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The future of starch bioengineering: GM microorganisms or GM plants?

机译:淀粉生物工程的未来:转基因微生物还是转基因植物?

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Plant starches regularly require extensive modification to permit subsequent applications. Such processing is usually done by the use of chemical and/or physical treatments. The use of recombinant enzymes produced by large-scale fermentation of GM microorganisms is increasingly used in starch processing and modification, sometimes as an alternative to chemical or physical treatments. However, as a means to impart the modifications as early as possible in the starch production chain, similar recombinant enzymes may also be expressed in planta in the developing starch storage organ such as in roots, tubers and cereal grains to provide a GM crop as an alternative to the use of enzymes from GM microorganisms. We here discuss these techniques in relation to important structural features and modifications of starches such as: starch phosphorylation, starch hydrolysis, chain transfer/branching and novel concepts of hybrid starch-based polysaccharides. In planta starch bioengineering is generally challenged by yield penalties and inefficient production of the desired product. However, in some situations, GM crops for starch bioengineering without deleterious effects have been achieved.
机译:植物淀粉通常需要大量改性以允许后续应用。通常通过使用化学和/或物理处理来进行这种处理。由转基因微生物大规模发酵产生的重组酶的使用越来越多地用于淀粉加工和改性中,有时替代化学或物理处理。但是,作为在淀粉生产链中尽早进行修饰的一种手段,相似的重组酶也可以在发育中的淀粉储存器官的植物中表达,例如在根,块茎和谷物中,以提供转基因作物。替代使用来自转基因微生物的酶。我们在此讨论与淀粉的重要结构特征和修饰有关的这些技术,例如:淀粉磷酸化,淀粉水解,链转移/支化以及基于淀粉的杂化多糖的新概念。在植物中,淀粉生物工程通常受到产量损失和所需产物生产效率低下的挑战。然而,在某些情况下,已经实现了用于淀粉生物工程的转基因作物而没有有害作用。

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