食品科学
化学
代谢组
氨基酸
龙葵
番茄红素
多不饱和脂肪酸
类胡萝卜素
生物化学
园艺
生物
代谢物
脂肪酸
作者
Min Sun,Zeyu Cai,Chunyang Li,Yi Hao,Xinxin Xu,Kun Qian,Hao Li,Yaozu Guo,Anqi Liang,Lanfang Han,Heping Shang,Weili Jia,Yini Cao,Cuiping Wang,Chuanxin Ma,Jason C. White,Baoshan Xing
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-10-02
卷期号:17 (20): 19938-19951
被引量:6
标识
DOI:10.1021/acsnano.3c04990
摘要
With the widespread use of nanoenabled agrochemicals, it is essential to evaluate the food safety of nanomaterials (NMs)-treated vegetable crops in full life cycle studies as well as their potential impacts on human health. Tomato seedlings were foliarly sprayed with 50 mg/L ZnO NMs, including ZnO quantum dots (QDs) and ZnO nanoparticles once per week over 11 weeks. The foliar sprayed ZnO QDs increased fruit dry weight and yield per plant by 39.1% and 24.9, respectively. It also significantly increased the lycopene, amino acids, Zn, B, and Fe in tomato fruits by 40.5%, 15.1%, 44.5%, 76.2%, and 12.8%, respectively. The tomato fruit metabolome of tomatoes showed that ZnO NMs upregulated the biosynthesis of unsaturated fatty acids and sphingolipid metabolism and elevated the levels of linoleic and arachidonic acids. The ZnO NMs-treated tomato fruits were then digested in a human gastrointestinal tract model. The results of essential mineral release suggested that the ZnO QDs treatment increased the bioaccessibility of K, Zn, and Cu by 14.8-35.1% relative to the control. Additionally, both types of ZnO NMs had no negative impact on the α-amylase, pepsin, and trypsin activities. The digested fruit metabolome in the intestinal fluid demonstrated that ZnO NMs did not interfere with the normal process of human digestion. Importantly, ZnO NMs treatments increased the glycerophospholipids, carbohydrates, amino acids, and peptides in the intestinal fluids of tomato fruits. This study suggests that nanoscale Zn can be potentially used to increase the nutritional value of vegetable crops and can be an important tool to sustainably increase food quality and security.
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