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不同磷水平下与大豆种子重量和组成相关的数量性状位点。

Quantitative trait loci associated with soybean seed weight and composition under different phosphorus levels.

机构信息

Department of Biological Sciences, Florida A&M University, Tallahassee, FL 32307, USA.

United States Department of Agriculture, Agricultural Research Service, Plant Science Research Unit, Raleigh, NC 27607, USA.

出版信息

J Integr Plant Biol. 2018 Mar;60(3):232-241. doi: 10.1111/jipb.12612. Epub 2018 Jan 5.

Abstract

Seed size and composition are important traits in food crops and can be affected by nutrient availability in the soil. Phosphorus (P) is a non-renewable, essential macronutrient, and P deficiency limits soybean (Glycine max) yield and quality. To investigate the associations of seed traits in low- and high-P environments, soybean recombinant inbred lines (RILs) from a cross of cultivars Fiskeby III and Mandarin (Ottawa) were grown under contrasting P availability environments. Traits including individual seed weight, seed number, and intact mature pod weight were significantly affected by soil P levels and showed transgressive segregation among the RILs. Surprisingly, P treatments did not affect seed composition or weight, suggesting that soybean maintains sufficient P in seeds even in low-P soil. Quantitative trait loci (QTLs) were detected for seed weight, intact pods, seed volume, and seed protein, with five significant QTLs identified in low-P environments and one significant QTL found in the optimal-P environment. Broad-sense heritability estimates were 0.78 (individual seed weight), 0.90 (seed protein), 0.34 (seed oil), and 0.98 (seed number). The QTLs identified under low P point to genetic regions that may be useful to improve soybean performance under limiting P conditions.

摘要

种子大小和组成是粮食作物的重要特征,它们会受到土壤养分供应的影响。磷(P)是一种不可再生的必需大量营养素,P 缺乏会限制大豆(Glycine max)的产量和品质。为了研究低磷和高磷环境下种子特性的关联,利用 Fiskeby III 和 Mandarin(Ottawa)品种杂交的大豆重组自交系(RILs)在对照 P 有效性环境下进行种植。个体种子重量、种子数量和完整成熟豆荚重量等特性受土壤 P 水平的显著影响,并在 RILs 中表现出超亲分离。令人惊讶的是,P 处理并没有影响种子组成或重量,这表明大豆即使在低磷土壤中也能在种子中维持足够的 P。检测到了与种子重量、完整豆荚、种子体积和种子蛋白质相关的数量性状位点(QTLs),在低磷环境中鉴定出 5 个显著 QTL,在最佳 P 环境中鉴定出 1 个显著 QTL。个体种子重量的广义遗传力估计值为 0.78,种子蛋白质为 0.90,种子油为 0.34,种子数量为 0.98。在低 P 条件下鉴定出的 QTL 指向可能有助于提高大豆在限制 P 条件下性能的遗传区域。

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