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Keywords = orange-fleshed sweet potato

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20 pages, 3025 KB  
Article
Comparative Analysis of Flavor and Starch Physicochemical Properties in Different Varieties of Baked Sweet Potatoes
by Wen Li, Chunjie Zhang, Huijun Cui, Siguo Xiong, Hui Xie, Chenghui Liu, Chen Chen and Aili Jiang
Foods 2026, 15(5), 802; https://doi.org/10.3390/foods15050802 - 24 Feb 2026
Cited by 1 | Viewed by 1239
Abstract
This study aimed to investigate the flavor quality and starch physicochemical properties of three orange-fleshed sweet potato varieties commonly cultivated in northeastern China. Fresh and baked samples were evaluated using sensory analysis, electronic nose and tongue, gas chromatography-mass spectrometry for volatile compound profiling, [...] Read more.
This study aimed to investigate the flavor quality and starch physicochemical properties of three orange-fleshed sweet potato varieties commonly cultivated in northeastern China. Fresh and baked samples were evaluated using sensory analysis, electronic nose and tongue, gas chromatography-mass spectrometry for volatile compound profiling, and chemical methods for starch characterization. Liankaoshu 1 exhibited the highest sensory score (88.6), reflecting superior taste and aroma. A total of 70 volatile organic compounds were identified, including β-damascenone, maltol, and β-ionone, as key contributors to baked flavor. Significant varietal differences were found in starch content, particle size, and crystalline structures, with Pushu 32 showing CA-type crystals, Yanshu 25 A-type, and Liankaoshu 1 B-type. Baking increased maltose and soluble sugar levels, which were strongly correlated with sensory attributes. Spearman correlation analysis revealed that sweetness and overall sensory scores were significantly and positively correlated with maltose, soluble sugar, and reducing sugar contents, as well as starch particle size parameters (p ≤ 0.05). These results indicate that starch structural characteristics and saccharification efficiency play critical roles in regulating flavor formation during baking, providing a theoretical basis for sweet potato breeding and processing optimization. Full article
(This article belongs to the Section Grain)
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15 pages, 1222 KB  
Article
Three-Dimensional (3D)-Printed Snacks from Indigenous Composite Inks Improve Metabolic Dysfunctions Associated with High-Fat-Diet-Induced Obesity in Wistar Rats
by Abdullahi Adekilekun Jimoh, Abidemi Paul Kappo, Fehintoluwa Joy Femi-Olabisi, Yusuf Olamide Kewuyemi, Omolola Mary Omosebi and Oluwafemi Ayodeji Adebo
Foods 2025, 14(24), 4185; https://doi.org/10.3390/foods14244185 - 5 Dec 2025
Cited by 1 | Viewed by 903
Abstract
This study investigated the anti-obesogenic effects of 3D-printed snacks—developed from indigenous composite inks of cowpea, sorghum, and orange-fleshed sweet potato—in male and female Wistar rats fed a high-fat diet (HFD). Four experimental diets (TD1–TD4) were formulated from snacks using two blend ratios (33.33%:33.33%:33.33%) [...] Read more.
