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Silicon Priming Created an Enhanced Tolerance in Alfalfa (Medicago sativa L.) Seedlings in Response to High Alkaline Stress

机译:硅引发对高碱性胁迫的响应增强了苜蓿(Medicago sativa L.)幼苗的耐受性

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摘要

Alkaline stress as a result of higher pH usually triggers more severe physiological damage to plants than that of saline stress with a neutral pH. In the present study, we demonstrated that silicon (Si) priming of alfalfa (Medicago sativa L.) seedlings increased their tolerance to high alkaline stress situations. Gongnong No. 1 seedlings were subjected to alkaline stress simulated by 25 mM Na2CO3 (pH 11.2). Alkaline stress greatly decreased the biomass and caused severe lodging or wilting of alfalfa seedlings. In contrast, the application of Si to alfalfa seedlings 36 h prior to the alkaline treatment significantly alleviated the damage symptoms and greatly increased the biomass and chlorophyll content. Because of being concomitant with increasing photosynthesis and water use efficiency, decreasing membrane injury and malondialdehyde content, and increasing peroxidase and catalase ascorbate activities in alfalfa leaves, thereby alleviating the triggered oxidative damage by alkaline stress to the plant. Furthermore, Si priming significantly decreased the accumulation of protein and proline content in alfalfa, thus reducing photosynthetic feedback repression. Si priming significantly accumulated more Na in the roots, but led to a decrease of Na accumulation and an increase of K accumulation in the leaves under alkaline stress. Meanwhile, Si priming decreased the accumulation of metal ions such as Mg, Fe, Mn, and Zn in the roots of alfalfa seedlings under alkaline stress. Collectively, these results suggested that Si is involved in the metabolic or physiological changes and has a potent priming effect on the alkaline tolerance of alfalfa seedlings. The present study indicated that Si priming is a new approach to improve the alkaline tolerance in alfalfa and provides increasing information for further exploration of the alkaline stress response at the molecular level in alfalfa.
机译:与中性pH的盐胁迫相比,较高pH导致的碱胁迫通常对植物引发更严重的生理损害。在本研究中,我们证明了苜蓿(Medicago sativa L.)幼苗的硅(Si)引发增加了其对高碱性胁迫情况的耐受性。用25 mM Na2CO3(pH 11.2)模拟龚农1号幼苗的碱性胁迫。碱性胁迫极大地降低了生物量,并导致苜蓿幼苗严重倒伏或萎。相比之下,在碱处理前36小时将Si施用到苜蓿幼苗上可显着减轻伤害症状并大大增加生物量和叶绿素含量。由于增加了光合作用和水分利用效率,减少了膜损伤和丙二醛含量,并增加了苜蓿叶中的过氧化物酶和过氧化氢酶抗坏血酸活性,从而减轻了碱性胁迫对植物的触发氧化损伤。此外,硅引发显着降低了苜蓿中蛋白质和脯氨酸含量的积累,从而降低了光合反馈抑制。硅引发能显着地在根部积累更多的Na,但在碱性胁迫下导致叶片中Na的减少和K的增加。同时,Si引发减少了碱性胁迫下苜蓿幼苗根中Mg,Fe,Mn和Zn等金属离子的积累。总的来说,这些结果表明Si参与了代谢或生理变化,并且对苜蓿幼苗的碱耐受性具有有效的引发作用。本研究表明,Si引发是提高苜蓿碱耐受性的一种新方法,并为进一步探索苜蓿分子水平的碱胁迫响应提供了越来越多的信息。

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