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19 pages, 2334 KB  
Article
Microbial Bioprocessing of Sunflower Protein Extracts: Nutritional, Techno-Functional and Bioactive Outcomes of Lactobacillus helveticus and Bacillus subtilis Fermentation Products
by Cansu Yay, Bilgen Özsoy, Onur Güneşer, Özlem Aslan, Emine Aytunga Arık Kibar and Müge İşleten Hoşoğlu
Fermentation 2026, 12(8), 356; https://doi.org/10.3390/fermentation12080356 - 30 Jul 2026
Viewed by 533
Abstract
Fermentation has significant potential for valorizing de-oiled sunflower meal (DSM) protein for human consumption. Here, DSM extracts were fermented for 48 h with Lactobacillus helveticus B-4526 and Bacillus subtilis B-3387, and their nutritional, bioactive, and techno-functional properties were evaluated. DSM extract supported the [...] Read more.
Fermentation has significant potential for valorizing de-oiled sunflower meal (DSM) protein for human consumption. Here, DSM extracts were fermented for 48 h with Lactobacillus helveticus B-4526 and Bacillus subtilis B-3387, and their nutritional, bioactive, and techno-functional properties were evaluated. DSM extract supported the growth of both organisms, with cell numbers increasing by >1.5 log CFU/mL for B. subtilis and approximately 1 log CFU/mL for L. helveticus. During fermentation, B. subtilis degraded protein bands in the 23–46 kDa range, whereas L. helveticus promoted protein aggregation due to acidification, which may have reduced protein solubility. Antioxidant activities (DPPH, ABTS, and CUPRAC assays) and ACE-inhibitory activity increased in both fermentations, with B. subtilis showing the strongest effect. FTIR analysis indicated fermentation-induced alterations in the protein secondary structure. The total amino acid content decreased after B. subtilis fermentation but remained similar after L. helveticus fermentation. Phytic acid present in the meal decreased as a result of extraction/fermentation workflow. B. subtilis fermentation improved solubility at pH 4.0 but reduced foaming and emulsifying properties. Both fermentations decreased the oil-holding and water-holding capacities. Overall, this study underscores the need to match the fermenting microorganism to the desired outcome, as enhancements in one property often involve trade-offs with others. Full article
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18 pages, 334 KB  
Article
Assessing Enzymatically Pre-Treated, Vacuum Paddle-Dehydrated Tomato Pomace as a Sustainable Ingredient in Dog Diets
by Maria Soares, Carolina Barroso, Tiago Aires, António J. M. Fonseca and Ana R. J. Cabrita
Pets 2026, 3(3), 28; https://doi.org/10.3390/pets3030028 - 10 Jul 2026
Viewed by 456
Abstract
Industrial processing of tomato generates large amounts of tomato pomace (TP), whose disposal and stabilization are challenging due to its high moisture content. This study evaluated, for the first time, the effects of increasing inclusion levels of enzymatic pre-treatment, vacuum paddle-dehydrated TP (ETP), [...] Read more.
