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Carbon partitioning between oil and carbohydrates in developing oat (Avena sativa L.) seeds

机译:燕麦(Avena sativa L.)种子中油和碳水化合物之间的碳分配

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摘要

Cereals accumulate starch in the endosperm as their major energy reserve in the grain. In most cereals the embryo, scutellum, and aleurone layer are high in oil, but these tissues constitute a very small part of the total seed weight. However, in oat (Avena sativa L.) most of the oil in kernels is deposited in the same endosperm cells that accumulate starch. Thus oat endosperm is a desirable model system to study the metabolic switches responsible for carbon partitioning between oil and starch synthesis. A prerequisite for such investigations is the development of an experimental system for oat that allows for metabolic flux analysis using stable and radioactive isotope labelling. An in vitro liquid culture system, developed for detached oat panicles and optimized to mimic kernel composition during different developmental stages in planta, is presented here. This system was subsequently used in analyses of carbon partitioning between lipids and carbohydrates by the administration of 14C-labelled sucrose to two cultivars having different amounts of kernel oil. The data presented in this study clearly show that a higher amount of oil in the high-oil cultivar compared with the medium-oil cultivar was due to a higher proportion of carbon partitioning into oil during seed filling, predominantly at the earlier stages of kernel development.
机译:谷物在胚乳中积累淀粉,作为谷物中的主要能量储备。在大多数谷物中,胚,盾片和糊粉层的油含量很高,但这些组织仅占种子总重量的很小一部分。然而,在燕麦中(Avena sativa L.),大多数仁中的油都沉积在积累淀粉的同一胚乳细胞中。因此,燕麦胚乳是研究在油脂和淀粉合成之间进行碳分配的代谢转换的理想模型系统。进行此类研究的先决条件是开发用于燕麦的实验系统,该系统允许使用稳定的放射性同位素标记进行代谢通量分析。本文介绍了一种为离体的燕麦穗开发的体外液体培养系统,该系统经过优化以模仿植物体内不同发育阶段的仁组成。通过将 14 C标记的蔗糖施用于两个仁油含量不同的品种,该系统随后用于分析脂质和碳水化合物之间的碳分配。这项研究提供的数据清楚地表明,与中油品种相比,高油品种中的油含量更高,这是由于种子灌装过程中碳分配到油中的比例更高,主要是在籽粒发育的早期阶段。

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