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Integration of genomic tools to assist breeding in the japonica subspecies of rice

机译:整合基因组工具以协助水稻粳稻亚种育种

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摘要

The cultivated rice (Oryza sativa L.) has two subspecies, indica and japonica. The japonica rice germplasm has a narrower genetic diversity compared to the indica subspecies. Rice breeders aim to develop new varieties with a higher yield potential, with enhanced resistances to biotic and abiotic stresses, and improved adaptation to environmental changes. In order to face some of these challenges, japonica rice germplasm will have to be diversified and new breeding strategies developed. Indica rice improvement could also profit from more genepool mingling for which japonica rice could play an important role. Interesting traits such as low-temperature tolerance, and wider climate adaptation could be introgressed into the indica subspecies. In the past decade, huge developments in rice genomics have expanded our available knowledge on this crop and it is now time to use these technologies for improving and accelerating rice breeding research. With the full sequence of the rice genome, breeders may take advantage of new genes. Also new genes may be discovered from the genepool of wild relatives, or landraces of the genus Oryza, and incorporated into elite japonica cultivars in a kind of gene revolution program. Expectedly, new technologies that are currently being optimized, aiming for novel gene discovery or for tracking the regions under selection, will be suggested as new breeding approaches. This paper revisits breeding strategies successfully employed in indica rice, and discusses their application in japonica rice improvement (e.g. ideotype breeding, wide hybridization and hybrid performance).
机译:栽培稻(Oryza sativa L.)有两个亚种:in稻和粳稻。与the亚种相比,粳稻种质的遗传多样性更窄。水稻育种者的目标是开发具有更高产量潜力,对生物和非生物胁迫具有更强抵抗力并改善对环境变化适应能力的新品种。为了应对这些挑战,粳稻种质必须多样化,并开发新的育种策略。 gene稻改良还可以受益于更多的基因库混合,其中粳稻可以发挥重要作用。耐低温和更广泛的气候适应等有趣的特征可能会渗入the亚种中。在过去的十年中,水稻基因组学的巨大发展扩展了我们对该作物的现有知识,现在是时候使用这些技术来改善和加速水稻育种研究。有了水稻基因组的完整序列,育种者可以利用新基因。也可以从野生近缘种或稻属地方种的基因库中发现新基因,并以一种基因革命程序将其掺入优良的粳稻品种中。可以预期,将提出目前正在优化的,旨在发现新基因或追踪选择区域的新技术,作为新的育种方法。本文回顾了successfully稻成功应用的育种策略,并讨论了其在粳稻改良中的应用(例如表型育种,广泛杂交和杂交表现)。

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