Industrial processing of tomato generates large amounts of tomato pomace (TP), whose disposal and stabilization are challenging due to its high moisture content. This study evaluated, for the first time, the effects of increasing inclusion levels of enzymatic pre-treatment, vacuum paddle-dehydrated TP (ETP), in extruded diets for adult dogs. Three diets containing 0%, 2% or 4% ETP, replacing wheat bran and sunflower meal, were produced. Three two-bowl tests assessed palatability, and a feeding trial was performed using a four 3 × 3 Latin square design with 12 healthy adult Beagle dogs across three 28-day periods. Inclusion of ETP had negligible effects on the chemical composition of diets and kept unaffected palatability, body weight, food intake, fecal consistency and output. Fecal pH was lower, and valerate proportion was higher, in dogs fed the 2% ETP diet. All diets exhibited high digestibility (>90%) without effects of dietary treatments. Overall, ETP, a locally sourced co-product of the food industry, may represent a more sustainable alternative to imported raw materials, although further studies are needed to explore its effects on fecal microbiota and health-related parameters. Full article
(This article belongs to the Topic Research on Companion Animal Nutrition)
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18 pages, 313 KB  
Article
Feeding Low- and High-Fibre Sunflower Meal to Broiler Chickens—Effects of Inclusion Rate and Age of Birds on the Production Traits, Carcass Composition, Nutrient Digestibility, Gut Viscosity, and Caecal Short-Chain Fatty Acid Content
by Kesete Goitom Tewelde, Brigitta Kiss, Tivadar Csiszér, László Pál, Nikoletta Such, Ádám Bartos and Károly Dublecz
Animals 2026, 16(2), 162; https://doi.org/10.3390/ani16020162 - 6 Jan 2026
Viewed by 2457
Abstract
Sunflower meal (SM) is an economically important, inexpensive, and locally abundant alternative protein source in the Eurozone. The study aimed at investigating the effects of feeding two forms of SM on the production traits, carcass composition, nutrient digestibility, and some gut parameters of [...] Read more.
Sunflower meal (SM) is an economically important, inexpensive, and locally abundant alternative protein source in the Eurozone. The study aimed at investigating the effects of feeding two forms of SM on the production traits, carcass composition, nutrient digestibility, and some gut parameters of broiler chickens. A total of 600-day-old Ross 308 male broilers were fed five isocaloric and isonitrogenous diets. Besides the control diet (C), the high- and low-fibre SMs (HFSM and LFSM) were fed at 20% (HFSM20 and LFSM20) and 30% (HFSM30 and LFSM30). Compared to the C, feeding the SM-containing diets did not affect the feed intake (FI) of birds. In the finisher phase, the HFSM30 treatment resulted in significantly higher, while the LFSM30 diet in significantly lower body weight gain. All SM treatments impaired FCR, but the difference was significant only in the grower phase. In comparison with the C, the SM treatments failed to modify carcass composition. The fat digestibility and the AMEn content increased, while the starch digestibility decreased when SM was fed. Except the LFSM30 treatment in the grower phase, the Nitrogen retention of birds was not affected. The SM-containing diets reduced the urinary N excretion, and the total N excretion of growers. Furthermore, the HFSM30 reduced the jejunal viscosity during the grower and finisher phases. The treatments did not modify the short-chain fatty acid contents of the caeca. In conclusion, SM can be used even at 20 and 30% in the nutrition of broiler chickens. However, the responses are affected by the age and the fibre content of SM. Full article
(This article belongs to the Special Issue Optimizing Alternative Protein Sources for Sustainable Poultry Diet)
38 pages, 5541 KB  
Article
Impact of Sunflower (Helianthus annuus) Seed Meal Use on the Nutritional, Phytochemical, Rheological, Physicochemical, and Sensory Quality of Wheat Bread
by Sylvestre Dossa, Alexandru Rinovetz, Christine Neagu, Daniela Stoin, Dacian Lalescu, Călin Jianu, Isidora Radulov, Lelia Serpe, Adina Brinzeu and Ersilia Alexa
Appl. Sci. 2026, 16(1), 461; https://doi.org/10.3390/app16010461 - 1 Jan 2026
Cited by 5 | Viewed by 1917
Abstract
This study aimed to examine the impact of using sunflower seed meal (SM) on the nutritional, phytochemical, rheological, physicochemical, and sensory qualities of wheat bread. Four bread types were formulated with 0, 10, 20, and 30% SM (CB, SMWB1, SMWB2, and SMWB3, respectively). [...] Read more.