This study investigated the anti-obesogenic effects of 3D-printed snacks—developed from indigenous composite inks of cowpea, sorghum, and orange-fleshed sweet potato—in male and female Wistar rats fed a high-fat diet (HFD). Four experimental diets (TD1–TD4) were formulated from snacks using two blend ratios (33.33%:33.33%:33.33%) and 50%:10%:40%) and two processing states (raw and bioprocessed). Following a five-week HFD-induction period, the rats were supplemented for an additional five weeks with diets containing 20% of these snacks, Orlistat, or HFD alone. Physiological assessments included body weight, fasting glucose, insulin, homeostatic model assessment for insulin resistance (HOMA-IR), serum lipids, sex hormones, angiotensin-converting enzyme (ACE) activity, and histological evaluation of cardiac tissue. HFD feeding induced hyperglycemia, dyslipidemia, and insulin resistance. Supplementation with the 3D-printed snacks improved glycemic control, with the TD4 (bioprocessed blend; 50:10:40%) restoring glucose levels close to baseline. TD1 and TD2 (raw blends) improved lipid and hormonal profiles in females, whereas TD3 (bioprocessed blend; 33.33%:33.33%:33.33%) significantly reduced triglycerides and elevated HDL in males. Importantly, only TD1 (raw blend; 33.33%:33.33%:33.33%) significantly reduced ACE activity in males, providing a unique cardioprotective mechanism not observed with other snack formulations. Histological analyses revealed inflammatory infiltration and fibroplasia in HFD and Orlistat groups, whereas all 3D-printed snacks preserved normal myocardial architecture without necrosis or fibrosis. Collectively, these findings demonstrate that 3D-printed snacks derived from indigenous composite inks improved metabolic dysfunctions associated with diet-induced obesity. The optimal formulation appears application-specific: TD4 for glycemic control, TD3 for lipid management in males, and TD1/TD2 for metabolic improvements in females. Full article
(This article belongs to the Section Food Nutrition)
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15 pages, 1952 KB  
Article
Comparative Study of the Bioactive Compound Content of Sweet Potato Varieties Grown in Hungary
by Tibor József, Emese Végh, Judit Császár, Gábor Pál Stromájer and Tímea Stromájer-Rácz
Appl. Sci. 2025, 15(23), 12537; https://doi.org/10.3390/app152312537 - 26 Nov 2025
Cited by 2 | Viewed by 1411
Abstract
Sweet potato (Ipomoea batatas (L.) Lam.) is increasingly recognized as a functional crop due to its rich content of health-promoting phytochemicals. This study compared the phenolic compound profiles of four sweet potato varieties differing in flesh colour (purple, orange, white, and pale [...] Read more.
Sweet potato (Ipomoea batatas (L.) Lam.) is increasingly recognized as a functional crop due to its rich content of health-promoting phytochemicals. This study compared the phenolic compound profiles of four sweet potato varieties differing in flesh colour (purple, orange, white, and pale yellow) cultivated in three distinct regions of Hungary. The objective was to evaluate the relative effects of pigmentation and growing location on antioxidant capacity. Tubers were collected in triplicate and analyzed spectrophotometrically (UV–Vis) for vitamin C, total flavonoids, and total polyphenols. Statistical analysis using two-way ANOVA and Tukey’s HSD revealed that flesh colour had a significant effect on all antioxidant parameters (p < 0.05), whereas geographic origin did not. Purple-fleshed tubers exhibited markedly higher levels of vitamin C (21.6 mg/100 mL), flavonoids (378.7 mg/100 mL), and polyphenols (37.0 mg/100 mL) compared with the other colour groups. These findings indicate that pigmentation is a stronger determinant of antioxidant potential than cultivation region. The results highlight the promising nutritional value of Hungarian purple-fleshed sweet potato varieties, supporting their use in functional food development and sustainable agricultural diversification strategies. Full article
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25 pages, 5151 KB  
Article
Processing-Induced Changes in Bioactive Compounds and Antioxidant Activity of Orange-Fleshed Sweet Potato (Ipomoea batatas L.): Steaming Versus Air-Frying
by Wanida Pan-utai, Naraporn Phomkaivon and Sarn Settachaimongkon
Foods 2025, 14(21), 3637; https://doi.org/10.3390/foods14213637 - 24 Oct 2025
Cited by 6 | Viewed by 2819
Abstract
Orange-fleshed sweet potato (OFSP) is a rich source of carotenoids, phenolics, flavonoids, and starch that are influenced by thermal processing. This study compared the effects of steaming (15–45 min) and air-frying (5–15 min) on the color, bioactive composition, starch content, and antioxidant properties [...] Read more.
