Breeding custom-designed crops for improved drought adaptation

Rajeev K. Varshney, Rutwik Barmukh, Manish Roorkiwal, Yiping Qi, Jana Kholova, Roberto Tuberosa, Matthew P. Reynolds, Francois Tardieu, Kadambot H. M. Siddique
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引用次数: 39

Abstract

The current pace of crop improvement is inadequate to feed the burgeoning human population by 2050. Higher, more stable, and sustainable crop production is required against a backdrop of drought stress, which causes significant losses in crop yields. Tailoring crops for drought adaptation may hold the key to address these challenges and provide resilient production systems for future harvests. Understanding the genetic and molecular landscape of the functionality of alleles associated with adaptive traits will make designer crop breeding the prospective approach for crop improvement. Here, we highlight the potential of genomics technologies combined with crop physiology for high-throughput identification of the genetic architecture of key drought-adaptive traits and explore innovative genomic breeding strategies for designing future crops.

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培育专门设计的作物以提高对干旱的适应能力
目前作物改良的速度不足以养活到2050年迅速增长的人口。在干旱造成作物产量重大损失的背景下,需要更高、更稳定和可持续的作物生产。调整作物以适应干旱可能是解决这些挑战的关键,并为未来的收成提供有弹性的生产系统。了解与适应性性状相关的等位基因功能的遗传和分子景观将使设计作物育种成为作物改良的前瞻性方法。在此,我们强调基因组学技术与作物生理学相结合的潜力,以高通量鉴定关键干旱适应性状的遗传结构,并探索创新的基因组育种策略,以设计未来的作物。
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