This study aimed to examine the impact of using sunflower seed meal (SM) on the nutritional, phytochemical, rheological, physicochemical, and sensory qualities of wheat bread. Four bread types were formulated with 0, 10, 20, and 30% SM (CB, SMWB1, SMWB2, and SMWB3, respectively). Both the composite flours and the resulting breads were evaluated to assess the impact of increasing SM levels. The results revealed that SM was richer than wheat flour in minerals, protein, lipids, total polyphenols, and antioxidants activity. The gradual incorporation of SM into WF improved the composition of these substances in the composite flours and breads obtained. Among all formulations, SMWB1 (10% SM) exhibited the most balanced characteristics, combining nutritional enhancement with satisfactory technological quality. This bread showed a porous crumb structure (62.43% porosity), good elasticity (57.28%), and an acceptable height-to-diameter ratio (0.47). Based on these results, SMWB1 was selected for further technological optimization. The improved formulation (SMWB10) was rich in nutrients and had better physicochemical and organoleptic characteristics and a reduced antinutritional effect of phytic acid, thanks to the fermentation applied during its production. Thus, incorporating 10% sunflower meal into wheat bread improves its nutritional and phytochemical composition, particularly in terms of proteins, minerals, polyphenols, and antioxidants. Full article
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12 pages, 1099 KB  
Article
Protein Level and Particle Size-Dependent Stabilization of Oil-in-Water Emulsions by Sunflower Meal
by Strahinja Vidosavljević, Nikola Maravić, Zita Šereš, Aleksandar Fišteš and Nemanja Bojanić
Processes 2025, 13(12), 3882; https://doi.org/10.3390/pr13123882 - 1 Dec 2025
Cited by 1 | Viewed by 1097
Abstract
Sunflower meal represents a protein- and fiber-rich by-product of the oil industry with potential application as a natural stabilizer in food emulsions. Building upon previous findings that emphasized the role of protein content in emulsion stability, the present study further investigated the combined [...] Read more.
Sunflower meal represents a protein- and fiber-rich by-product of the oil industry with potential application as a natural stabilizer in food emulsions. Building upon previous findings that emphasized the role of protein content in emulsion stability, the present study further investigated the combined effect of protein level and particle size distribution of sunflower meal fractions on the formation and stability of oil-in-water emulsions. Two sets of sunflower meal fractions were prepared from finely milled material, fractionated, and blended in controlled proportions to obtain four protein-enriched (30 ± 1%) and four cellulose-rich (15 ± 1%) fractions, each defined by particle size ranges of 250/200, 200/125, 125/100, and <100 µm. Emulsion stability was evaluated through droplet size analysis, zeta potential measurements, and creaming index determination during seven days of storage. The results demonstrated that both protein content and particle size significantly affected the emulsifying and stabilizing behavior of sunflower meal fractions. For the low-protein group (15%), larger particle sizes (250/200 µm) yielded smaller emulsion droplets (D[4.3] = 66.03 µm) and higher zeta potential values (−15.53 mV), while in the high-protein group (30%), droplet size distribution was more uniform (D[4.3] from 72.13 to 76.29 µm). During seven days of storage, all emulsions exhibited a gradual increase in creaming index, followed by partial stabilization at later time points. Emulsions prepared with sunflower meal fractions of higher-protein content showed consistently lower creaming index values, indicating improved physical stability throughout storage. Overall, the study confirmed that the interplay between composition (protein level) and physical structure (particle size) governs the emulsification efficiency of sunflower meal fractions, providing insights for their potential application as plant-based stabilizers in food systems. Full article
(This article belongs to the Section Food Process Engineering)
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29 pages, 7185 KB  
Article
Molecular Interplay Between Plant Proteins and Polyphenols: pH as a Switch for Structural and Functional Assembly
by Havva Aktaş, Arkadiusz Szpicer, Barbara Strojny-Cieślak, Wojciech Borucki, Ute Schweiggert-Weisz and Marcin A. Kurek
Foods 2025, 14(23), 3991; https://doi.org/10.3390/foods14233991 - 21 Nov 2025
Cited by 9 | Viewed by 4352
Abstract
Understanding how plant proteins interact with polyphenols under different pH conditions is key to unlocking the full functional potential of natural ingredients in food systems. This study investigates the pH-dependent binding mechanisms and structural transformations of three underutilized plant proteins: mustard protein concentrate [...] Read more.
