Identification of drought-responsive genes by cDNA-amplified fragment length polymorphism in maize

被引:6
|
作者
Liu, L. [1 ,2 ]
Hao, Z. [1 ]
Weng, J. [1 ]
Li, M. [1 ]
Zhang, D. [1 ]
Bai, L. [1 ]
Wang, L. [2 ]
Li, X. [1 ]
Zhang, S. [1 ]
机构
[1] Chinese Acad Agr Sci, Inst Crop Sci, Natl Key Facil Crop Gene Resources & Genet Improv, Natl Engn Lab Crop Mol Breeding, Beijing 100081, Peoples R China
[2] NE Agr Univ, Coll Life Sci, Harbin, Peoples R China
关键词
cDNA-amplified fragment length polymorphism; drought tolerance; maize (Zea mays L; MYB; TRANSCRIPTION FACTORS; ABIOTIC STRESS; FUNCTIONAL-ANALYSIS; COLD TOLERANCE; AFLP ANALYSIS; SALT STRESS; MYB GENE; EXPRESSION; RICE; ARABIDOPSIS;
D O I
10.1111/j.1744-7348.2012.00565.x
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The cDNA-AFLP (amplified fragment length polymorphism) technique was performed to detect transcript-derived fragments related to drought tolerance in maize inbred lines X178 and B73 to identify and understand drought-responsive genes at the transcriptional level. By comparing the sequences of fragments differentially expressed between these lines under water-stressed and well-watered conditions, 72 drought-responsive unique expressed sequence tags (ESTs) were identified with 41 primer combinations targeting PstI/MseI restriction sites. Most of the fragments isolated in these experiments were found to be associated with genes responsive to abiotic or biotic stresses. Subsequently, a putative R1-type MYB transcription factor gene corresponding to ZmMYB-R1 on bin 9.03 was obtained by in silico cloning by homology to EST sequence P36M87-366, which matched one of the AFLPs identified in this study. The 1881 bp sequence encodes a protein of 626 amino acids that contains a single conserved MYB-like DNA-binding domain. Expression of green fluorescence protein fusions showed that ZmMYB-R1 was localised in the cell nucleus. Quantitative real-time polymerase chain reaction revealed that ZmMYB-R1 was induced by drought, high salt, heat, cold and exogenous ABA in maize. The expression of ZmMYB-R1 initially reaches its highest levels in leaves, then is subsequently also detected in stems and roots. This work revealed genes potentially responsible for drought tolerance in maize, and a new gene, ZmMYB-R1, was shown to be associated with water stress.
引用
下载
收藏
页码:203 / 213
页数:11
相关论文
共 50 条
  • [31] An amplified fragment length polymorphism map of the silkworm
    Tan, YD
    Wan, CL
    Zhu, YF
    Lu, C
    Xiang, ZH
    Deng, HW
    GENETICS, 2001, 157 (03) : 1277 - 1284
  • [32] Maize leaves drought-responsive genes revealed by comparative transcriptome of two cultivars during the filling stage
    Jin, Hongyu
    Liu, Songtao
    Zenda, Tinashe
    Wang, Xuan
    Liu, Guo
    Duan, Huijun
    PLOS ONE, 2019, 14 (10):
  • [33] Identification of Newly Xanthomonads using Amplified Fragment Length Polymorphism, AFLP.
    AbdelRahim, Khalid Abdullah Ali
    Rudolph, Klaus
    JOURNAL OF PURE AND APPLIED MICROBIOLOGY, 2014, 8 : 205 - 214
  • [34] Identification of Drought-Responsive Universal Stress Proteins in Viridiplantae
    Isokpehi, Raphael D.
    Simmons, Shaneka S.
    Cohly, Hari H. P.
    Ekunwe, Stephen I. N.
    Begonia, Gregorio B.
    Ayensu, Wellington K.
    BIOINFORMATICS AND BIOLOGY INSIGHTS, 2011, 5 : 41 - 58
  • [35] Development of amplified fragment length polymorphism (AFLP) markers for the identification of Cholistani cattle
    Malik, Muhammad Haseeb
    Moaeen-ud-Din, Muhammad
    Bilal, Ghulam
    Ghaffar, Abdul
    Muner, Raja Danish
    Raja, Ghazala Kaukab
    Khan, Waqas Ahmad
    ARCHIVES ANIMAL BREEDING, 2018, 61 (04) : 387 - 394
  • [36] DNA Methylation Correlates with the Expression of Drought-Responsive Genes and Drought Resistance in Rice
    Ding, Guohua
    Cao, Liangzi
    Zhou, Jinsong
    Li, Zhugang
    Lai, Yongcai
    Liu, Kai
    Luo, Yu
    Bai, Liangming
    Wang, Xueyang
    Wang, Tongtong
    Wang, Rongsheng
    Yang, Guang
    Sun, Shichen
    AGRONOMY-BASEL, 2022, 12 (06):
  • [37] Identification and prediction of functions for drought-responsive genes in sugar beet (Beta vulgaris L.)
    Zou, Chunlei
    Zhao, Shanshan
    Chai, Wenting
    Yang, Bohui
    Zhang, Chunlai
    Gai, Zhijia
    BIOLOGIA, 2024, 79 (11) : 3249 - 3259
  • [38] Amplified fragment length polymorphism and virulence polymorphism in Puccinia hordei
    Sun, Y.
    Zhong, S.
    Steffenson, B. J.
    Friesen, T. L.
    Neate, S. M.
    CANADIAN JOURNAL OF PLANT PATHOLOGY-REVUE CANADIENNE DE PHYTOPATHOLOGIE, 2007, 29 (01): : 25 - 34
  • [39] Using the amplified fragment length polymorphism technique to identify human disease genes.
    de Silva, AM
    Hunt, N
    Wang, J
    de Courten, M
    Walder, K
    Zimmet, P
    Jowett, JBM
    DIABETOLOGIA, 2000, 43 : A90 - A90
  • [40] An integrated restriction fragment length polymorphism - amplified fragment length polymorphism linkage map for cultivated sunflower
    Gedil, MA
    Wye, C
    Berry, S
    Segers, B
    Peleman, J
    Jones, R
    Leon, A
    Slabaugh, MB
    Knapp, SJ
    GENOME, 2001, 44 (02) : 213 - 221