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首页> 外文期刊>Industrial Crops and Products >Glutathione half-cell reduction potential as a seed viability marker of the potential oilseed crop Vernonia galamensis.
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Glutathione half-cell reduction potential as a seed viability marker of the potential oilseed crop Vernonia galamensis.

机译:谷胱甘肽半细胞还原潜力作为潜在油料作物 galeronia galamensis 的种子活力标记。

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Seeds of Vernonia galamensis (Cass.) Less. contain a high proportion of vernolic acid that is highly desirable for industrial use and emphasises the potential of this species for commercialisation. For successful commercialisation, seed quality during storage must be maintained and regularly assessed, which can be rapidly achieved by using biochemical markers of seed viability. In V. galamensis, three potential viability markers electrolyte leakage (as a measure of membrane integrity) and the antioxidants tocopherol and glutathione were investigated in highly viable, aged and dead seeds at 6% and 12% moisture content (MC). Both electrolyte leakage and tocopherol were not correlated with seed viability whereas the glutathione half-cell reduction potential (EGSSG/2GSH) correlated strongly with viability loss during seed ageing at both MCs. However, an increase in EGSSG/2GSH associated with viability loss was delayed in the drier seeds (6% MC), highlighting that the performance of this seed viability marker could be decreased in seeds which lose viability in, or close to, the glassy state.
机译:Vernonia galamensis (Cass。)的种子较少。含有高比例的凡尔纳酸,这是工业用途非常需要的,并强调了该物种的商业化潜力。为了成功实现商业化,必须维持和定期评估种子在储存过程中的质量,这可以通过使用种子生存力的生化标记快速实现。在 V中。 galamensis ,在水分含量分别为6%和12%的高活力,衰老和死亡的种子中,研究了三种潜在的活力标志物电解质渗漏(作为膜完整性的量度)以及抗氧化剂生育酚和谷胱甘肽。电解质泄漏和生育酚均与种子活力不相关,而两个MCs的衰老过程中谷胱甘肽半细胞还原电位( E GSSG / 2GSH )与活力丧失密切相关。 。然而,在干燥种子中,与活力丧失相关的 E GSSG / 2GSH 的增加被延迟了(6%MC),这突出表明该种子活力标记的性能可能是在玻璃态或接近玻璃态失去活力的种子减少。

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