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Plastid genetic engineering in Solanaceae (Revice)

机译:茄科的质体基因工程(研究)

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Plastid genetic engineering has come of age, becoming today an attractive alternative approach for the expression of foreign genes, as it offers several advantages over nuclear transformants. Significant progress has been made in plastid genetic engineering in tobacco and other Solanaceae plants, through the use of improved regeneration procedures and transformation vectors with efficient promoters and untranslated regions. Many genes encoding for industrially important proteins and vaccines, as well as genes conferring important agronomic traits, have been stably integrated and expressed in the plastid genome. Despite these advances, it remains a challenge to achieve marked levels of plastid transgene expression in non-green tissues. In this review, we summarize the basic requirements of plastid genetic engineering and discuss the current status, limitations, and the potential of plastid transformation for expanding future studies relating to Solanaceae plants.
机译:质体基因工程已经成熟,如今已成为表达外源基因的一种有吸引力的替代方法,因为它比核转化体具有许多优势。通过使用改进的再生程序和具有有效启动子和非翻译区的转化载体,烟草和其他茄科植物的质体基因工程取得了重大进展。在质体基因组中已经稳定地整合并表达了许多编码具有工业重要性的蛋白质和疫苗的基因以及赋予重要农艺性状的基因。尽管取得了这些进展,但要在非绿色组织中达到明显水平的质体转基因表达仍然是一个挑战。在这篇综述中,我们总结了质体基因工程的基本要求,并讨论了质体转化的现状,局限性和潜力,以扩展与茄科植物有关的未来研究。

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