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Enhanced tocopherol levels during early germination events in Chamaerops humilis var. humilis seeds

机译:Chamaerops humilis var早期发芽过程中生育酚水平的提高。谦卑种子

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Most angiosperms accumulate vitamin E in the form of tocopherols in seeds, exerting a protective antioxidant role. However, several palm trees principally accumulate tocotrienols, rather than tocopherols, in seeds, as it occurs in other monocots. To unravel the protective role of either tocopherols or tocotrienols against lipid peroxidation during seed germination in Chamaerops humilis var. humilis; seed viability, natural and induced germination capacity, seed water content, malondialdehyde levels (as an indicator of the extent of lipid peroxidation) and vitamin E levels (including both tocopherols and tocotrienols) were examined at various germination phases in a simulated, natural seed bank. At the very early stages of germination (operculum removal), malondialdehyde levels increased 2.8-fold, to decrease later up to 74%, thus indicating a transient lipid peroxidation at early stages of germination. Tocopherol levels were absent in quiescent seeds and did not increase during operculum removal, but increased later presumably dampening malondialdehyde accumulation. Thereafter, tocopherols continued increasing, while lipid peroxidation levels decreased. By contrast, tocotrienols levels remained constant or even decreased as germination progressed, showing no correlation with lipid peroxidation levels. We hypothesize that despite their high tocotrienol content, seeds synthesize tocopherols" during germination to protect lipids from peroxidation events. (C) 2015 Elsevier Ltd. All rights reserved.
机译:大多数被子植物以生育酚的形式在种子中积累维生素E,发挥保护性抗氧化作用。但是,几棵棕榈树主要在种子中积累生育三烯酚而不是生育酚,就像其他单子叶植物一样。为了揭示Chamaerops humilis var中种子生育过程中生育酚或生育三烯酚对脂质过氧化的保护作用。谦卑在模拟的天然种子库中的各个萌芽阶段,检查了种子的活力,自然和诱导的萌发能力,种子含水量,丙二醛水平(作为脂质过氧化程度的指标)和维生素E水平(包括生育酚和生育三烯酚)的水平。在萌发的初期(oper盖去除),丙二醛水平增加了2.8倍,后来降低了74%,因此表明在萌发的初期有短暂的脂质过氧化作用。静止种子中没有生育酚水平,在去除孔期间生育酚水平没有增加,但后来有所增加,大概是抑制了丙二醛的积累。此后,生育酚继续增加,而脂质过氧化水平降低。相反,随着发芽的进行,生育三烯酚水平保持恒定甚至降低,表明与脂质过氧化水平无关。我们假设尽管生育三烯酚含量高,但种子在发芽过程中会合成生育酚”,以保护脂质免受过氧化事件的侵害。(C)2015 Elsevier Ltd.保留所有权利。

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