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Engineered minichromosomes in plants

机译:植物工程微染色体

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Genetic engineering for complex or combined traits requires the simultaneous expression of multiple genes, and has been considered as the bottleneck for the next generation of genetic engineering in plants. Minichromosome technology provides one solution to the stable expression and maintenance of multiple transgenes in one genome. For example, minichromosomes can be used as a platform for efficient stacking of multiple genes for insect, bacterial and fungal resistances together with herbicide tolerance and crop quality traits. All the transgenes would reside on an independent minichromosome, not linked to any endogenous genes; thus linkage drag can be avoided. Engineered minichromosomes can be easily constructed by a telomere-mediated chromosomal truncation strategy. This approach does not rely on the cloning of centromere sequences, which are species-specific, and bypasses the any complications of epigenetic components for centromere specification. Thus, this technique can be easily extended to all plant species. The engineered minichromosome technology can also be used in combination with site-specific recombination systems to facilitate the stacking of multiple transgenes.
机译:复杂性状或组合性状的基因工程需要同时表达多个基因,被认为是植物中下一代基因工程的瓶颈。 Minichromosome技术为一种基因组中多种转基因的稳定表达和维持提供了一种解决方案。例如,微型染色体可用作有效堆叠昆虫,细菌和真菌抗性以及除草剂耐受性和作物品质性状的多个基因的平台。所有的转基因都将驻留在一个独立的微型染色体上,而不与任何内源性基因相连。因此可以避免联动阻力。工程化的微型染色体可以通过端粒介导的染色体截短策略轻松构建。这种方法不依赖于特定物种的着丝粒序列的克隆,并且绕过了着丝粒规格的表观遗传成分的任何复杂性。因此,该技术可以容易地扩展到所有植物物种。工程化的微染色体技术还可以与位点特异性重组系统结合使用,以促进多个转基因的堆叠。

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