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Method of Using Genetic Architecture of Phenomic-enabled Canopy Coverage in Glycine max

机译:利用最大大豆的有表型的冠层覆盖的遗传结构的方法

摘要

Digital imagery can help to quantify seasonal changes in desirable crop phenotypes that can be treated as quantitative traits. Because limitations in precise and functional phenotyping restrain genetic improvement in the post-genomic era, imagery-based phenomics could become the next breakthrough to accelerate genetic gains in field crops. Whereas many phenomic studies focus on exploratory analysis of spectral data without obvious interpretative value, we used field images to directly measure soybean canopy development from phenological stage V2 to R5. Over three years, we collected imagery using ground and aerial platforms of a large and diverse nested association panel comprising 5,555 lines. Genome-wide association analysis of canopy coverage across sampling dates detected a large quantitative trait locus on soybean (Glycine max, L. Merr.) chromosome 19. This QTL provided an increase in yield of 47.3 kg·ha−1. Variance component analysis indicated that a parameter, described as average canopy coverage, is a highly heritable trait (h2=0.77) with a promising genetic correlation with grain yield (0.87), enabling indirect selection of yield via canopy development parameters. Our findings indicate that fast canopy coverage is an early season trait that is inexpensive to measure and has great potential for application in breeding programs focused on yield improvement. We recommend using the average canopy coverage in multiple trait schemes, especially for the early stages of the breeding pipeline (including progeny rows and preliminary yield trials), in which the large number of field plots makes collection of grain yield data challenging.
机译:数字图像可以帮助量化所需作物表型的季节性变化,这些变化可以视为定量性状。由于精确和功能性表型的局限性限制了后基因组时代的遗传改良,基于图像的表型可能成为加速大田作物遗传收获的下一个突破。尽管许多物候研究专注于对光谱数据的探索性分析,但没有明显的解释价值,但我们使用田间图像直接测量了从物候期V2到R5的大豆冠层发育。在过去三年中,我们使用包含5555条线的大型多样的嵌套关联面板的地面和空中平台收集了图像。全天候冠层覆盖度的全基因组关联分析在大豆( Glycine max ,L。Merr。)19号染色体上检测到大量的数量性状基因座。该QTL增加了47.3 kg·ha的产量 -1 。方差成分分析表明,描述为平均冠层覆盖度的参数是高度可遗传的性状(h 2 = 0.77),与籽粒产量(0.87)有良好的遗传相关性,可以通过玉米间接选择产量林冠发育参数。我们的研究结果表明,快速的树冠覆盖是一种早期季节特征,其价格便宜,并且在专注于提高产量的育种计划中具有巨大的应用潜力。我们建议在多个性状方案中使用平均冠层覆盖率,特别是在育种管道的早期阶段(包括后代行和初步产量试验),在该方案中,大量田间田地使收集谷物产量数据具有挑战性。

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