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首页> 外文期刊>Crop Science >Water Deficit Effect on the Relationship between Temperature during the Seed Fill Period and Soybean Seed Oil and Protein Concentrations
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Water Deficit Effect on the Relationship between Temperature during the Seed Fill Period and Soybean Seed Oil and Protein Concentrations

机译:水分亏缺对种子灌浆期温度与大豆籽油和蛋白质含量之间关系的影响

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Since most soybean [Glycine max (L.) Merr.] seed is processed into meal and oil, there is a growing concern about environmental effects on soybean seed composition. The aim of this work was to investigate how water deficit affects the well-known relationship of soybean seed oil and protein concentrations with temperature and, alternatively, with solar radiation during seed fill. We analyzed oil and protein data from multienvironment trials in Argentina (latitude 29 degrees to 38 degrees S). Multiple linear regressions were used to test the effect of water deficit on the relationship between oil, protein, and oil + protein and temperature. The functions relating oil and protein concentrations with average daily mean temperature during seed fill (Tm-R5R7) changed with water deficit. When precipitation minus potential evapotranspiration during the reproductive period (pp-PET RIM) was lower than 70 mm, oil increased linearly with increasing Tm-R5R7 and with rising water deficit. Meanwhile, protein increased linearly with Tm-R5R7 but decreased linearly with water deficit. Oil + protein concentration held a linear relationship with Tm-R5R7 even under water deficit. Cumulative solar radiation during seed fill predicts seed quality but shows lower significance than Tm-R5R7. This research demonstrates that a water-stress indicator (pp-PETR1R7) should be considered in rainfed crops because it affects the well-known relationship of soybean seed oil and protein concentrations with temperature.
机译:由于大多数大豆[Glycine max(L.)Merr。]种子都被加工成粗粉和油脂,因此人们越来越关注环境对大豆种子组成的影响。这项工作的目的是研究缺水如何影响大豆种子油和蛋白质浓度与温度以及种子填充过程中太阳辐射的众所周知的关系。我们分析了阿根廷(北纬29度至38度)多环境试验的石油和蛋白质数据。多元线性回归用于检验水分亏缺对油脂,蛋白质和油脂+蛋白质与温度之间关系的影响。将油和蛋白质浓度与种子灌浆期间的每日平均温度(Tm-R5R7)相关的函数随水分亏缺而变化。当生育期的降水量减去潜在的蒸散量(pp-PET RIM)低于70 mm时,油随着Tm-R5R7的增加和水分亏缺的增加而线性增加。同时,蛋白质随Tm-R5R7线性增加,但随水分缺乏线性减少。即使在缺水的情况下,油和蛋白质的浓度也与Tm-R5R7保持线性关系。种子填充期间的累积太阳辐射可预测种子质量,但显示的重要性低于Tm-R5R7。这项研究表明,在雨育作物中应考虑水分胁迫指标(pp-PETR1R7),因为它会影响众所周知的大豆种子油和蛋白质浓度与温度之间的关系。

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