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利用协同信号分子减轻番茄盐胁迫的综合分子防御机制

Integrated Molecular Defense Mitigating Salt Stress in Tomatoes Using Synergistic Signaling Molecules.

作者信息

Karim Md Rezaul, Sultana Sharmin, Altaf-Un-Nahar Most, Islam Md Rabiul, Rahman Farzana, Pretha Sudipta Joydhar, Azam Mohammad Golam, Hussain Sajad, Yang Xinghong, Ibrahimova Ulkar, Rhaman Mohammad Saidur, Brestic Marian

机构信息

Department of Horticulture, Bangladesh Agricultural University, Mymensingh, Bangladesh.

Bangladesh Sugarcrop Research Institute, Pabna, Bangladesh.

出版信息

Physiol Plant. 2025 May-Jun;177(3):e70344. doi: 10.1111/ppl.70344.

Abstract

Salt stress severely compromises agricultural productivity worldwide, necessitating innovative defense strategies. While individual signaling molecules can enhance stress tolerance, their combined potential remains largely unexplored. This study introduces a novel triple-defense approach, investigating the synergistic effects of three signaling molecules (30 mM KNO, 0.2 mM HO, and 30 mM CaCl) in mitigating 100 mM NaCl-induced salt stress in tomato plants. Our comprehensive analysis revealed that salt stress significantly impaired plant growth parameters, including height, leaf SPAD value, biomass accumulation, and essential nutrient concentrations (K, Ca, Mg, S) in both leaves and roots. Salt stress also disrupted water relations and triggered oxidative stress, evidenced by increased sodium accumulation, hydrogen peroxide (HO), and malondialdehyde (MDA) levels. The strategic application of signaling molecules, particularly in combination, effectively counteracted these stress-induced alterations. KNO emerged as the most potent individual defender, followed by CaCl and HO, enhancing growth characteristics and antioxidant defense mechanisms through increased catalase (CAT) and ascorbate peroxidase (APX) activities. Notably, the simultaneous application of all three compounds demonstrated superior efficacy in alleviating salt stress impacts, establishing a robust defense mechanism through improved osmolyte accumulation (proline, soluble sugars) and reduced oxidative damage. This triple-defense strategy presents a promising approach for enhancing salt stress tolerance in tomato cultivation.

摘要

盐胁迫严重影响全球农业生产力,因此需要创新的防御策略。虽然单个信号分子可以增强胁迫耐受性,但其组合潜力在很大程度上仍未得到探索。本研究引入了一种新型的三重防御方法,研究了三种信号分子(30 mM KNO₃、0.2 mM H₂O₂和30 mM CaCl₂)在减轻100 mM NaCl诱导的番茄植株盐胁迫中的协同效应。我们的综合分析表明,盐胁迫显著损害了植物生长参数,包括株高、叶片SPAD值、生物量积累以及叶片和根系中的必需养分浓度(钾、钙、镁、硫)。盐胁迫还破坏了水分关系并引发了氧化应激,钠积累、过氧化氢(H₂O₂)和丙二醛(MDA)水平升高证明了这一点。信号分子的策略性应用,尤其是组合应用,有效地抵消了这些胁迫诱导的变化。KNO₃是最有效的单一防御物质,其次是CaCl₂和H₂O₂,它们通过提高过氧化氢酶(CAT)和抗坏血酸过氧化物酶(APX)活性来增强生长特性和抗氧化防御机制。值得注意的是,同时施用所有三种化合物在减轻盐胁迫影响方面表现出卓越的功效,通过改善渗透调节物质积累(脯氨酸、可溶性糖)和减少氧化损伤建立了强大的防御机制。这种三重防御策略为提高番茄栽培中的盐胁迫耐受性提供了一种有前景的方法。

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