Understanding how plant proteins interact with polyphenols under different pH conditions is key to unlocking the full functional potential of natural ingredients in food systems. This study investigates the pH-dependent binding mechanisms and structural transformations of three underutilized plant proteins: mustard protein concentrate (MP), primrose protein meal (PP), and sunflower meal protein isolate (SMP) in complexation with red cabbage polyphenols (RC) using spectroscopic and microscopic techniques, we show that alkaline conditions (pH 7–9) enhance anthocyanin binding, driven by hydrogen bonding and hydrophobic interactions, particularly in PP and SMP. However, this increased binding is accompanied by greater protein unfolding and aggregation, which affects solubility and colloidal behavior. PP9 demonstrated the strongest antioxidant activity, while MP3 retained anthocyanin stability in acidic conditions. Emulsification and foaming properties varied across proteins and pH: PP showed the highest emulsification at acidic pH, MP had superior emulsion stability at alkaline pH, and SMP maintained performance across all conditions. CLSM imaging confirmed that SMP-based emulsions were the most structurally stable. These findings provide molecular insight into how pH governs the assembly, stability, and functionality of protein–polyphenol complexes, paving the way for the rational design of next-generation plant-based food formulations. Full article
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18 pages, 3118 KB  
Article
Synergistic Effect of Bacillus subtilis B3 and β-Glucanase on Solid-State Fermentation of Sunflower Meal
by Shuqi Chen, Haoran Shi, Peng Zhao, Zengqiang Ma, Xiaolong Li, Xiangyu Wang and Feiyan Xue
BioTech 2025, 14(4), 92; https://doi.org/10.3390/biotech14040092 - 18 Nov 2025
Cited by 2 | Viewed by 1516
Abstract
Background: Sunflower meal (SFM), a promising feed material, is constrained by its high content of crude fiber (CF) and chlorogenic acid (CGA). Methods: This study utilized a synergistic solid-state fermentation process involving the Bacillus subtilis strain B3 and the enzyme β-glucanase to enhance [...] Read more.
Background: Sunflower meal (SFM), a promising feed material, is constrained by its high content of crude fiber (CF) and chlorogenic acid (CGA). Methods: This study utilized a synergistic solid-state fermentation process involving the Bacillus subtilis strain B3 and the enzyme β-glucanase to enhance SFM’s application potential. Results: The synergistic treatment notably reduced CF by 12.7% and CGA by 99.77%, while simultaneously increasing acid-soluble protein and reducing sugar by 111.3% and 283.1%, respectively. Positive impacts on its physical structure, characterized by a looser network with visible pores, and on its microbial community, evidenced by an enriched abundance of fungal species such as Cyberlindnera and Aspergillus, were also observed. In vitro assays indicated improved digestibility of dry matter, neutral detergent fiber, and crude protein, along with a non-significant reduction in methane production. Conclusions: These results demonstrate that microbial-enzymatic synergy effectively enhances SFM’s nutritional profile. Full article
(This article belongs to the Section Industry, Agriculture and Food Biotechnology)
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21 pages, 890 KB  
Article
Environmental Performance of Hermetia illucens Bioconversion in a Medium-Scale Mass Rearing System to Valorize Agri-Food Industrial Residue
by Daniele Duca, Kofi Armah Boakye-Yiadom, Ester Foppa Pedretti and Alessio Ilari
Sustainability 2025, 17(21), 9651; https://doi.org/10.3390/su17219651 - 30 Oct 2025
Cited by 1 | Viewed by 2341
Abstract
Valorizing agri-food waste through black soldier fly larvae (BSFL) bioconversion offers a promising path to enhance circular and sustainable food systems. This study used attributional Life Cycle Assessment (LCA) to evaluate the environmental performance of BSFL reared on six agro-industrial residue diets: tomato, [...] Read more.
