The SULTR gene family in maize (Zea mays L.): Gene cloning and expression analyses under sulfate starvation and abiotic stress

被引:34
|
作者
Huang, Qin [1 ]
Wang, Meiping [4 ]
Xia, Zongliang [1 ,2 ,3 ]
机构
[1] Henan Agr Univ, Coll Life Sci, Zhengzhou 450002, Henan, Peoples R China
[2] Collaborat Innovat Ctr Henan Grain Crops, Zhengzhou 450002, Henan, Peoples R China
[3] Key Lab Wheat & Maize Crop Sci, Zhengzhou 450002, Henan, Peoples R China
[4] Lib Henan Agr Univ, Zhengzhou 450002, Henan, Peoples R China
关键词
Maize; Sulfate transporter; Sulfur nutrition; Abiotic stress; SULFUR ASSIMILATION; TRANSPORTERS; ARABIDOPSIS; ORGANS; PLANTS; ROOTS; ABA;
D O I
10.1016/j.jplph.2017.10.010
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Sulfur is an essential macronutrient required for plant growth, development and stress responses. The family of sulfate transporters (SULTRs) mediates the uptake and translocation of sulfate in higher plants. However, basic knowledge of the SULTR gene family in maize (Zea mays L.) is scarce. In this study, a genome-wide bioinformatic analysis of SULTR genes in maize was conducted, and the developmental expression patterns of the genes and their responses to sulfate starvation and abiotic stress were further investigated. The ZmSULTR family includes eight putative members in the maize genome and is clustered into four groups in the phylogenetic tree. These genes displayed differential expression patterns in various organs of maize. For example, expression of ZmSULTR1;1 and ZmSULTR4;1 was high in roots, and transcript levels of ZmSULTR3;1 and ZmSULTR3;3 were high in shoots. Expression of ZmSULTR1;2, ZmSULTR2;1, ZmSULTR3;3, and ZmSULTR4;1 was high in flowers. Also, these eight genes showed differential responses to sulfate deprivation in roots and shoots of maize seedlings. Transcript levels of ZmSULTR1;1, ZmSULTR1;2, and ZmSULTR3;4 were significantly increased in roots during 12-day-sulfate starvation stress, while ZmSULTR3;3 and ZmSULTR3;5 only showed an early response pattern in shoots. In addition, dynamic transcriptional changes determined via qPCR revealed differential expression profiles of these eight ZmSULTR genes in response to environmental stresses such as salt, drought, and heat stresses. Notably, all the genes, except for ZmSULTR3;3, were induced by drought and heat stresses. However, a few genes were induced by salt stress. Physiological determination showed that two important thiol-containing compounds, cysteine and glutathione, increased significantly under these abiotic stresses. The results suggest that members of the SULTR family might function in adaptations to sulfur deficiency stress and adverse growing environments. This study will lay a foundation for better understanding the functional diversity of the SULTR family and exploring genes of interest for genetic improvement of sulfur use efficiency in cereal crop plants.
引用
收藏
页码:24 / 33
页数:10
相关论文
共 50 条
  • [21] Role of Exogenous Glutathione in Alleviating Abiotic Stress in Maize (Zea mays L.)
    Pei, Laming
    Che, Ronghui
    He, Linlin
    Gao, Xingxing
    Li, Weijun
    Li, Hui
    JOURNAL OF PLANT GROWTH REGULATION, 2019, 38 (01) : 199 - 215
  • [22] Bioinformatics analysis of STV11 gene family in maize (Zea mays L.)
    Jiang, Long
    Qin, Zongxing
    Yu, Xiaoming
    Teng, Fei
    Xu, Hui
    Chen, Xiang
    Yu, Xiaofang
    BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2020, 127 : 260 - 260
  • [23] The C1 locus in maize (Zea mays L.): effect on gene expression
    J. Edwards
    D. Stoltzfus
    P. A. Peterson
    Theoretical and Applied Genetics, 2001, 103 : 718 - 724
  • [24] Global gene expression analysis of the shoot apical meristem of maize (Zea mays L.)
    Ohtsu, Kazuhiro
    Smith, Marianne B.
    Emrich, Scott J.
    Borsuk, Lisa A.
    Zhou, Ruilian
    Chen, Tianle
    Zhang, Xiaolan
    Timmermans, Marja C. P.
    Beck, Jon
    Buckner, Brent
    Janick-Buckner, Diane
    Nettleton, Dan
    Scanlon, Michael J.
    Schnable, Patrick S.
    PLANT JOURNAL, 2007, 52 (03): : 391 - 404
  • [25] The C1 locus in maize (Zea mays L.):: effect on gene expression
    Edwards, J
    Stoltzfus, D
    Peterson, PA
    THEORETICAL AND APPLIED GENETICS, 2001, 103 (05) : 718 - 724
  • [26] DROUGHT-STRESS EFFECTS ON RESISTANT GENE EXPRESSION, GROWTH, AND YIELD TRAITS OF MAIZE (ZEA MAYS L.)
    Mohsin, A. M. Abdul
    Farhood, A. N.
    SABRAO JOURNAL OF BREEDING AND GENETICS, 2023, 55 (06): : 2064 - 2076
  • [27] Global gene expression profiling under nitrogen stress identifies key genes involved in nitrogen stress adaptation in maize (Zea mays L.)
    Singh, Prabha
    Kumar, Krishan
    Jha, Abhishek Kumar
    Yadava, Pranjal
    Pal, Madan
    Rakshit, Sujay
    Singh, Ishwar
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [28] Global gene expression profiling under nitrogen stress identifies key genes involved in nitrogen stress adaptation in maize (Zea mays L.)
    Prabha Singh
    Krishan Kumar
    Abhishek Kumar Jha
    Pranjal Yadava
    Madan Pal
    Sujay Rakshit
    Ishwar Singh
    Scientific Reports, 12
  • [29] Responses of photosynthesis, antioxidant enzymes, and related gene expression to nicosulfuron stress in sweet maize (Zea mays L.)
    Zhen-Xing Wu
    Ning-Wei Xu
    Min Yang
    Xiang-Ling Li
    Jin-Ling Han
    Xiao-Hu Lin
    Qing Yang
    Gui-Hua Lv
    Jian Wang
    Environmental Science and Pollution Research, 2022, 29 : 37248 - 37265
  • [30] Transcriptomic Analysis of Female Panicles Reveals Gene Expression Responses to Drought Stress in Maize (Zea mays L.)
    Jia, Shuangjie
    Li, Hongwei
    Jiang, Yanping
    Tang, Yulou
    Zhao, Guoqiang
    Zhang, Yinglei
    Yang, Shenjiao
    Qiu, Husen
    Wang, Yongchao
    Guo, Jiameng
    Yang, Qinghua
    Shao, Ruixin
    AGRONOMY-BASEL, 2020, 10 (02):