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Modification of starch metabolism in transgenic Arabidopsis thaliana increases plant biomass and triples oilseed production

机译:转基因拟南芥中淀粉代谢的改性增加了植物生物质和三元石油生产

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Summary We have identified a novel means to achieve substantially increased vegetative biomass and oilseed production in the model plant Arabidopsis thaliana . Endogenous isoforms of starch branching enzyme (SBE) were substituted by either one of the endosperm-expressed maize ( Zea mays L.) branching isozymes, Zm SBEI or Zm SBEIIb. Transformants were compared with the starch-free background and with the wild-type plants. Each of the maize-derived SBEs restored starch biosynthesis but both morphology and structure of starch particles were altered. Altered starch metabolism in the transformants is associated with enhanced biomass formation and more-than-trebled oilseed production while maintaining seed oil quality. Enhanced oilseed production is primarily due to an increased number of siliques per plant whereas oil content and seed number per silique are essentially unchanged or even modestly decreased. Introduction of cereal starch branching isozymes into oilseed plants represents a potentially useful strategy to increase biomass and oilseed production in related crops and manipulate the structure and properties of leaf starch.
机译:发明内容我们已经确定了一种在模型植物拟南芥中实现大幅增加的营养生物量和油籽生产的新颖手段。淀粉分支酶(SBE)的内源性同种型被胚乳表达的玉米(Zea mays L.)支化同工酶,Zm Sbei或Zm Sbeiib取代。将转化体与淀粉背景和野生型植物进行比较。每个玉米衍生的SBE恢复淀粉生物合成,但淀粉颗粒的形态和结构都被改变。转化体中的改变的淀粉代谢与增强的生物质形成和更加推动的油籽生产相关,同时保持种子油质。增强的油籽产量主要是由于每株植物数量增加,而每种硅的油含量和种子数基本不变,甚至均匀下降。将谷物淀粉分枝同工酶引入油籽工厂代表了增加相关作物中的生物质和油籽产量并操纵叶淀粉的结构和性质的潜在有用的策略。

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