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Biotechnology and apple breeding in Japan

机译:日本的生物技术和苹果育种

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摘要

Apple is a fruit crop of significant economic importance, and breeders world wide continue to develop novel cultivars with improved characteristics. The lengthy juvenile period and the large field space required to grow apple populations have imposed major limitations on breeding. Various molecular biological techniques have been employed to make apple breeding easier. Transgenic technology has facilitated the development of apples with resistance to fungal or bacterial diseases, improved fruit quality, or root stocks with better rooting or dwarfing ability. DNA markers for disease resistance (scab, powdery mildew, fire-blight, Alternaria blotch) and fruit skin color have also been developed, and marker-assisted selection (MAS) has been employed in breeding programs. In the last decade, genomic sequences and chromosome maps of various cultivars have become available, allowing the development of large SNP arrays, enabling efficient QTL mapping and genomic selection (GS). In recent years, new technologies for genetic improvement, such as trans-grafting, virus vectors, and genome-editing, have emerged. Using these techniques, no foreign genes are present in the final product, and some of them show considerable promise for application to apple breeding.
机译:苹果是具有重要经济意义的水果作物,世界各地的育种者继续开发具有改良特性的新型品种。苹果种群的成长需要漫长的幼年期和广阔的田间空间,这给育种带来了很大的限制。已经采用了各种分子生物学技术来使苹果育种更加容易。转基因技术促进了苹果对真菌或细菌性疾病的抵抗力,改善了果实质量,或具有更好的生根或矮化能力的砧木。还开发了用于抗病性(斑点病,白粉病,火疫病,链霉病,斑点病)和果皮颜色的DNA标记,并且在育种计划中采用了标记辅助选择(MAS)。在过去的十年中,各种品种的基因组序列和染色体图谱变得可用,从而允许开发大型SNP阵列,从而实现了有效的QTL谱图和基因组选择(GS)。近年来,已经出现了用于遗传改良的新技术,例如移植,病毒载体和基因组编辑。使用这些技术,最终产品中不存在外源基因,其中一些基因显示出可用于苹果育种的巨大希望。

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