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Soybean Seed Composition as Affected by Seeding Rates and Row Spacing

机译:播种量和行距对大豆种子组成的影响

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Research on the effects of seeding rates (SDR) and row spacing (RS) on soybean [Glycine max (L.) Merr.] seed composition is almost nonexistent. The objective of this research was to investigate the effect of SDR and RS on soybean seed protein, oil, fatty acids, sugars, and minerals using four soybean cultivars (P 93M90 and AG 3906, maturity group[MG] III; P 94B73, MG IV; and V 52N3, MG V) tested in 2006 and 2007. Seeding rates for P 93M90 and AG 3906 ranged from 247,000 to 592,800 seeds haa??1 and for P 94B73 and V 52N3 ranged from 60,000 to 180,000 seeds haa??1. Row spacings were 38 and 76 cm. Protein, oleic acid, sugars, P, and B concentrations increased with the increase of SDR in P 93M90 and AG 3906. However, after the maximum concentrations of these constituents were reached, a decrease was observed at the highest SDR. This trend was mainly observed in 2006 and depended on RS. In 2007, the opposite trend of protein and oleic acid concentrations was observed, where the protein and oleic decreased with SDR. In cultivars P 94B73 and V 52N3, results showed that protein concentration increased with SDR in 2006 and 2007 for both 38 and 76 cm RS. Oleic acid increased and linolenic acid decreased with SDR in 2006. The different trends of protein and oleic concentrations between years may be due to temperature and drought stress differences. This research showed that SDR and RS can alter seed constituents, and the magnitude of this effect depended on cultivar and environmental factors, especially temperature and drought.
机译:几乎没有关于播种量(SDR)和行距(RS)对大豆[Glycine max(L.)Merr。]种子组成的影响的研究。这项研究的目的是研究使用四个大豆品种(P 93M90和AG 3906,成熟组[MG] III; P 94B73,MG)对SDR和RS对大豆种子蛋白质,油,脂肪酸,糖和矿物质的影响P 93M90和AG 3906的播种率范围从247,000到592,800种子haa ?? 1,P 94B73和V 52N3的播种率范围从60,000到180,000种子haa?1。 。行间距为38和76厘米。蛋白质,油酸,糖,磷和硼的浓度随P 93M90和AG 3906中SDR的增加而增加。但是,在达到这些成分的最大浓度后,最高SDR观察到了降低。这种趋势主要在2006年观察到,并取决于RS。 2007年,观察到蛋白质和油酸浓度呈相反的趋势,其中蛋白质和油酸随SDR降低。结果表明,在P 94B73和V 52N3品种中,38 cm和76 cm RS的蛋白质浓度在2006和2007年随SDR增加。 2006年,随着SDR的增加,油酸增加而亚麻酸减少。年和年之间蛋白质和油酸浓度的变化趋势可能是由于温度和干旱胁迫的差异所致。这项研究表明,SDR和RS可以改变种子成分,这种影响的程度取决于品种和环境因素,尤其是温度和干旱。

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