Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Plant J. 2023 Aug;115(4):937-951. doi: 10.1111/tpj.16272. Epub 2023 May 23.
Plant height (PH) is an important agronomic trait affecting crop architecture, biomass, resistance to lodging and mechanical harvesting. Elucidating the genetic governance of plant height is crucial because of the global demand for high crop yields. However, during the rapid growth period of plants the PH changes a lot on a daily basis, which makes it difficult to accurately phenotype the trait by hand on a large scale. In this study, an unmanned aerial vehicle (UAV)-based remote-sensing phenotyping platform was applied to obtain time-series PHs of 320 upland cotton accessions in three different field trials. The results showed that the PHs obtained from UAV images were significantly correlated with ground-based manual measurements, for three trials (R = 0.96, 0.95 and 0.96). Two genetic loci on chromosomes A01 and A11 associated with PH were identified by genome-wide association studies (GWAS). GhUBP15 and GhCUL1 were identified to influence PH in further analysis. We obtained a time series of PH values for three field conditions based on remote sensing with UAV. The key genes identified in this study are of great value for the breeding of ideal plant architecture in cotton.
株高(PH)是影响作物结构、生物量、抗倒伏和机械收获的重要农艺性状。阐明植物株高的遗传调控机制至关重要,因为全球对作物高产量的需求不断增长。然而,在植物的快速生长期间,PH 每天都会发生很大的变化,这使得通过手动在大规模上准确表型该性状变得困难。在这项研究中,应用了基于无人机的遥感表型平台,以获得三个不同田间试验中 320 个陆地棉品系的时间序列 PH 值。结果表明,从无人机图像中获得的 PH 值与地面手动测量值显著相关,三个试验的相关系数分别为 0.96、0.95 和 0.96。通过全基因组关联研究(GWAS)鉴定到与 PH 相关的两个位于染色体 A01 和 A11 上的遗传位点。进一步分析表明,GhUBP15 和 GhCUL1 影响 PH。我们基于无人机遥感获得了三种田间条件下的 PH 值时间序列。本研究中鉴定的关键基因对棉花理想植物结构的培育具有重要价值。