Valorizing agri-food waste through black soldier fly larvae (BSFL) bioconversion offers a promising path to enhance circular and sustainable food systems. This study used attributional Life Cycle Assessment (LCA) to evaluate the environmental performance of BSFL reared on six agro-industrial residue diets: tomato, pea, onion, chickpea, wheat, and liquid digestate. The Environmental Footprint 3.1 method was used to assess multiple impact categories. The rearing trials were conducted in a dedicated pilot plant (13.5 m × 2.5 m × 2.7 m) that can treat about 1.58 t of residue per cycle. From the results, BSFL biomass yields were similar across diets, with 12–15% bioconversion and 70–85% substrate reduction. BSFL protein had higher impacts than fishmeal and pea protein but was comparable to soybean meal. BSFL lipids had greater impacts than rapeseed, palm, and sunflower oils yet were similar to soybean oil for bioenergy from fat. Electricity use for climate control was the main hotspot (~85%). Scenario analysis showed that using residual heat for climate control and scaling up via optimization could cut impacts by over 80%. The findings demonstrate the potential for producing BSFL on a medium-to-large scale to enhance circularity in the agri-food sector. Full article
(This article belongs to the Section Environmental Sustainability and Applications)
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16 pages, 872 KB  
Article
Phytogenic and Nutritional Strategies to Improve Milk Production and Microbiological Quality in Lactating Donkeys
by Ana-Maria Plotuna, Ionela Hotea, Ileana Nichita, Ionela Popa, Kalman Imre, Viorel Herman and Emil Tîrziu
Animals 2025, 15(20), 3060; https://doi.org/10.3390/ani15203060 - 21 Oct 2025
Cited by 1 | Viewed by 1057
Abstract
Donkey milk is highly regarded for its nutritional, immunological and hypoallergenic properties. In this context, the global demand is increasing, and the challenges of low production and milk hygiene need to be addressed. This study evaluated the effects of dietary and phytogenic supplementation [...] Read more.
Donkey milk is highly regarded for its nutritional, immunological and hypoallergenic properties. In this context, the global demand is increasing, and the challenges of low production and milk hygiene need to be addressed. This study evaluated the effects of dietary and phytogenic supplementation on milk yield, nutrient digestibility, and milk quality in lactating jennies (Equus asinus). All donkeys had unrestricted access to natural pasture during the study. In addition to grazing, animals were divided into three groups (n = 10 per group) that differed only in the type of supplemental feed. The control group (CG) received pasture grass with a corn-based supplement; Group 1 (G1) received the same basal feed enriched with sunflower meal and a phytogenic blend of medicinal plants; and Group 2 (G2) received the same compound feed as G1 but without the phytogenic additives. Over an eight-week period, milk production, apparent digestibility coefficients (dry matter, protein, fibre, and ether extract), and microbiological quality were assessed. G1 demonstrated the highest milk yield (p < 0.001), improved nutrient digestibility (e.g., crude protein digestibility: 57.89 ± 4.21%), and a significant reduction in total viable counts (TVC) from 2.848 ± 0.265 to 1.898 ± 0.404 log10 CFU/mL (p < 0.001), compared to CG and G2. The latter maintained relatively stable TVC values (2.930 ± 0.260 → 2.838 ± 0.196; p = 0.356641), accompanied by reduced interindividual variability, whereas CG exhibited a slight increase (2.922 ± 0.253 → 2.949 ± 0.323; p = 0.792259) and greater variability, suggesting a negative trend. Crude protein digestibility was 55.86 ± 6.66% in G2 and 45.26 ± 9.85% in CG, further supporting the superior nutrient utilization efficiency observed in G1. The phytogenic supplement stabilized milk chemical composition, suggesting potential galactagogues, immunomodulatory, and antimicrobial effects. These findings support the use of functional feed additives as a promising strategy to enhance productive performance and milk hygiene in sustainable donkey farming systems. Full article
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25 pages, 687 KB  
Article
Chemical Profile and Mycotoxin Analyses of Corn (Argentina, Brazil, and Ukraine), Soybean Meal (USA and Argentina), and Sunflower Meal (Ukraine) Used in Poultry Feed in Morocco
by Najlae El Bouanani, Bouchaib Bencharki and Hafsa Houmairi
Analytica 2025, 6(3), 30; https://doi.org/10.3390/analytica6030030 - 30 Aug 2025
Cited by 1 | Viewed by 2816
Abstract
This study analyzes the nutritional quality and mycotoxin contamination of three key feed ingredients—corn, soybean meal (SBM), and sunflower meal (SFM)—imported into Morocco during the years 2019, 2020, and 2021. Samples were collected upon reception at the plant and analyzed in triplicate under [...] Read more.
