首页> 外文期刊>Current opinion in biotechnology >Genetic engineering of the chloroplast: novel tools and new applications. (Special Issue: Food Biotechnology (edited by Koffas, M. A. G. & Marienhagen, J.) and Plant Biotechnology (edited by Moller, B. L. & Ratcliffe, R. G.).)
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Genetic engineering of the chloroplast: novel tools and new applications. (Special Issue: Food Biotechnology (edited by Koffas, M. A. G. & Marienhagen, J.) and Plant Biotechnology (edited by Moller, B. L. & Ratcliffe, R. G.).)

机译:叶绿体的基因工程:新工具和新应用。 (特刊:食品生物技术(由Koffas,M. A. G.和Marienhagen,J.编辑)和植物生物技术(由Moller,B. L.&Ratcliffe,R. G.编辑)。)

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摘要

The plastid genome represents an attractive target of genetic engineering in crop plants. Plastid transgenes often give high expression levels, can be stacked in operons and are largely excluded from pollen transmission. Recent research has greatly expanded our toolbox for plastid genome engineering and many new proof-of-principle applications have highlighted the enormous potential of the transplastomic technology in both crop improvement and the development of plants as bioreactors for the sustainable and cost-effective production of biopharmaceuticals, enzymes and raw materials for the chemical industry. This review describes recent technological advances with plastid transformation in seed plants. It focuses on novel tools for plastid genome engineering and transgene expression and summarizes progress with harnessing the potential of plastid transformation in biotechnology.
机译:质体基因组代表了作物植物遗传工程的一个有吸引力的目标。质体转基因通常具有较高的表达水平,可以堆叠在操纵子中,并且很大程度上不包含在花粉传播中。最近的研究极大地扩展了我们用于质体基因组工程的工具箱,许多新的原理证明应用都突出了转基因组学技术在作物改良和植物开发中的巨大潜力,使之成为生物反应器,可可持续且经济高效地生产生物药物,酶和化学工业原料。这篇综述描述了种子植物中质体转化的最新技术进展。它着重于用于质体基因组工程和转基因表达的新型工具,并总结了利用质体转化技术在生物技术中的潜力所取得的进展。

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