Orange-fleshed sweet potato (OFSP) is a rich source of carotenoids, phenolics, flavonoids, and starch that are influenced by thermal processing. This study compared the effects of steaming (15–45 min) and air-frying (5–15 min) on the color, bioactive composition, starch content, and antioxidant properties of OFSP peel and flesh to assess processing-induced changes. Unprocessed samples served as the baseline for evaluating percentage and fold changes. Results revealed tissue-specific responses. Steaming preserved flesh brightness (L*, 79) and moderately enhanced carotenoids (0.68 µg/g), anthocyanins (up to 40.5 µg/g in peel), phenolics (2.19–2.27 mg GAE/g), and flavonoids (up to 3.32 mg QE/g). Air-frying induced more pronounced increases in peel bioactives, with carotenoids (4.79 µg/g, 14-fold), phenolics (6.86 mg GAE/g, more than 3-fold), flavonoids (11.75 mg QE/g, more than 20-fold), and transient anthocyanin elevation (61.62 µg/g at 5 min), but prolonged exposure caused degradation in flesh. Starch remained stable in the peel but decreased in the flesh. Antioxidant activity showed similar tissue- and treatment-specific patterns. Steaming preserved structural integrity and bioactive stability, whereas short-duration air-frying maximized peel carotenoids and phenolics. These findings provide insights for optimizing thermal processing to enhance nutritional quality and functional properties in OFSP. Full article
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17 pages, 2035 KB  
Article
Physical and Functional Properties of Sweet Potato Flour: Influence of Variety and Drying Method
by Nelson Pereira, Ana Cristina Ramos, Marco Alves, Vítor D. Alves, Margarida Moldão and Marta Abreu
Molecules 2025, 30(8), 1846; https://doi.org/10.3390/molecules30081846 - 20 Apr 2025
Cited by 9 | Viewed by 5712
Abstract
Sweet potato (Ipomoea batatas (L.) Lam.; SP) flour enhances food nutrition and bioactivity while functioning as a thickening/gelling agent. This study investigated the impact of two drying methods [hot-air (75 °C/20 h) and freeze-drying (−41–30 °C/70 h)] on the physical–functional properties of [...] Read more.
Sweet potato (Ipomoea batatas (L.) Lam.; SP) flour enhances food nutrition and bioactivity while functioning as a thickening/gelling agent. This study investigated the impact of two drying methods [hot-air (75 °C/20 h) and freeze-drying (−41–30 °C/70 h)] on the physical–functional properties of flours from three SP varieties: Bonita (white-fleshed), Bellevue (orange-fleshed), and NP1648 (purple-fleshed). Particle size, morphology, water/oil absorption capacities (WAC/OAC), bulk density, swelling power (SwP), water solubility (WS), foaming/emulsifying properties, least gelation concentration (LGC), and gelatinisation temperature (GT) were analysed. Both the drying method and variety significantly influenced these properties. Hot-air-dried flours exhibited bimodal particle distribution, compact microstructure, and aggregated starch granules, yielding higher WAC (≈3.2 g/g) and SwP (≈3.6 g/g). Freeze-dried flours displayed smaller particles, porous microstructure, and fragmented granules, enhancing OAC (≈3.0 g/g) and foaming capacity (≈17.6%). GT was mainly variety-dependent, increasing as Bellevue (74.3 °C) < NP1648 (78.5 °C) < Bonita (82.8 °C), all exceeding commercial potato starch (68.7 °C). NP1648 required lower LGC (10% vs. 16% for others). All flours exhibited high WS (24–39.5%) and emulsifying capacity (≈44%). These results underscore the importance of selecting the appropriate drying method and variety to optimise SP flour functionality for targeted food applications. Freeze-dried flours might suit aerated/oil-retentive products, while hot-air-dried flours could be ideal for moisture-sensitive formulations. Full article
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16 pages, 805 KB  
Article
Production and Physicochemical and Microbiological Evaluation of Orange-Flesh Sweet Potato Flatbread Infused with Spinach as a Healthy Food Option
by Colleen Castillo, Vidya de Gannes, Gaius Eudoxie, Wendy-Ann P. Isaac and Sivakumar Karuppusamy
Processes 2025, 13(2), 427; https://doi.org/10.3390/pr13020427 - 5 Feb 2025
Cited by 1 | Viewed by 3111
Abstract
Consumers’ preferences for healthier food products are increasing worldwide. Flatbread, a highly versatile product traditionally formulated with wheat flour (WF), offers significant potential for innovation and value addition through biofortification. Biofortification of flatbread was assessed with orange-flesh sweet potato (Ipomoea batatas L.) [...] Read more.
