Huang Claire, Butterly Clayton R, Moody David, Pourkheirandish Mohammad
Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Melbourne, VIC, Australia.
InterGrain Pty Ltd., Bibra Lake, WA, Australia.
Front Genet. 2023 Mar 2;13:1060304. doi: 10.3389/fgene.2022.1060304. eCollection 2022.
Nitrogen (N) fertilizer is one of the major inputs for grain crops including barley and its usage is increasing globally. However, N use efficiency (NUE) is low in cereal crops, leading to higher production costs, unfulfilled grain yield potential and environmental hazards. N uptake is initiated from plant root tips but a very limited number of studies have been conducted on roots relevant to NUE specifically. In this review, we used barley, the fourth most important cereal crop, as the primary study plant to investigate this topic. We first highlighted the recent progress and study gaps in genetic analysis results, primarily, the genome-wide association study (GWAS) regarding both biological and statistical considerations. In addition, different factors contributing to NUE are discussed in terms of root morphological and anatomical traits, as well as physiological mechanisms such as N transporter activities and hormonal regulation.
氮肥是包括大麦在内的谷类作物的主要投入要素之一,其在全球范围内的使用量正在增加。然而,谷类作物的氮素利用效率(NUE)较低,导致生产成本较高、粮食产量潜力未得到充分发挥以及环境危害。氮素吸收始于植物根尖,但专门针对与氮素利用效率相关的根系开展的研究数量非常有限。在本综述中,我们以第四大重要谷类作物大麦作为主要研究植物来探讨这一主题。我们首先强调了遗传分析结果方面的最新进展和研究空白,主要涉及全基因组关联研究(GWAS)在生物学和统计学方面的考量。此外,还从根系形态和解剖特征以及诸如氮转运体活性和激素调节等生理机制方面讨论了影响氮素利用效率的不同因素。