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Agrobacterium-Mediated Transformation of Tree Fruit Crops: Methods Progress and Challenges

机译:农杆菌介导的果树农作物转化:方法进展和挑战

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摘要

Genetic engineering based on Agrobacterium-mediated transformation has been a desirable tool to manipulate single or multiple genes of existing genotypes of woody fruit crops, for which conventional breeding is a difficult and lengthy process due to heterozygosity, sexual incompatibility, juvenility, or a lack of natural sources. To date, successful transformation has been reported for many fruit crops. We review the major progress in genetic transformation of these fruit crops made in the past 5 years, emphasizing reproducible transformation protocols as well as the strategies that have been tested in fruit crops. While direct transformation of scion cultivars was mostly used for fruit quality improvement, biotic and abiotic tolerance, and functional gene analysis, transgrafting on genetically modified (GM) rootstocks showed a potential to produce non-GM fruit products. More recently, genome editing technology has demonstrated a potential for gene(s) manipulation of several fruit crops. However, substantial efforts are still needed to produce plants from gene-edited cells, for which tremendous challenge remains in the context of either cell’s recalcitrance to regeneration or inefficient gene-editing due to their polyploidy. We propose that effective transient transformation and efficient regeneration are the key for future utilization of genome editing technologies for improvement of fruit crops.
机译:基于农杆菌介导的转化的基因工程已成为操纵木本水果作物现有基因型的单个或多个基因的理想工具,由于杂合性,性不亲和性,幼年性或缺乏杂种优势,传统的育种过程既困难又漫长。自然资源。迄今为止,已经报道了许多水果作物的成功转化。我们回顾了过去5年中在这些水果作物的遗传转化中所取得的重大进展,重点介绍了可重现的转化方案以及已在水果作物中进行测试的策略。接穗品种的直接转化主要用于改善水果质量,生物和非生物耐受性以及功能基因分析,而在转基因(GM)砧木上进行移植显示出生产非转基因水果的潜力。最近,基因组编辑技术已经证明了对几种水果作物进行基因操纵的潜力。但是,仍然需要大量的努力才能从基因编辑的细胞中生产出植物,对于这些细胞而言,由于它们的多倍性导致其对再生的顽抗或基因编辑效率低下,仍然面临着巨大的挑战。我们认为有效的瞬时转化和有效的再生是将来利用基因组编辑技术改善果品的关键。

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