Consumers’ preferences for healthier food products are increasing worldwide. Flatbread, a highly versatile product traditionally formulated with wheat flour (WF), offers significant potential for innovation and value addition through biofortification. Biofortification of flatbread was assessed with orange-flesh sweet potato (Ipomoea batatas L.) flour (OFSP) infused with spinach (Amaranthus dubius). The purpose of this experiment was to ascertain the impact of adding local OFSP flour and spinach on the physicochemical, sensory, and microbial aspects of sweet potato-spinach infused WF flatbread. Six different flatbread formulations were created using OFSP flour, WF, and spinach. The study utilized a randomised 3 × 2 factorial design, with each treatment reproduced four times, totalling 24 treatments. Sensory evaluation for OFSP flour-spinach flatbreads received appreciable scores. OFSP flour flatbreads exhibited acceptable levels of protein, ash, fat, and moisture. The study provided formulations for value-added flatbread with the efficient inclusion of local agricultural resources OFSP and spinach to produce healthier food product offerings that were microbiologically safe. Full article
(This article belongs to the Special Issue Circular Economy and Efficient Use of Resources (Volume II))
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18 pages, 2329 KB  
Article
Gluten-Free Sweet Potato Flour: Effect of Drying Method and Variety on the Quality and Bioactivity
by Nelson Pereira, Ana Cristina Ramos, Marco Alves, Vítor D. Alves, Cristina Roseiro, Manuela Vida, Margarida Moldão and Marta Abreu
Molecules 2024, 29(23), 5771; https://doi.org/10.3390/molecules29235771 - 6 Dec 2024
Cited by 6 | Viewed by 4250
Abstract
Sweet potato (Ipomoea batatas (L.) Lam.) is a nutrient-dense crop rich in fibre, minerals, and antioxidant compounds, including carotenoids and phenolic compounds, such as anthocyanins. Dehydrating sweet potato (SP) for flour production enhances its value and produces shelf-stable, health-promoting food products. This [...] Read more.
Sweet potato (Ipomoea batatas (L.) Lam.) is a nutrient-dense crop rich in fibre, minerals, and antioxidant compounds, including carotenoids and phenolic compounds, such as anthocyanins. Dehydrating sweet potato (SP) for flour production enhances its value and produces shelf-stable, health-promoting food products. This study investigated the effects of hot-air drying (HAD: 75 °C/20 h) and freeze-drying (FD: −41–30 °C/70 h) on the bioactive composition of flours from three SP varieties: Bonita (white-fleshed), Bellevue (orange-fleshed), and NP1648 (purple-fleshed). Key assessments included the total phenolic content (TPC), the total carotenoid content (TCC), and the total anthocyanin content (TAC) and the antioxidant activity (DPPH and FRAP). The results revealed distinct raw materials’ bioactive profiles: Bellevue was rich in TCC (49.3 mg of β-carotene/100 g db), NP1648 showed elevated TAC (27.3 mg of cyanidin-3-glucoside/100 g db), and Bonita exhibited minimal content of bioactive compounds. Both drying methods yielded significant losses of bioactive compounds, with the TPC decreasing by over 60%, while TAC and TCC losses did not exceed 32%, revealing higher stability. Multivariate analysis indicated that the variety significantly influenced the bioactive profiles more than the drying method. The interaction between carotenoids and anthocyanins and the SP fibrous composition likely contributed to their stability during drying, indicating that FD showed no advantages over HAD. The appealing colours and high antioxidant content of Bellevue and NP1648 flours suggest their potential as ingredients for enhancing foods’ bioactivity and sensory acceptance. Full article
(This article belongs to the Special Issue Active Ingredients in Functional Foods and Their Impact on Health)
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12 pages, 2513 KB  
Article
Comparative Metabolomic Analysis of the Nutrient Composition of Different Varieties of Sweet Potato
by Xiaolin Wan, Xiuzhi Wang and Qiang Xiao
Molecules 2024, 29(22), 5395; https://doi.org/10.3390/molecules29225395 - 15 Nov 2024
Cited by 9 | Viewed by 4063
Abstract
Sweet potatoes are rich in amino acids, organic acids, and lipids, offering exceptional nutritional value. To accurately select varieties with higher nutritional value, we employed liquid chromatography–tandem mass spectrometry (LC-MS/MS) to analyze the metabolic profiles of three types of sweet potatoes (white sweet [...] Read more.