This study analyzes the nutritional quality and mycotoxin contamination of three key feed ingredients—corn, soybean meal (SBM), and sunflower meal (SFM)—imported into Morocco during the years 2019, 2020, and 2021. Samples were collected upon reception at the plant and analyzed in triplicate under standardized laboratory conditions. Chemical composition was evaluated using classical and NIR-based methods, while mycotoxin levels were assessed through ELISA and confirmed by HPLC. Corn samples from Argentina, Brazil, and Ukraine were assessed for their proximate composition and mycotoxin burden. While most nutritional parameters showed no significant differences between origins (p > 0.05), water activity (Aw) and digestible threonine content were significantly affected by origin (p < 0.01). Brazilian corn had the highest Aw (0.716), followed by Argentina (0.680), and Ukraine (0.662), a factor linked to its higher susceptibility to mold and mycotoxin development. Soybean meal from the U.S. and Argentina showed a general positive trend in favor of U.S. imports, with higher average crude protein (the CP content of American soybean meal was 46.912%, compared to 46.610% in Argentine soybean meal), fat, digestible lysine, and metabolizable energy. However, statistical differences were limited to water activity and moisture content (p < 0.05). American soybean meals are generally recognized for their consistent processing quality and superior amino acid digestibility. Sunflower meal, sourced exclusively from Ukraine, showed a steady improvement in crude protein (from 35.97% in 2019 to 36.99% in 2021) and metabolizable energy, alongside reduced crude fiber content, enhancing its nutritional value in poultry diets. The consistent use of Ukrainian SFM in Morocco reflects both supply stability and quality. Regarding mycotoxins, origin had a significant effect on several compounds. Argentine and Brazilian corn showed higher mean levels of fumonisins (1165.26 and 1019.52 ppb), ochratoxin A (2.26 and 3.02 ppb), and zearalenone (36.99 and 21.92 ppb) compared to Ukrainian corn, which consistently had the lowest levels across all major mycotoxins (e.g., fumonisins = 200 ppb; zearalenone = 4.90 ppb). Aflatoxin B1 levels remained constant at 0.2 ppb across all origins. These findings confirm the influence of geographic origin—particularly water activity—on mycotoxin risk in imported maize. Full article
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17 pages, 904 KB  
Review
Sunflower Seed Hulls and Meal—A Waste with Diverse Biotechnological Benefits
by Flora Tsvetanova, Greta Naydenova and Stanislava Boyadzhieva
Biomass 2025, 5(3), 47; https://doi.org/10.3390/biomass5030047 - 19 Aug 2025
Cited by 11 | Viewed by 8890
Abstract
Sunflower seed hulls and meal are among the most abundant by-products of the food industry. They are an example of waste and, at the same time, a plentiful biomass that cannot be utilized directly in human and animal diets due to their hard [...] Read more.
