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Harnessing the Potential of Crop Wild Relatives through Genomics Tools for Pigeonpea Improvement

机译:通过基因组学工具利用农作物野生亲缘种改良木豆的潜力

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Cultivated pigeonpea germplasm has a narrow genetic base due to the bottlenecks caused by domestication and breeding from a small number of genotypes. Pigeonpea genetic improvement has witnessed a slow pace due to low genetic diversity and to the scarce genomics resources. To address these challenges, wild relatives of pigeonpea which represent an unexploited resource of vast genetic variation can be incorporated in breeding programmes facilitating the broadening of genetic base. Although interspecific hybridization has not been commercially successful in pigeonpea, it has played an important role in the development of the cytoplasmic male sterility (CMS) system. Recent years however have witnessed the development of genomics resources at large scale in the crop which has remained untouched with genomics revolution in the past. These resources, together with advances in genomics platform such as high throughput genotyping assays and next generation sequencing technologies and modern genetics and breeding approaches will accelerate harnessing natural variation for pigeonpea improvement.
机译:由于归因于少数基因型的驯化和繁殖所造成的瓶颈,栽培的木豆种质具有狭窄的遗传基础。由于遗传多样性低和基因组资源稀缺,木豆的遗传改良步伐缓慢。为了应对这些挑战,可以将代表未开发的具有广泛遗传变异性资源的木豆野生近缘种纳入育种计划中,以促进遗传基础的扩大。尽管种间杂交在木豆中尚未获得商业成功,但它在细胞质雄性不育(CMS)系统的开发中发挥了重要作用。然而,近年来见证了作物中大规模基因组学资源的开发,而在过去,基因组学革命一直未触及。这些资源,再加上基因组学平台的发展,例如高通量基因分型分析和下一代测序技术以及现代遗传学和育种方法,将加速利用自然变异改良木豆。

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