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Breakthrough in chloroplast genetic engineering of agronomically important crops

机译:重要农作物叶绿体基因工程的突破

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Chloroplast genetic engineering offers several unique advantages, including high-level transgene expression, multi-gene engineering in a single transformation event and transgene containment by maternal inheritance, as well as a lack of gene silencing, position and pleiotropic effects and undesirable foreign DNA. More than 40 trainsgenes have been stably integrated and expressed using the tobacco chloroplast genome to confer desired agronomic traits or express high levels of vaccine antigens and biopharmaceuticals. Despite such significant progress, this technology has not been extended to major crops. However, highly efficient soybean, carrot and cotton plastid transformation has recently been accomplished through somatic embryogenesis using species-specific chloroplast vectors. This review focuses on recent exciting developments in this field and offers directions for further research and development.
机译:叶绿体基因工程提供了许多独特的优势,包括高水平的转基因表达,单个转化事件中的多基因工程和母体遗传对转基因的抑制,以及基因沉默,位置和多效性效应的缺失以及不良的外源DNA。使用烟草叶绿体基因组已稳定整合并表达了40多种trainsgenes,以赋予所需的农艺性状或表达高水平的疫苗抗原和生物制药。尽管取得了如此巨大的进步,但该技术尚未扩展到主要农作物。但是,最近通过使用物种特异性叶绿体载体通过体细胞胚发生完成了高效的大豆,胡萝卜和棉花质体转化。这篇综述着重于该领域的最新发展,并为进一步的研究和开发提供了指导。

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