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Crop Management, Genotypes, and Environmental Factors Affect Soyasaponin B Concentration in Soybean

机译:作物管理,基因型和环境因素影响大豆中大豆皂素B的浓度

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Soybean [Glycine max (L.) Merr.] seeds contain soyasaponin B, which has putative health benefits. Studies were conducted in multiple environments in Quebec, Canada to determine the effects of genotypes, environments, and seeding dates on soyasaponin B concentration in mature seeds. A growth chamber study was also conducted to determine the impact of high air temperature imposed at specific growth development stages on soyasaponin B in soybeans. Concentrations of individual and total soyasaponin B were determined using high-performance liquid chromatography. Genotype and environment main effects were the main determinants of soyasaponin B concentration in soybean, genotype X environment interactions accounting for less than 5% of the variation for all soyasaponin. Ranking of 20 early maturing soybean genotypes was thus relatively consistent across four environments, total concentration varying between 2.31 and 6.59 μmol g~(-1). Seeding date consistently impacted soyasaponin B concentrations, early seeding date resulting in the highest concentrations. There was an 11% difference in total soyasaponin B concentration of soybeans seeded in mid-May compared to that in late-June. The response to high air temperature was complex and cultivar specific. High temperature stress restricted to the seed filling stages increased total soyasaponin B concentration in one cultivar by 28% when compared to that in control nonstressed plants; however, in another cultivar high temperature applied during all growth stages reduced total concentration by 27%. Results from the present study thus demonstrate that environmental factors and crop management both impact soyasaponin B concentration in soybeans.
机译:大豆[Glycine max(L.)Merr。]种子含有大豆皂苷B,具有公认的健康益处。在加拿大魁北克的多个环境中进行了研究,以确定基因型,环境和播种日期对成熟种子中大豆皂苷B浓度的影响。还进行了生长室研究,以确定在特定生长发育阶段施加的高温对大豆中大豆皂苷B的影响。使用高效液相色谱法测定单个和总大豆皂甙B的浓度。基因型和环境的主要影响因素是大豆中大豆皂苷B浓度的主要决定因素,基因型X环境相互作用占所有大豆皂苷变异的不到5%。因此,在四个环境中,20个早熟大豆基因型的排名相对一致,总浓度在2.31和6.59μmolg〜(-1)之间变化。播种期始终影响大豆皂甙B的浓度,播种期较早导致浓度最高。与6月下旬相比,5月中旬播种的大豆总皂甙B浓度有11%的差异。对高温的响应是复杂的,并且是特定品种的。与对照无胁迫植物相比,限制在种子灌浆阶段的高温胁迫使一个品种的总皂甙B浓度增加了28%。然而,在另一种栽培品种中,在所有生长期应用高温,使总浓度降低了27%。因此,本研究的结果表明,环境因素和作物管理都影响大豆中大豆皂苷B的浓度。

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