Sunflower seed hulls and meal are among the most abundant by-products of the food industry. They are an example of waste and, at the same time, a plentiful biomass that cannot be utilized directly in human and animal diets due to their hard digestibility and low nutritional value. Besides their main compounds—carbohydrates, lipids, and proteins—they possess valuable constituents such as vitamins, minerals, and especially phenolics that contribute to their antioxidant capacity. Numerous benefits can be retrieved from such by-products. Since sunflower meal and seed hulls are cheap renewable sources of beneficial substances, their potential in relation to the improvement in our daily life needs to be studied. This is the reason why, in recent years, there has been such a serious interest in their utilization and valorization towards the concept of a circular bio-based economy and process sustainability. This review aims to trace the potential applications and implementation of sunflower meal and hulls in the different fields of industry and environmental protection strategies. Full article
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11 pages, 274 KB  
Article
The Optimal Digestible Leucine-to-Lysine Ratio in Wheat-Based Diets for Finishing Broilers
by Diana Siebert and Christian Scharch
Animals 2025, 15(14), 2092; https://doi.org/10.3390/ani15142092 - 15 Jul 2025
Cited by 1 | Viewed by 1674
Abstract
Male Ross 308 finisher (19 to 33 days) broiler chickens (n = 672) were used to determine the standardized ileal digestible (SID) leucine (Leu)-to-lysine (Lys) ratio for the maximum growth performance and slaughter parameters. A basal diet (incl. wheat, triticale, soybean meal, [...] Read more.
Male Ross 308 finisher (19 to 33 days) broiler chickens (n = 672) were used to determine the standardized ileal digestible (SID) leucine (Leu)-to-lysine (Lys) ratio for the maximum growth performance and slaughter parameters. A basal diet (incl. wheat, triticale, soybean meal, sunflower meal, and synthetic amino acids) deficient in Leu was formulated, and supplementary L-Leu was used to achieve 0.9 and 1.25 SID Leu-to-Lys ratios in increments of 0.05. A slight deficiency in lysine was implemented to truly relate broiler performance to changes in the SID Leu-to-Lys ratio. Diets were fed to broilers in seven pens (12 broilers each). Eight birds per pen were used for carcass evaluation on day 33. Data analysis indicated that SID Leu-to-Lys ratios between 0.96 and 1.025 were required to achieve 95% and 98% of the maximum body weight gain, daily feed consumption, and the European production efficacy factor, respectively. The estimation of recommended SID Leu-to-Lys ratios for the feed conversion ratio and carcass parameters was not possible. Full article
18 pages, 1213 KB  
Article
Optimization of Protein Extraction from Sunflower Meal Using Taguchi Design and Regression Modeling for Human Nutrition Applications
by Anca Becze, Marin Senila, Lacrimioara Senila, Lucian Dordai, Oana Cadar, Vanda Liliana Fuss-Babalau, Marius Roman, Levente Levei, Paul Uiuiu and Mihai Octavian Naghiu
Foods 2025, 14(14), 2415; https://doi.org/10.3390/foods14142415 - 8 Jul 2025
Cited by 6 | Viewed by 2550
Abstract
In response to the growing demand for sustainable protein sources, this study explores the valorization of sunflower meal—a by-product of oil extraction—as a protein-rich ingredient suitable for human nutrition. The aim was to optimize the extraction process and assess the nutritional and safety [...] Read more.
In response to the growing demand for sustainable protein sources, this study explores the valorization of sunflower meal—a by-product of oil extraction—as a protein-rich ingredient suitable for human nutrition. The aim was to optimize the extraction process and assess the nutritional and safety profile of the resulting protein flour. Mechanical stirring, ultrasound-assisted, and CO2-assisted extraction methods were evaluated, with mechanical stirring selected for optimization due to its scalability and energy efficiency. A Taguchi L9 orthogonal array was employed to evaluate the effects of pH, temperature, and sample mass on protein content. A first-order regression model was developed and validated (R2 = 0.86, p < 0.05), identifying optimal conditions at pH 10.0, 30 °C, and 60 g per 500 mL of distilled water. Under these conditions, protein content reached 49.87%. The extracted protein flour exhibited improved nutritional quality with high protein content, moderate solubility (53.4%), and favorable amino acid composition—particularly rich in glutamic acid, aspartic acid, and arginine. Safety analyses confirmed the absence of detectable aflatoxins and very low PAH levels. These results support the use of sunflower protein concentrate as a sustainable, nutritionally valuable, and safe ingredient for functional food applications. Further studies are recommended to improve functional properties and assess sensory acceptance. Full article
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18 pages, 1485 KB  
Review
Organic Crop Production in Kazakhstan: Agronomic Solutions and Bioresources
by Timur Savin and Alexey Morgounov
Resources 2025, 14(7), 108; https://doi.org/10.3390/resources14070108 - 30 Jun 2025
Cited by 4 | Viewed by 8527
Abstract
Crop production in Kazakhstan is characterized by vast resources, including over 200 M hectares of farmland and more than 23 M hectares of arable land located mainly in the arid zone with a short growing season. In 2023, the five most important crops [...] Read more.