Sweet potatoes are rich in amino acids, organic acids, and lipids, offering exceptional nutritional value. To accurately select varieties with higher nutritional value, we employed liquid chromatography–tandem mass spectrometry (LC-MS/MS) to analyze the metabolic profiles of three types of sweet potatoes (white sweet potato flesh, BS; orange sweet potato flesh, CS; and purple sweet potato flesh, ZS). When comparing CS vs. BS, ZS vs. BS, and ZS vs. CS, we found differences in 527 types of amino acids and their derivatives, 556 kinds of organic acids, and 39 types of lipids. After excluding the derivatives, we found 6 amino acids essential for humans across the three sweet potatoes, with 1 amino acid, 11 organic acids, and 2 lipids being detected for the first time. CS had a higher content of essential amino acids, while ZS had a lower content. Succinic acid served as a characteristic metabolite for ZS, helping to distinguish it from the other two varieties. These findings provide a theoretical basis for assessing the nutritional value of sweet potatoes and setting breeding targets while facilitating the selection of optimal varieties for food processing, medicine, and plant breeding. Full article
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18 pages, 6817 KB  
Article
Comparative Analysis of Nutrients, Phytochemicals, and Minerals in Colored Sweet Potato (Ipomoea batatas L.) Roots
by Shan Zhao, Lingli Zhong, Xi Li, Lin Qin, Ya Zhou, Xinyu Lei, Xingguo Zheng, Keting Jin, Zhigang Pu, Xue Hou, Jun Song, Tao Lang, Cong Zhang and Junyan Feng
Foods 2024, 13(22), 3636; https://doi.org/10.3390/foods13223636 - 14 Nov 2024
Cited by 20 | Viewed by 9508
Abstract
Sweet potato (Ipomoea batatas (L.) is regarded among the most crucial crops globally because it is abundant in essential nutrients vital for human health. However, limited comprehensive information is available regarding the nutritional composition of sweet potato, which hinders its optimal utilization. [...] Read more.
Sweet potato (Ipomoea batatas (L.) is regarded among the most crucial crops globally because it is abundant in essential nutrients vital for human health. However, limited comprehensive information is available regarding the nutritional composition of sweet potato, which hinders its optimal utilization. This study investigated the nutritional and chemical composition of sweet potato roots and explored their interrelationships. In total, 86 sweet potato accessions, comprising white, yellow, orange, and purple flesh-colored varieties, were used. A total of 34 components, including nutrients, phytochemicals, and minerals, were identified. Multivariate analysis was performed to assess the relationships among these components. The sweet potato roots were rich in carbohydrates, polyphenols, and minerals. Carbohydrates were primarily composed of total starch (22.6–69.7 g/100 g DW), total soluble sugar (TSS) (10.3–40.0 g/100 g DW), and total dietary fiber (TDF) (7.99–26.0 g/100 g DW). Polyphenols included total caffeoylquinic acids (CQAs) (0.478–14.2 g/kg DW), total anthocyanins (0–2003 mg/kg DW), and β-carotene (0–133 mg/kg DW). The mineral content followed the order: potassium > calcium > phosphorus > sodium > magnesium > iron > manganese > zinc > copper > selenium. White-fleshed sweet potato exhibited high total starch levels (50.4 g/100 g DW) but low TSS levels (21.1 g/100 g DW). Orange-fleshed sweet potato contained high levels of TSS (26.5 g/100 g DW), TDF (17.9 g/100 g DW), and β-carotene (61.4 mg/100 g DW) but low levels of protein (2.99 g/100 g DW) and total starch (43.0 g/100 g DW). Purple-fleshed sweet potato had high levels of phytochemicals, particularly total CQAs (8.17 g/kg DW) and anthocyanins (904 mg/kg DW). Cluster analysis categorized sweet potato accessions into six clusters with unique characteristics. Furthermore, principal component analysis identified accessions with exceptionally high nutritional content. The correlation analysis indicated that starch was negatively correlated with soluble sugar and TDF, whereas CQAs and anthocyanins were highly positively correlated. These findings offer a solid theoretical foundation for sweet potato breeding and utilization. Full article
(This article belongs to the Section Food Nutrition)
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18 pages, 2518 KB  
Article
Cultivation Technology and Plant Density Affecting the Yield and Carotenoid Content of Beauregard Sweet Potato
by Viktor Balázs, Lajos Helyes, Hussein G. Daood, Zoltán Pék, Riadh Ilahy, András Neményi, Márton Égei and Sándor Takács
Agronomy 2024, 14(11), 2485; https://doi.org/10.3390/agronomy14112485 - 24 Oct 2024
Cited by 2 | Viewed by 2973
Abstract
Given the global importance of sweet potatoes as a nutrient-rich staple food, this research aimed to find the optimal cultivation practices to improve both yield and carotenoid content, with a particular focus on enhancing β-carotene content. In this study, the effects of different [...] Read more.
