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质体生物技术:除草剂与抗虫性、代谢工程及分子农业的前景

Plastid biotechnology: prospects for herbicide and insect resistance, metabolic engineering and molecular farming.

作者信息

Bock Ralph

机构信息

Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, D-14476 Potsdam-Golm, Germany.

出版信息

Curr Opin Biotechnol. 2007 Apr;18(2):100-6. doi: 10.1016/j.copbio.2006.12.001. Epub 2006 Dec 13.

Abstract

Transgene expression from the chloroplast (plastid) genome offers several attractions to plant biotechnologists, including high-level accumulation of foreign proteins, transgene stacking in operons and a lack of epigenetic interference with the stability of transgene expression. In addition, the technology provides an environmentally benign method of plant genetic engineering, because plastids and their genetic information are maternally inherited in most crops and thus are largely excluded from pollen transmission. During the past few years, researchers in both the public and private sectors have begun to explore possible areas of application of plastid transformation in plant biotechnology as a viable alternative to conventional nuclear transgenic technologies. Recent proof-of-concept studies highlight the potential of plastid genome engineering for the expression of resistance traits, the production of biopharmaceuticals and metabolic pathway engineering in plants.

摘要

叶绿体(质体)基因组的转基因表达对植物生物技术学家具有诸多吸引力,包括外源蛋白的高水平积累、操纵子中的转基因堆叠以及对转基因表达稳定性缺乏表观遗传干扰。此外,该技术提供了一种环境友好的植物基因工程方法,因为在大多数作物中质体及其遗传信息是母系遗传的,因此基本上不会通过花粉传播。在过去几年中,公共和私营部门的研究人员都已开始探索质体转化在植物生物技术中的可能应用领域,作为传统核转基因技术的可行替代方案。最近的概念验证研究突出了质体基因组工程在植物中表达抗性性状、生产生物制药和进行代谢途径工程方面的潜力。

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