Antioxidant mechanism and lipid peroxidation patterns in leaves and petals of marigold in response to drought stress

被引:1
|
作者
Zhiguo Tian
Fei Wang
Wene Zhang
Changming Liu
Xiuming Zhao
机构
[1] Northwest A&F University,College of Forestry
[2] Northwest A&F University,College of Horticulture
[3] Agriculture College of Guizhou University,undefined
关键词
antioxidant enzymes; membrane permeability; non-enzymatic antioxidants; reactive oxygen species; L;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, malondialdehyde (MDA), relative conductivity (RC), superoxide anion (O2·−), hydrogen peroxide (H2O2), superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), ascorbate peroxidase (APX) as well as ascorbic acid (AsA), glutation (GSH) and carotenoid (Car) were analyzed in plants under drought condition to investigate the enzymatic and non-enzymatic antioxidant defense mechanisms of leaves and petals, respectively. Two different drought resistance marigold cultivars (Tagetes erecta L. cv. Chokdee and Tagetes erecta L. cv. Discovery) treated with 6-day drought stress were used at early flowering stage. Results indicated that drought treatment increased MDA, RC, O2·− and H2O2 contents in the two cultivars, especially in drought-sensitive cultivar ‘Discovery’. In contrast, ‘Chokdee’ had higher level antioxidative enzyme activities and more non-enzymatic antioxidants than those in ‘Discovery’. SOD, POD, CAT, APX activities and non-enzymatic antioxidants (GSH and AsA) in the leaves and petals were increased at the beginning treatment, and decreased later. The activity of CAT in leaves and petals, APX in petals and AsA in petals on day 6 after treatment were lower than those in control, while Car in the two cultivars decreased consistently during drought stress treatment. In addition, all the antioxidant enzyme activities in the leaves were higher than those in petals, but AsA and GSH were accumulated at lower levels in leaves than those in petals of the both cultivars. Furthermore, significant linear relationships were found between antioxidative enzymes and reactive oxygen species (ROS), as well as in non-enzymatic antioxidants and ROS. In conclusion, drought tolerance of ‘Chokdee’ was correlated with eliminating the O2·− and H2O2 and maintaining lower lipid peroxidation as well as higher membrane stability by increasing activities of antioxidative enzymes and the amount of non-enzymatic antioxidants. Furthermore, different drought response mechanisms were involved in leaves and petals of marigold under drought stress.
引用
收藏
页码:183 / 192
页数:9
相关论文
共 50 条
  • [31] EFFECT OF DROUGHT STRESS ON LIPID PEROXIDATION AND PROLINE CONTENT IN COTTON ROOTS
    Zhang, L.
    Peng, J.
    Chen, T. T.
    Zhao, X. H.
    Zhang, S. P.
    Liu, S. D.
    Dong, H. L.
    Feng, L.
    Yu, S. X.
    JOURNAL OF ANIMAL AND PLANT SCIENCES, 2014, 24 (06): : 1729 - 1736
  • [32] Effects of Drought Stress on the Lipid Peroxidation and Antioxidant Enzyme Activities in Two Canola (Brassica napus L.) Cultivars
    Mirzaee, M.
    Moieni, A.
    Ghanati, F.
    JOURNAL OF AGRICULTURAL SCIENCE AND TECHNOLOGY, 2013, 15 (03): : 593 - 602
  • [33] Influence of silicon on antioxidant mechanisms and lipid peroxidation in chickpea (Cicer arietinum L.) cultivars under drought stress
    Gunes, Aydin
    Pilbeam, David J.
    Inal, Ali
    Bagci, Esra G.
    Coban, Sencan
    JOURNAL OF PLANT INTERACTIONS, 2007, 2 (02) : 105 - 113
  • [34] Influence of straw mulch on yield, chlorophyll contents, lipid peroxidation and antioxidant enzymes activities of soybean under drought stress
    Xue, Lan-Lan
    Anjum, Shakeel Ahmad
    Wang, Long-Chang
    Saleem, Muhammad Farrukh
    Liu, Xiao-Jian
    Ijaz, Muhammad Furqan
    Bilal, Muhammad Faisal
    JOURNAL OF FOOD AGRICULTURE & ENVIRONMENT, 2011, 9 (02): : 699 - 704
  • [35] INFLUENCE OF MANGANESE DEFICIENCY ON METAL ION UPTAKE, ANTIOXIDANT DEFENSE MECHANISM AND LIPID PEROXIDATION LEVELS IN MENTHA PIPERITA LEAVES
    Candan, Nilgun
    Tarhan, Leman
    ACTA BIOLOGICA CRACOVIENSIA SERIES BOTANICA, 2011, 53 (01) : 20 - 25
  • [36] Response Mechanism of Plants to Drought Stress
    Yang, Xinyi
    Lu, Meiqi
    Wang, Yufei
    Wang, Yiran
    Liu, Zhijie
    Chen, Su
    HORTICULTURAE, 2021, 7 (03)
  • [37] Drought stress in seedlings: Lipid metabolism and lipid peroxidation during recovery from drought in Lotus corniculatus and Cerastium fontanum
    Olsson, M
    Nilsson, K
    Liljenberg, C
    Hendry, GAF
    PHYSIOLOGIA PLANTARUM, 1996, 96 (04) : 577 - 584
  • [38] Osmolyte accumulation, antioxidant enzyme activities and gene expression patterns in leaves of orchardgrass during drought stress and recovery
    Ji, Yang
    Zhang, Xinquan
    Peng, Yan
    Huang, Linkai
    Liang, Xiaoyu
    Wang, Kehua
    Yin, Guohua
    Zhao, Xinxin
    GRASSLAND SCIENCE, 2014, 60 (03) : 131 - 141
  • [39] LIPID-PEROXIDATION AND MECHANISM OF THE VITAMIN-E ANTIOXIDANT ACTION
    CHUDINOVA, VV
    ALEKSEEV, SM
    ZAKHAROVA, EI
    EVSTIGNEEVA, RP
    BIOORGANICHESKAYA KHIMIYA, 1994, 20 (10): : 1029 - 1046
  • [40] The chloroplast proteome response to drought stress in cassava leaves
    Chang, Lili
    Wang, Limin
    Peng, Cunzhi
    Tong, Zheng
    Wang, Dan
    Ding, Guohua
    Xiao, Junhan
    Guo, Anping
    Wang, Xuchu
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2019, 142 : 351 - 362