Given the global importance of sweet potatoes as a nutrient-rich staple food, this research aimed to find the optimal cultivation practices to improve both yield and carotenoid content, with a particular focus on enhancing β-carotene content. In this study, the effects of different cultivation methods and plant densities on the agronomic parameters, physiological characteristics and carotenoid content of the ‘Beauregard’ variety were investigated across two consecutive growing seasons. Besides storage root yield, the key physiological parameters, including SPAD and chlorophyll fluorescence (Fv/Fm), were monitored to assess plant health and photosynthetic performance. Carotenoid content, including trans-β-carotene, cis-β-carotene, and ζ-carotene, was quantified using high-performance liquid chromatography (HPLC). Results indicated that the ridge cultivation method, particularly when combined with twin-row planting, consistently produced the highest yields, reaching the maximum of 40.87 t ha−1 in 2020. The flat cultivation method, especially in simple rows, showed the lowest yield. The analysis revealed that plant density had a more pronounced effect on yield and carotenoid content than the ridge or flat cultivation method alone. The maximum β-carotene content was achieved in the simple row (17,500 plants/ha) treatment planted on ridges with 247 µg/g. Significant correlations between both SPAD readings and Fv/Fm and yield were revealed, but no correlations with storage root carotenoid content were found. This suggests that, while these leaf physiological traits can be used to estimate the yield, they are not directly associated with the carotene content of the storage root. The study highlights the ridge cultivation and 35,000 plants/ha method as a stable and high-yielding option for ‘Beauregard’ in terms of improving and balancing the yield and carotenoid content; however, reducing the plant density resulted in elevated carotenoid content with significant yield reductions. The findings contribute to the understanding of how agronomic practices influence the nutritional and physiological traits of sweet potatoes, with implications for improving food security and nutritional outcomes in sweet potato cultivation. Full article
(This article belongs to the Section Agroecology Innovation: Achieving System Resilience)
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20 pages, 7075 KB  
Article
Inheritance of the Flesh Color and Shape of the Tuberous Root of Sweet Potato (Ipomoea batatas [L.] Lam.)
by Alfredo Morales, Iván Javier Pastrana Vargas, Dania Rodríguez del-Sol, Orelvis Portal, Yoel Beovides García, Yuniel Rodríguez García, Alay Jiménez Medina, Yusbiel León Valdivies and Vaniert Ventura Chávez
Horticulturae 2024, 10(10), 1032; https://doi.org/10.3390/horticulturae10101032 - 28 Sep 2024
Cited by 6 | Viewed by 3272
Abstract
The continued success of any conventional sweet potato breeding program is limited by knowledge of the inheritance of the traits under study, such as flesh color and tuberous root shape, because of the difficulty of segregating color frequencies by visual separation. The objective [...] Read more.
The continued success of any conventional sweet potato breeding program is limited by knowledge of the inheritance of the traits under study, such as flesh color and tuberous root shape, because of the difficulty of segregating color frequencies by visual separation. The objective of this study was to understand the mode of inheritance of these genetic traits. The cross blocks were established at the Research Institute of Tropical Roots and Tuber Crops (INIVIT-Cuba). Eight parental genotypes of known compatibility were selected, with contrasting phenotypic characteristics to develop segregating populations. To express color objectively, the CIE L*a*b* color space was used (L*: lightness; a* and b*: chromatic coordinates), and four morphometric variables related to the shape and dimensions of the tuberous root were evaluated. From 2419 reciprocal crosses, 2045 botanical seeds and 1764 seedlings were obtained. Incomplete dominance of the white and purple flesh colors over the orange color was observed, as well as transgressive segregation for purple, orange, and white flesh colors and for the shape of the tuberous root. The results allowed us to propose a genetic model of biparental crosses for the improvement of the flesh color of sweet potato (Ipomoea batatas [L.] Lam.), as well as a predictive formula of the progeny to be selected. Full article
(This article belongs to the Section Genetics, Genomics, Breeding, and Biotechnology (G2B2))
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15 pages, 1920 KB  
Article
Bioactive Compound Diversity in a Wide Panel of Sweet Potato (Ipomoea batatas L.) Cultivars: A Resource for Nutritional Food Development
by Marion Nabot, Cyrielle Garcia, Marc Seguin, Julien Ricci, Catherine Brabet and Fabienne Remize
Metabolites 2024, 14(10), 523; https://doi.org/10.3390/metabo14100523 - 26 Sep 2024
Cited by 6 | Viewed by 3110
Abstract
Objectives: This study provides an overview of the composition of the raw root flesh of a panel of 22 sweet potato (Ipomoea batatas L.) cultivars, with a focus on bioactive compounds. The large diversity of the proximate and phytochemical compositions observed between [...] Read more.
