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de Almeida, E.

Publications and source records attributed to de Almeida, E..

2 recordsLinked to original sources

May mineral composition trigger or limit the protein content in soybean (Glycine max (L.) Merrill) seeds? Insights from a survey on 95 varieties cultivated in Brazil

Background and AimsSoybean (Glycine max (L.) Merrill) stands out as the major source of protein and oil for human and animal nutrition. Nevertheless, the increase in soybean yield has been accompanied by a reduction in its protein content in the last few decades. Since this might be influenced by the elemental composition of the seeds, we herein aimed at determining the profile of mineral nutrients and protein of 95 soybean varieties broadly cultivated in Brazil, the worlds biggest soybean producer and exporter, to identify possible nutritional triggers for the protein content. MethodsEnergy dispersive fluorescence spectroscopy (EDXRF) was employed to determine the concentration of macro, i.e., (K), phosphorus (P), sulphur (S), calcium (Ca), and micronutrients, i.e., iron (Fe), manganese (Mn), zinc (Zn), and copper (Cu). The protein content was evaluated in soybean seeds by the Dumas method. The correlational and clustering assessment between nutrients and protein were determined through both univariate and multivariate non-parametric tests. ResultsBoth protein and nutrient concentrations are not homogeneous across soybean seed varieties, and a clear positive association between protein and sulphur (S), zinc (Zn), and manganese (Mn) concentrations were observed. ConclusionThe recorded results suggest that sulphur (S), zinc (Zn), and manganese (Mn) are the limiting nutrients for higher protein content in soybean seeds.

plant biology↗

Microprobe-XRF assessment of nutrient distribution in soybean, cowpea, and kidney bean seeds: a Fabaceae family case study

The present study explored the microprobe X-ray fluorescence spectroscopy ({micro}-XRF) for quantitative and space-resolved distribution of macro, i.e., K, P, S, and Ca, and micronutrients, i.e., Fe, Zn, and Mn elemental composition in the cross-sectioned seeds of cowpea (Vigna unguiculata L.), kidney bean (Phaseolus vulgaris L.), and soybean (Glycine max L.) seeds, important agricultural species within the Fabaceae family. It unveils that both macro and micronutrients were heterogeneously distributed across seed tissues. Most of the P and S, Fe, Zn, and Mn were mainly found at the embryo axis tissues in all three Fabaceae species, whereas K was spread along the cotyledon and Ca was mostly observed trapped at the seed coat region. Furthermore, the Pearson correlation coefficient revealed a strong spatial correlation between P and S, and K and S in cowpea and soybean seed tissues, whereas Zn and Mn association was also recorded. Therefore, the {micro}-XRF technique demonstrates to be an important tool for assessing seed nutrient distribution, thus subsidizing the understanding of the physiological role of nutrients in seeds and fostering innovative approaches for nutrient supply and biofortification.

biochemistry↗