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Starches?¢????from current models to genetic engineering

机译:从当前模型到基因工程的淀粉

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As the world's second most abundant biopolymer, starch serves as food, feed and renewable resource for bioenergy production and other industrial applications. Unlike storage lipids, starch is stored in the form of semi?¢????crystalline granules, which are tissue?¢???? and species?¢????specific in number, shape and size. Over the last decades, most biosynthetic and degradative enzymes of starch metabolism have been identified in the model species Arabidopsis thaliana . Based on this, biotechnological applications have arisen that led to a number of transgenic crop plants with elevated starch content or improved starch quality. Irrespective of this great success, there are still numerous open questions including the regulation of starch metabolism, the initiation of granule formation, the regulation of granule shape and size and many more, which will be tackled over the next decades. Here, we briefly summarize current knowledge concerning starch metabolism and its regulation and biotechnological use.
机译:淀粉作为世界第二丰富的生物聚合物,可作为食品,饲料和可再生资源用于生物能源生产和其他工业应用。与储存脂质不同,淀粉以半结晶颗粒形式储存,即组织。和种类-具体数量,形状和大小。在过去的几十年中,已经在模型物种拟南芥中鉴定了大多数淀粉代谢的生物合成和降解酶。基于此,出现了生物技术应用,导致了许多淀粉含量提高或淀粉质量提高的转基因作物。尽管取得了如此巨大的成功,但仍然存在许多悬而未决的问题,包括淀粉代谢的调节,颗粒形成的开始,颗粒形状和大小的调节等等,这些将在未来几十年内解决。在这里,我们简要总结有关淀粉代谢及其调控和生物技术应用的当前知识。

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