Objective: It has been observed that the consumption of legumes within a varied and Mediterranean diet has beneficial effects in prevention and control of many diseases, including chronic kidney disease (CKD). Recently, legumes have also been considered a good source of protein for CKD patients. However, despite their benefits, guidelines still recommend a limit to their consumption by these patients because of legumes' high potassium and phosphorus content, which are minerals whose intake must be controlled. The aim of this work is to analyze and compare the effect of different cooking methods in the reduction and final content of minerals in legumes to evaluate a possible increase in the frequency of their consumption by CKD patients.
Methods: Dried and canned chickpeas and lentils were cooked using different cooking techniques: (1) soaking, (2) pressure cooking, and (3) normal cooking. Initial and final potassium and phosphorus content and the percentage of humidity in each cooking technique were determined in both legumes. Mineral content was analyzed using flame photometry and nitro-vanado-molybdate colorimetry.
Results: The results showed potassium content reductions of up to 80% after soaking and cooking with final values under 120 mg/100 g edible portion. The initial potassium content in canned legumes was low enough, 100 mg/100 g edible portion, but with the application of a subsequent culinary treatment, it was possible to leach up to 95% of the potassium to almost negligible values. Reductions in phosphorus content were not as marked as those of potassium, but culinary treatments reach a phosphorus/protein ratio,11.
Conclusions: These results show that culinary processing of legumes is a very useful tool to reduce potassium and phosphorus content to acceptable levels for their consumption by renal patients, allowing an increase in intake frequency. But, this also reveals the need to update CKD dietary guidelines.
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http://dx.doi.org/10.1053/j.jrn.2018.08.001 | DOI Listing |
Plants (Basel)
January 2025
College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, China.
The incorporation of rice straw (RS) and Chinese milk vetch (CMV) with reduced chemical fertilizers (CFs) is a viable solution to reduce the dependency on CF. However, limited research has been conducted to investigate the impact of CMV and RS with reduced CF on rice production. A field trial was conducted from 2018 to 2021 with six treatments: CK (no fertilizer), F100 (100% NPK fertilizer (CF)), MSF100 (100% CF+CMV and RS incorporation), MSF80 (80% CF+CMV+RS), MSF60 (60% CF+CMV+RS), and MSF40 (40% CF+CMV+RS).
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January 2025
State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou 311300, China.
Phosphorus (P) is an essential nutrient for rice growth, and the presence of phosphate-solubilizing bacteria (PSB) is an effective means to increase soil P content. However, the direct application of PSB may have minimal significance due to their low survival in soil. Biochar serves as a carrier that enhances microbial survival, and its porous structure and surface characteristics ensure the adsorption of .
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January 2025
Escuela de Ingeniería en Agronomía, Campus Tecnológico Local San Carlos, Tecnológico de Costa Rica, Alajuela 22321001, Costa Rica.
The role of a plant root system in resource acquisition is relevant to confront drought events caused by climate change. Accordingly, nursery practices like phosphorous (P) fertilization and root pruning have been shown to modify root architecture; however, their combined benefits require further investigation in Mediterranean species. We evaluated the effect of applied P concentrations (0, 15, 60, and 120 mg L P) with or without chemical (copper) root pruning (WCu, WoCu, respectively) in and on morpho-physiological and root architecture traits.
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January 2025
United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology, Tokyo 183-8509, Japan.
Phosphorus (P) availability in soils is often constrained by its accumulation in non-labile phosphorus (NLP) forms, limiting its accessibility to plants. This study examines how soil physical properties, chemical characteristics, and climatic conditions influence phosphorus fractionation and the transformation of NLP into plant-available labile phosphorus (LP). Utilizing global structural equation modeling (SEM), we found that silt content enhances organic phosphorus fractions, including NaHCO-Po and NaOH-Po.
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January 2025
College of Ecological Engineering, Guizhou University of Engineering Science, Bijie 551700, China.
Exploring the changes in plant functional traits and their relationship with the environment in karst climax communities across different latitudes can enhance our understanding of how these communities respond to environmental gradients. In this study, we focus on climax karst climax plant communities in Guizhou Province, China. We selected three sample sites located at varying latitudes and analyzed the variations in functional traits of the plant communities at these latitudes.
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