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J Agric Food Chem ; 65(13): 2661-2669, 2017 Apr 05.
Article in English | MEDLINE | ID: mdl-28318254

ABSTRACT

Phosphorus (P) intake, genotype, and growth environment in soybean cultivation can affect the composition of the soybean. This experiment was conducted in two locations (microregions I and II) using a randomized complete block design, including conventional soybean (BRS Sambaíba) and genetically modified (GM) [Msoy 9144 Roundup Ready (RR)] cultivars and varying doses of phosphorus fertilizer (0, 60, 120, and 240 kg/ha P2O5). Soybeans were evaluated for chemical composition, total phenols, phytic acid content, individual isoflavone content, antioxidant activity, oil quality, fatty acid profile, total carotenoid content, and individual tocopherol contents. Multivariate analysis facilitated reduction in the number of variables with respect to soybean genotype (conventional BRS Sambaíba and GM Msoy 9144 RR), dose of P2O5 fertilizer, and place of cultivation (microregion I and II). BRS Sambaíba had higher concentrations of ß-glucosides, malonylglucosides, glycitein, and genistein than Msoy 9144 RR, which showed a higher concentration of daidzein. The highest concentrations of isoflavones and fatty acids were observed in soybeans treated with 120 and 240 kg/ha P2O5, regardless of the location and cultivar.


Subject(s)
Fertilizers/analysis , Glycine max/chemistry , Phosphates/metabolism , Phytochemicals/chemistry , Plant Oils/chemistry , Plants, Genetically Modified/chemistry , Fatty Acids/chemistry , Fatty Acids/metabolism , Nutritive Value , Phosphates/analysis , Phytochemicals/metabolism , Plant Oils/metabolism , Plants, Genetically Modified/genetics , Plants, Genetically Modified/growth & development , Plants, Genetically Modified/metabolism , Glycine max/genetics , Glycine max/growth & development , Glycine max/metabolism , Tocopherols/analysis , Tocopherols/metabolism
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