水稻叶片质膜H+-ATPase对酸雨胁迫的适应机制

葛玉晴, 吕霞, 梁婵娟. 水稻叶片质膜H+-ATPase对酸雨胁迫的适应机制[J]. 环境化学, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007
引用本文: 葛玉晴, 吕霞, 梁婵娟. 水稻叶片质膜H+-ATPase对酸雨胁迫的适应机制[J]. 环境化学, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007
GE Yuqing, LÜ Xia, LIANG Chanjuan. The adaptation mechanism of plasma membrane H+-atpase in rice leaves to acid rain stress[J]. Environmental Chemistry, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007
Citation: GE Yuqing, LÜ Xia, LIANG Chanjuan. The adaptation mechanism of plasma membrane H+-atpase in rice leaves to acid rain stress[J]. Environmental Chemistry, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007

水稻叶片质膜H+-ATPase对酸雨胁迫的适应机制

  • 基金项目:

    国家自然科学青年基金(31000245)

    江南大学自主科研青年基金(JUSRP11007).

The adaptation mechanism of plasma membrane H+-atpase in rice leaves to acid rain stress

  • Fund Project:
  • 摘要: 采用水培法研究酸雨胁迫对水稻叶片质膜H+-ATPase活性的影响,结果表明,高强度酸雨(pH 2.5和pH 3.0组)胁迫下,pH 2.5组质膜H+-ATPase活性显著受抑,胞内pH降低,POD活性受抑,pH3.0组质膜H+-ATPase活性上升,胞内pH降低,POD活性升高,质膜透性和MDA含量均增加,Fv/Fm和叶鲜重降低;低强度酸雨(3.0+-ATPase活性应激升高,虽胞内pH降低,POD活性升高,质膜未遭明显损伤,对生长的抑制程度明显低于高强度酸雨胁迫.可见,酸雨胁迫下,质膜功能蛋白H+-ATPase能在一定范围内调节胞内pH,进而缓解大量H+引发的活性氧积累,减轻质膜损伤,从而增强作物对酸雨胁迫的抗逆性和适应性.
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  • [1] 彭莹,王慧敏,周青. 镧对酸雨胁迫下水稻萌发种子POD与质膜透性动态变化的影响[J]. 环境化学,2009,28(2):254-256
    [2] Serrano R. Structure and function of plasma membrane ATPase[J]. Annal Review of Plant Physiology and Plant Molecular Biology,1989,40(6): 61-94
    [3] 付晓萍,田大伦. 酸雨对植物的影响研究进展[J]. 西北林学院学报,2006,21(4):23-27
    [4] Zhu Y Y,Di T J,Xu G H,et,al. Adaptation of plasma membrane of rice roots to low pH as related to ammonium nutrition[J]. Plant Cell and Environment,2009,32:1428-1440
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    [9] 徐丹瑶,周青,梁婵娟. 模拟酸雨对大豆幼苗光合光反应的影响[J]. 安全与环境学报,2010,10(2):9-11
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    [11] 邱琳,周青. 镧对酸雨胁迫下水稻萌发种子CAT的影响[J].环境化学,2009,28(4):535-538
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  • 收稿日期:  2012-10-08
葛玉晴, 吕霞, 梁婵娟. 水稻叶片质膜H+-ATPase对酸雨胁迫的适应机制[J]. 环境化学, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007
引用本文: 葛玉晴, 吕霞, 梁婵娟. 水稻叶片质膜H+-ATPase对酸雨胁迫的适应机制[J]. 环境化学, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007
GE Yuqing, LÜ Xia, LIANG Chanjuan. The adaptation mechanism of plasma membrane H+-atpase in rice leaves to acid rain stress[J]. Environmental Chemistry, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007
Citation: GE Yuqing, LÜ Xia, LIANG Chanjuan. The adaptation mechanism of plasma membrane H+-atpase in rice leaves to acid rain stress[J]. Environmental Chemistry, 2013, 32(6): 964-967. doi: 10.7524/j.issn.0254-6108.2013.06.007

水稻叶片质膜H+-ATPase对酸雨胁迫的适应机制

  • 1. 江南大学环境与土木工程学院, 无锡, 214122
基金项目:

国家自然科学青年基金(31000245)

江南大学自主科研青年基金(JUSRP11007).

摘要: 采用水培法研究酸雨胁迫对水稻叶片质膜H+-ATPase活性的影响,结果表明,高强度酸雨(pH 2.5和pH 3.0组)胁迫下,pH 2.5组质膜H+-ATPase活性显著受抑,胞内pH降低,POD活性受抑,pH3.0组质膜H+-ATPase活性上升,胞内pH降低,POD活性升高,质膜透性和MDA含量均增加,Fv/Fm和叶鲜重降低;低强度酸雨(3.0+-ATPase活性应激升高,虽胞内pH降低,POD活性升高,质膜未遭明显损伤,对生长的抑制程度明显低于高强度酸雨胁迫.可见,酸雨胁迫下,质膜功能蛋白H+-ATPase能在一定范围内调节胞内pH,进而缓解大量H+引发的活性氧积累,减轻质膜损伤,从而增强作物对酸雨胁迫的抗逆性和适应性.

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