Objectives: This study provides an overview of the composition of the raw root flesh of a panel of 22 sweet potato (Ipomoea batatas L.) cultivars, with a focus on bioactive compounds. The large diversity of the proximate and phytochemical compositions observed between cultivars and within and between different flesh colors pointed out the importance of composition analysis and not only color choice for the design of foods with nutritional benefits. Methods: The nutritional composition (starch, protein, total dietary fibers) and bioactive compound composition of 22 cultivars from Reunion Island, maintained in the Vatel Biological Resource Center, were investigated. Results: Orange and purple cultivars stood out from white and yellow cultivars for their higher nutritional composition. Purple sweet potatoes were notable for their high contents of anthocyanins (55.7 to 143.4 mg/g dry weight (DW)) and phenolic compounds, in particular chlorogenic acid and ferulic acid, contributing to antioxidant activities, as well as their fiber content (14.1 ± 2.1% DW). Orange cultivars were rich in β-carotene (47.2 ± 0.7 mg/100 g DW) and to a lesser extent α-carotene (4.8 ± 1.2 mg/100 g DW). In contrast, certain white cultivars demonstrated suboptimal nutritional properties, rendering them less relevant even for applications where the lack of coloration in food is desired. Conclusions: Those characteristics enable the selection of sweet potato varieties to design food products ensuring optimal nutritional benefits and culinary versatility. Full article
(This article belongs to the Special Issue Plants and Plant-Based Foods for Metabolic Disease Prevention)
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35 pages, 1039 KB  
Article
Exploring the Role of Farmer-Led Jumpstarting Project on Adoption of Orange-Fleshed Sweet Potato in Nigeria: Implications on Productivity and Poverty
by Adetomiwa Kolapo, Akeem Abiade Tijani and Seyi Olalekan Olawuyi
Sustainability 2024, 16(16), 6845; https://doi.org/10.3390/su16166845 - 9 Aug 2024
Cited by 3 | Viewed by 2610
Abstract
To promote the adoption of the orange-fleshed sweet potato (OFSP) among the farmers, OFSP was introduced to the farmers through a program tagged “Jumpstarting Project” (JP), a West African project initiative of Harvestplus and its partners, which was implemented in Osun and Kwara [...] Read more.
To promote the adoption of the orange-fleshed sweet potato (OFSP) among the farmers, OFSP was introduced to the farmers through a program tagged “Jumpstarting Project” (JP), a West African project initiative of Harvestplus and its partners, which was implemented in Osun and Kwara States, in Nigeria. Using household-level data in Nigeria, this paper examined how the intervention of a farmer-led multiplication–dissemination Jumpstarting Project has sustained the adoption of OFSP after years of its implementation and the consequent impact of adoption on productivity and welfare of the farmers. Our main empirical findings are as follows. First, the implementation of the Jumpstarting Project in project communities of Osun and Kwara States shows that the adoption of OFSP has increased and has been sustained over the years. Furthermore, the result of the propensity score matching confirms possible spillover between project communities and control groups. Second, estimation from the endogenous treatment effect indicates that the estimated average treatment effects on the treated indicates a yield gain for the adopters of OFSP. Third, the result of the average treatment effects on the treated from the endogenous switching probit model shows that the probability of being poor in the households that adopted OFSP would be 5.3% more if these households did not adopt OFSP. Our results suggest that immediate replication and scaling up of the Jumpstarting Project in other states in Nigeria should be implemented. This study demonstrates that to ensure the diffusion and adoption of improved technologies such as OFSP, intervention projects that promote the adoption of these technologies have a greater role to play. Full article
(This article belongs to the Section Sustainable Agriculture)
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12 pages, 4307 KB  
Article
Changes in Carotenoids and Polyphenols during the Growth Stages of Orange-Fleshed Sweet Potato (Ipomoea batatas (L.) Lam.)
