Analysis of Elite Waxy Maize Inbred Lines in South Korea
    Sa, Kyu Jin
    Park, Hyeon
    Jang, So Jung
    Ryu, Si-Hwan
    Choi, Jae-Keun
    Lee, Ju Kyong
    PLANT MOLECULAR BIOLOGY REPORTER, 2024, 42 (01) : 97 - 110
  • [28] A Comprehensive Study of Variation in Selected QPM and Non-QPM Maize Inbred Lines
    Sood A.
    Thakur K.
    Sharma P.N.
    Gupta D.
    Singode A.
    Rana M.
    Lata S.
    Lata, S. (slatasharma@gmail.com), 2017, Springer (06) : 103 - 113
  • [29] Genotypic Variation in Seedling Tolerance to Aluminum Toxicity in Historical Maize Inbred Lines of Zambia
    Richard, Chanda
    Munyinda, Kalaluka
    Kinkese, Theresa
    Osiru, David S.
    AGRONOMY-BASEL, 2015, 5 (02): : 200 - 219
  • [30] Genome-wide patterns of genetic variation among elite maize inbred lines
    Jinsheng Lai
    Ruiqiang Li
    Xun Xu
    Weiwei Jin
    Mingliang Xu
    Hainan Zhao
    Zhongkai Xiang
    Weibin Song
    Kai Ying
    Mei Zhang
    Yinping Jiao
    Peixiang Ni
    Jianguo Zhang
    Dong Li
    Xiaosen Guo
    Kaixiong Ye
    Min Jian
    Bo Wang
    Huisong Zheng
    Huiqing Liang
    Xiuqing Zhang
    Shoucai Wang
    Shaojiang Chen
    Jiansheng Li
    Yan Fu
    Nathan M Springer
    Huanming Yang
    Jian Wang
    Jingrui Dai
    Patrick S Schnable
    Jun Wang
    Nature Genetics, 2010, 42 : 1027 - 1030