Crop production in Kazakhstan is characterized by vast resources, including over 200 M hectares of farmland and more than 23 M hectares of arable land located mainly in the arid zone with a short growing season. In 2023, the five most important crops in the country were spring wheat (12.5 M ha), spring barley (2.42 M ha), sunflower (1.13 M ha), flax (0.73 M ha), and winter wheat (0.59 M ha). Diverse agroecological conditions and low input farming represent good opportunities for the more sustainable use of resources through organic production. However, the area falling under certified organic farming recently varied from 0.1 to 0.3 M ha with wheat, flax, soybean and soybean meal, peas and lentils serving as the main commodities exported to Europe. Several factors limit organic farming development in the country, including the certification system, marketing, and the availability of crops, cultivars, and technologies. The current review summarizes the main organic agronomic practices and bioresources applicable in Kazakhstan into four main themes: crops and cultivars’ diversification; tillage systems for organic crops; crop nutrition; and protection. The technologies developed for organic farming in similar ecologies globally are highly relevant to Kazakhstan and need to be tested and adopted by producers. The lack of targeted cultivars and technology development for organic production in Kazakhstan impedes its progress and requires a longer-term producer-focused framework to extend related research. Full article
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15 pages, 3275 KB  
Article
Fermented Mixed Feed Increased Egg Quality and Intestinal Health of Laying Ducks
by Changfeng Xiao, Yunying Xu, Changsuo Yang, Daqian He and Lihui Zhu
Agriculture 2025, 15(11), 1230; https://doi.org/10.3390/agriculture15111230 - 5 Jun 2025
Viewed by 2800
Abstract
This study investigated the effects of adding fermented mixed feed (FMF, composed of several unconventional protein feeds, such as brown rice, rice bran, rice bran meal, sunflower meal, cottonseed meal, and corn starch residue) into the diet of Longyan Shan-ma ducks on their [...] Read more.
This study investigated the effects of adding fermented mixed feed (FMF, composed of several unconventional protein feeds, such as brown rice, rice bran, rice bran meal, sunflower meal, cottonseed meal, and corn starch residue) into the diet of Longyan Shan-ma ducks on their egg quality and intestinal health. The ducks were randomly divided into two groups: one group served as the control and received a standard diet, while the other group received a diet in which 4% of the feed was substituted with FMF. Compared to unfermented feed, FMF had elevated lactic acid levels and reduced phytic acid and crude fiber, along with higher amounts of crude protein and a range of amino acids, including serine, histidine, arginine, alanine, valine, methionine, cysteine, isoleucine, and lysine. FMF significantly enhanced egg production and improved the overall egg quality, such as eggshell strength and thickness. It also enhanced total antioxidant capacity and glutathione peroxidase concentrations in serum while reducing serum urea nitrogen and interleukin-1β levels. Histological analysis showed that FMF supplementation improved the ileal villus height-to-crypt depth ratio. Microbiota analysis demonstrated that FMF had a significant impact on β-diversity by increasing Firmicutes, Actinobacteriota, and Desulfobacterota and decreasing Proteobacteria and Myxococcota at the phylum level. The abundance of Corynebacterium, Lactobacillus, and Gallicola was found to be elevated due to FMF at the genus level, whereas Kocuria, Rothia, Helicobacter, and Escherichia-Shigella were decreased. Additionally, diets supplemented with FMF resulted in higher intestinal valeric acid levels among ducks. Our findings indicate that incorporating FMF into laying duck diets can enhance production performance, egg quality, and gut health. Full article
(This article belongs to the Section Farm Animal Production)
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