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Comparison of Ionomic and Metabolites Response under Alkali Stress in Old and Young Leaves of Cotton (Gossypium hirsutum L.) Seedlings

机译:碱胁迫下棉花(老棉)幼苗叶片的离子组和代谢产物响应的比较

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摘要

Soil salinization is an important agriculture-related environmental problem. Alkali stress and salt stress strongly influence the metabolic balance in plants. Salt and alkali stresses exert varied effects on old and young tissues, which display different adaptive strategies. In this study, we used cotton (Gossypium hirsutum L.) plants as experimental material to investigate whether alkali stress induces ionic and metabolism changes in old and young leaves of cotton plants exposed to alkali stress. Results showed that alkali stress exerted a considerably stronger growth inhibition on old leaves than on young leaves. Under alkali stress, young leaves can maintain low Na and high K contents and retain relatively stable tricarboxylic acid cycle, resulting in greater accumulation of photosynthetic metabolites. In terms of metabolic response, the young and old leaves clearly displayed different mechanisms of osmotic regulation. The amounts of inositol and mannose significantly increased in both old and young leaves of cotton exposed to alkali stress, and the extent of increase was higher in young leaves than in old leaves. In old leaves, synthesis of amino acids, such as GABA, valine, and serine, was dramatically enhanced, and this phenomenon is favorable for osmotic adjustment and membrane stability. Organs at different developmental stages possibly display different mechanisms of metabolic regulation under stress condition. Thus, we propose that future investigations on alkali stress should use more organs obtained at different developmental stages.
机译:土壤盐渍化是与农业相关的重要环境问题。碱胁迫和盐胁迫强烈影响植物的代谢平衡。盐和碱胁迫对古老和年轻的组织产生不同的影响,表现出不同的适应策略。在这项研究中,我们使用棉花(Gossypium hirsutum L.)植物作为实验材料,研究碱性胁迫是否会导致暴露于碱性胁迫的棉株老幼叶片中的离子和代谢变化。结果表明,碱胁迫对老叶的抑制作用明显强于对年轻叶的抑制作用。在碱胁迫下,幼叶可以保持低Na和高K含量,并保持相对稳定的三羧酸循环,从而导致光合代谢产物积累更多。在代谢反应方面,幼叶和老叶清楚地显示出不同的渗透调节机制。暴露于碱胁迫下的棉花的老叶和幼叶中肌醇和甘露糖的含量均显着增加,且幼叶的增加程度高于老叶。在老叶子中,氨基酸的合成(例如GABA,缬氨酸和丝氨酸)大大增强,这种现象有利于渗透调节和膜稳定性。在应激条件下,处于不同发育阶段的器官可能显示出不同的代谢调节机制。因此,我们建议对碱胁迫的未来研究应使用更多在不同发育阶段获得的器官。

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