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A Comprehensive Image-based Phenomic Analysis Reveals the Complex Genetic Architecture of Shoot Growth Dynamics in Rice (?Oryza sativa?)

机译:全面的基于图像的物候分析揭示了水稻(?Oryza sativa?)芽生长动力学的复杂遗传结构。

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Early vigor is an important trait for many rice (Oryza sativa?L.)-growing environments. However, genetic characterization and improvement for early vigor is hindered by the temporal nature of the trait and strong genotype × environment effects. We explored the genetic architecture of shoot growth dynamics during the early and active tillering stages by applying a functional modeling and genomewide association (GWAS) mapping approach on a diversity panel of ~360 rice accessions. Multiple loci with small effects on shoot growth trajectory were identified, indicating a complex polygenic architecture. Natural variation for shoot growth dynamics was assessed in a subset of 31 accessions using RNA sequencing and hormone quantification. These analyses yielded a gibberellic acid (GA) catabolic gene,?OsGA2ox7, which could influence GA levels to regulate vigor in the early tillering stage. Given the complex genetic architecture of shoot growth dynamics, the potential of genomic selection (GS) for improving early vigor was explored using all 36,901 single-nucleotide polymorphisms (SNPs) as well as several subsets of the most significant SNPs from GWAS. Shoot growth trajectories could be predicted with reasonable accuracy using the 50 most significant SNPs from GWAS (0.37–0.53); however, the accuracy of prediction was improved by including more markers, which indicates that GS may be an effective strategy for improving shoot growth dynamics during the vegetative growth stage. This study provides insights into the complex genetic architecture and molecular mechanisms underlying early shoot growth dynamics and provides a foundation for improving this complex trait in rice.
机译:早期活力是许多水稻(Oryza sativa?L。)生长环境的重要特征。然而,该性状的时间性和强大的基因型×环境效应阻碍了早期活力的遗传表征和改良。通过在〜360个水稻品种的多样性面板上应用功能性建模和全基因组关联(GWAS)作图方法,探索了分and早期和活跃分till期生长动态的遗传结构。确定了对芽生长轨迹影响较小的多个基因座,表明复杂的多基因架构。使用RNA测序和激素定量方法,在31个种质中评估了芽生长动态的自然变化。这些分析产生了赤霉素(GA)分解代谢基因ΔOsGA2ox7,该基因可能影响GA水平以调节分till初期的活力。鉴于枝条生长动力学的复杂遗传结构,利用全部36,901个单核苷酸多态性(SNP)以及GWAS中最重要的SNP的几个子集,探索了提高早期活力的基因组选择(GS)潜力。可以使用来自GWAS的50个最重要的SNP来以合理的准确性预测枝条的生长轨迹(0.37–0.53);然而,通过添加更多的标记物,预测的准确性得以提高,这表明GS可能是在营养生长期改善枝条生长动态的有效策略。这项研究为复杂的遗传结构和早期芽生长动态的分子机制提供了见识,并为改善水稻的这种复杂性状奠定了基础。

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