Comparative Analysis of Nutrients, Phytochemicals, and Minerals in Colored Sweet Potato (Ipomoea batatas L.) Roots.

IF 4.7 2区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Foods Pub Date : 2024-11-14 DOI:10.3390/foods13223636
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, Junyan Feng
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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. 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.

彩色甘薯(Ipomoea batatas L.)根中营养成分、植物化学物质和矿物质的比较分析。
甘薯(Ipomoea batatas (L.))被认为是全球最重要的农作物之一,因为它富含对人体健康至关重要的营养成分。然而,有关甘薯营养成分的全面信息却很有限,这阻碍了甘薯的最佳利用。本研究调查了甘薯根的营养和化学成分,并探讨了它们之间的相互关系。研究共使用了 86 个甘薯品种,包括白色、黄色、橙色和紫色肉色品种。共鉴定出 34 种成分,包括营养成分、植物化学物质和矿物质。对这些成分之间的关系进行了多元分析。甘薯根含有丰富的碳水化合物、多酚和矿物质。碳水化合物主要包括总淀粉(22.6-69.7 克/100 克干重)、总可溶性糖(TSS)(10.3-40.0 克/100 克干重)和总膳食纤维(TDF)(7.99-26.0 克/100 克干重)。多酚包括总咖啡酰奎宁酸(CQAs)(0.478-14.2 克/千克干重)、总花青素(0-2003 毫克/千克干重)和 β-胡萝卜素(0-133 毫克/千克干重)。矿物质含量依次为:钾 > 钙 > 磷 > 钠 > 镁 > 铁 > 锰 > 锌 > 铜 > 硒。白瓤甘薯的总淀粉含量较高(50.4 克/100 克干重),但总悬浮固体含量较低(21.1 克/100 克干重)。橙肉甘薯含有较高水平的 TSS(26.5 克/100 克 DW)、TDF(17.9 克/100 克 DW)和 β-胡萝卜素(61.4 毫克/100 克 DW),但蛋白质(2.99 克/100 克 DW)和总淀粉(43.0 克/100 克 DW)水平较低。紫肉甘薯的植物化学物质含量较高,尤其是总 CQAs(8.17 克/千克干重)和花青素(904 毫克/千克干重)。聚类分析将甘薯品种分为六个具有独特特征的聚类。此外,主成分分析还发现了营养成分特别高的品种。相关分析表明,淀粉与可溶性糖和 TDF 呈负相关,而 CQAs 和花青素则呈高度正相关。这些发现为甘薯育种和利用提供了坚实的理论基础。
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来源期刊
Foods
Foods Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
15.40%
发文量
3516
审稿时长
15.83 days
期刊介绍: Foods (ISSN 2304-8158) is an international, peer-reviewed scientific open access journal which provides an advanced forum for studies related to all aspects of food research. It publishes reviews, regular research papers and short communications. Our aim is to encourage scientists, researchers, and other food professionals to publish their experimental and theoretical results in as much detail as possible or share their knowledge with as much readers unlimitedly as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. There are, in addition, unique features of this journal: Ÿ manuscripts regarding research proposals and research ideas will be particularly welcomed Ÿ electronic files or software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material Ÿ we also accept manuscripts communicating to a broader audience with regard to research projects financed with public funds
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