by Yuno Setoguchi, Yosuke Narasako, Tomonari Hirano, Motoyasu Otani and Hisato Kunitake
Horticulturae 2024, 10(6), 629; https://doi.org/10.3390/horticulturae10060629 - 12 Jun 2024
Cited by 5 | Viewed by 3057
Abstract
The storage roots of orange-fleshed sweet potato contain high levels of polyphenols and carotenoids. Little information is available on changes in the content and composition of these secondary metabolites during the growth stages of the root system. We investigated changes in carotenoids, polyphenols, [...] Read more.
The storage roots of orange-fleshed sweet potato contain high levels of polyphenols and carotenoids. Little information is available on changes in the content and composition of these secondary metabolites during the growth stages of the root system. We investigated changes in carotenoids, polyphenols, and anthocyanins in the root system of the orange-fleshed sweet potato ‘Tamaakane’ from the post-planting stage. Carotenoids and polyphenols accumulated immediately after root-system formation at 15 days after transplanting (DAT). The levels of carotenoids increased by 45 DAT and decreased once the storage root enlargement began, but increased rapidly thereafter. After 90 DAT, β-carotene accounted for >90% of the total carotenoids, and the frequency remained stable until maturity. Total polyphenol content increased significantly towards 45 DAT and then gradually decreased as the storage roots began to thicken. No anthocyanin was detected in the root systems of ‘Tamaakane’ at any stage. The content and composition of these secondary metabolites are discussed in terms of agronomic aspects, as they might contribute to a strategy to protect storage roots while engaging with each other against biotic or abiotic stresses at the growth stage of the root system. Full article
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12 pages, 2427 KB  
Article
Hydrophobic Components in Light-Yellow Pulp Sweet Potato (Ipomoea batatas (L.) Lam.) Tubers Suppress LPS-Induced Inflammatory Responses in RAW264.7 Cells via Activation of the Nrf2 Pathway
by Yuma Matsumoto, Mari Suto, Io Umebara, Hirofumi Masutomi and Katsuyuki Ishihara
Nutrients 2024, 16(4), 563; https://doi.org/10.3390/nu16040563 - 18 Feb 2024
Cited by 4 | Viewed by 2917
Abstract
Sweet potato is a crop that is widely consumed all over the world and is thought to contribute to health maintenance due to its abundant nutrients and phytochemicals. Previous studies on the functionality of sweet potatoes have focused on varieties that have colored [...] Read more.
Sweet potato is a crop that is widely consumed all over the world and is thought to contribute to health maintenance due to its abundant nutrients and phytochemicals. Previous studies on the functionality of sweet potatoes have focused on varieties that have colored pulp, such as purple and orange, which contain high levels of specific phytochemicals. Therefore, in the present study, we evaluated the anti-inflammatory effects of light-yellow-fleshed sweet potatoes, which have received little attention. After freeze-drying sweet potatoes harvested in 2020, extracts were prepared from the leaves, stems, roots, and tubers in 100% ethanol. Mouse macrophage-like cell line RAW264.7 cells were cultured with 10 µg/mL of the extracts and induced lipopolysaccharide (LPS)-stimulated inflammation. Of the extracts, the tuber extracts showed the highest suppression of LPS-induced interleukin-6 (IL-6) gene expression and production in RAW264.7, which was attributed to the activation of the nuclear factor erythroid 2-related factor 2 (Nrf2) oxidative stress response pathway. In addition, preparative high-performance liquid chromatography (HPLC) experiments suggested that hydrophobic components specific to the tuber were the main body of activity. In previous studies, it has been shown that the tubers and leaves of sweet potatoes with colored pulp exhibit anti-inflammatory effects due to their rich phytochemicals, and our results show that the tubers with light-yellow pulp also exhibit the effects. Furthermore, we were able to show a part of the mechanism, which may contribute to the fundamental understanding of the treatment and prevention of inflammation by food-derived components. Full article
(This article belongs to the Special Issue Dietary Components and Immune Function)
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