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首页> 外文期刊>Australian Journal of Grape and Wine Research >Nitric oxide and absdsic acid regulate osmoprotective and antioxidative mechanisms related to water stress tolerance of grapevines
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Nitric oxide and absdsic acid regulate osmoprotective and antioxidative mechanisms related to water stress tolerance of grapevines

机译:一氧化氮和易氧酸调节与葡萄树的水胁迫耐受性有关的渗透压和抗氧化机制

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摘要

Background and Aims Exogenously applied nitric oxide (NO) and abscisic acid (ABA) are known to improve the tolerance of plants to abiotic stress. The effects of NO and ABA applications on physiological and metabolic responses associated with vine protection against water stress were analysed.Methods and Results The responses to the NO donor sodium nitroprusside (hereinafter referred to as NO treatment) and ABA were assessed on metabolic profiling, the activity of antioxidant enzymes, and physiological parameters in leaves of water-stressed Malbec vines. Application of NO and ABA partially closed stomata, thus increasing water potential and reducing vine growth. As well, NO and ABA increased guaiacol peroxidase activity and the concentration of specific sugars and anthocyanins in leaves, whereas the accumulation of amino acids was reduced, in turn associated with less protein degradation. Differential responses triggered by NO in stimulating ascorbate peroxidase activity and in incrementing tricarboxylic acid cycle intermediates and terpenes that stabilise membranes, suggest differential mechanisms for NO and ABA in counteracting water stress effects in leaves of grapevines.Conclusions Nitric oxide and ABA differentially regulate osmoprotective and antioxidative mechanisms related to water stress tolerance in grapevines.Significance of the Study Spray application of NO and ABA to whole plants promoted leaf metabolic responses known to be associated with water stress tolerance mechanisms in grapevines. This approach may provide the basis for improving viticulture in grapegrowing regions affected by water scarcity due to climate change.
机译:背景技术众所周知,旨在改善植物对非生物胁迫的耐受氧化物(NO)和脱落酸(ABA)。分析了NO和ABA应用对与水胁迫的生理和代谢反应进行的影响。方法和结果在代谢分析上评估对NO供体硝酸钠(下文中文称为NO处理)和ABA的反应。抗氧化剂酶活性,含水叶片叶片的生理参数。不应用NO和部分闭孔的气孔,从而提高水势和降低葡萄葡萄的生长。同样,没有,ABA增加了桂酰胺过氧化物酶活性和叶片中的特定糖和花青素的浓度,而氨基酸的积累依次与较少的蛋白质降解相关。 Not刺激抗坏血酸过氧化物酶活性和递增的三羧酸循环中间体和萜烯的差异响应,稳定膜的萜烯,表明NO和ABA抵消葡萄叶片中的水分胁迫作用。结论一氧化氮和ABA差异调节渗透压和抗氧化与葡萄园中的水胁迫耐受性有关的机制。研究的研究喷雾应用NO和ABA对整株植物促进了已知与葡萄中的水胁迫耐受机制相关的叶代谢反应。这种方法可以为改善受水稀缺因气候变化而受水资源稀缺影响的葡萄栽培的葡萄栽培的基础。

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  • 来源
    《Australian Journal of Grape and Wine Research 》 |2021年第3期| 392-405| 共14页
  • 作者单位

    Inst Nacl Tecnol Agr Estn Expt Agr Consulta Mendoza Argentina|UNCuyo Consejo Nacl Invest Cient & Tecn Inst Biol Agr Mendoza IBAM CONICET Lab Bioquim Vegetal Facu Ciencias Agr M5528AHB Chacras Coria Mendoza Argentina;

    UNCuyo Consejo Nacl Invest Cient & Tecn Inst Biol Agr Mendoza IBAM CONICET Lab Bioquim Vegetal Facu Ciencias Agr M5528AHB Chacras Coria Mendoza Argentina|Consejo Nacl Invest Cient & Tecn Inst Invest Bioquim Buenos Aires Fdn Inst Leloir Buenos Aires DF Argentina;

    UNCuyo Consejo Nacl Invest Cient & Tecn Inst Biol Agr Mendoza IBAM CONICET Lab Bioquim Vegetal Facu Ciencias Agr M5528AHB Chacras Coria Mendoza Argentina|Univ Juan A Maza Area Ciencia & Tecn RA-5519 Mendoza Argentina;

    UNCuyo Consejo Nacl Invest Cient & Tecn Inst Biol Agr Mendoza IBAM CONICET Lab Bioquim Vegetal Facu Ciencias Agr M5528AHB Chacras Coria Mendoza Argentina;

    UNCuyo Consejo Nacl Invest Cient & Tecn Inst Biol Agr Mendoza IBAM CONICET Lab Bioquim Vegetal Facu Ciencias Agr M5528AHB Chacras Coria Mendoza Argentina;

    UNCuyo Consejo Nacl Invest Cient & Tecn Inst Biol Agr Mendoza IBAM CONICET Lab Bioquim Vegetal Facu Ciencias Agr M5528AHB Chacras Coria Mendoza Argentina;

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  • 正文语种 eng
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  • 关键词

    abscisic acid; drought; nitric oxide; primary and secondary metabolism; Vitis vinifera;

    机译:脱落酸;干旱;一氧化氮;初级和次生新陈代谢;血管血管;

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