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

AI Article Synopsis

  • Seed size and composition, crucial for soybean yield, are influenced by soil nutrient levels, particularly phosphorus (P), which is vital but non-renewable.
  • A study using soybean recombinant inbred lines (RILs) revealed that while seed weight and number varied significantly with phosphorus availability, seed composition remained consistent even in low-P conditions.
  • The identification of multiple quantitative trait loci (QTLs) for seed weight and protein under low-P environments highlights genetic regions that could enhance soybean growth in nutrient-poor soils, with heritability estimates suggesting strong potential for breeding.

Article 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.

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Source
http://dx.doi.org/10.1111/jipb.12612DOI Listing

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