数字农科院2.0

Effects of pearling on proximate composition, dough rheology, bread-making quality and health-promoting components of elite wheat cultivars

文献类型: 外文期刊

作者: Wenfei Tian;Lei Zhi;Tiantian Chen;Xue Gong;Yan Zhang;Zhonghu He

作者机构:

关键词: Arabinoxylans;Functional wheat;Pearling;Phytochemicals;Processing quality

期刊名称: LWT

ISSN: 0023-6438

年卷期: 2024 年 198 卷

页码:

收录情况: SCIE(2024版) ; ; EI(2024版)

摘要: Though the health benefits of whole wheat products have been widely recognized, their less desirable processing qualities limited consumers’ acceptance. Thus, it is imperative to develop processing techniques for balanced nutritional and processing qualities. In this study, we investigated impacts of two grain pearling (debranning) levels on proximate composition, dough rheological properties, food-making quality, arabinoxylans (AXs), alkylresorcinols (ARs) and phenolic acids composition of two elite bread wheat cultivars. Pearled flour (PF) of Zhongmai 175 retained very good dough extensibility (190.7–195.5 mm), while PF of Zhongmai 578 retained medium-to-strong gluten strength and acceptable bread-making quality. Compared to whole wheat flour, PF preserved major portion of the health-promoting components in wheat grains, i.e., 71.4–94.0 % for water-extractable AXs, 68.1–86.3 % for total AXs, 71.4–92.7 % for alkylresorcinols, 85.5–98.9 % for soluble ferulic acid and 67.3–83.3 % for insoluble-bound ferulic acid. Further investigation is needed to understand the effects of different kernel sizes and debranning rates on nutritional profiles of pearled grains. Taken together, our results suggested that grain pearling can be used to produce wheat products with balanced nutritional and processing quality for improved human health.

分类号:

  • 相关文献

[1]Antitumor and immunomodulatory activity of arabinoxylans: A major constituent of wheat bran. Zhou, Sumei,Cao, Li,Liu, Xiuzhen,Qian, Tianxiu,Sun, Guibo,Guo, Yan,Chang, Fengjin,Sun, Xiaobo,Cao, Li,Liu, Xiuzhen,Qian, Tianxiu,Sun, Guibo,Guo, Yan,Chang, Fengjin,Sun, Xiaobo.

[2]Accumulation of Wheat Phenolic Acids under Different Nitrogen Rates and Growing Environments. Tian, Wenfei,Wang, Fengju,Xu, Kaijie,Zhang, Zhaoxing,Yan, Junliang,Yan, Jun,Tian, Yubing,Liu, Jindong,Zhang, Yan,Zhang, Yong,He, Zhonghu. 2022

[3]Relationship between kernel size and shape and lipase activity of naked oat before and after pearling treatment. Wei, Yimin,Hu, XinZhong,Wei, Yimin,Zhao, Jing,Ren, Changzhong,Ren, Changzhong.

[4]Effect of pearling on composition, microstructure, water migration and cooking quality of highland barley (Hordeum vulgare var. Coeleste Linnaeus). Meng jia Li,Lei Shan,Li Tao Tong,Bei Fan,Li ya Liu,Ruo qi Sun,Ya Tao Huang,Feng zhong Wang,Li li Wang. 2022

[5]Long-term fertilization effects on processing quality of wheat grain in the North China Plain. Lin, Zhian,Zhao, Bingqiang,Chang, Xuhong,Wang, Demei,Zhao, Guangcai.

[6]Functional markers in wheat: current status and future prospects. Liu, Yanan,He, Zhonghu,Xia, Xianchun,He, Zhonghu,Appels, Rudi.

[7]Molecular detection of high- and low-molecular-weight glutenin subunit genes in common wheat cultivars from 20 countries using allele-specific markers. H. Jin,J. Yan,R. J. Peña,X. C. Xia,A. Morgounov,L. M. Han,Y. Zhang,Z. H. He. 2011

[8]Variation in quality traits in common wheat as related to Chinese fresh white noodle quality. Zhang, Y,Nagamine, T,He, ZH,Ge, XX,Yoshida, H,Pena, RJ. 2005

[9]TaIAA10-6D orchestrates processing quality and grain yield by modulating glutenin/gliadin ratio and plant morphogenesis in wheat. Liu, Siyang,Xie, Lina,Wu, Haibin,Xu, Dengan,Che, Rui,Tian, Wenfei,Liu, Bingyan,Chao, Yuheng,Zhang, Yan,Xia, Xianchun,He, Zhonghu,Cao, Shuanghe. 2025

[10]The Impact of OsERF34 on Rice Grain-Processing Traits and Appearance Quality. Du, Zhimin,Jia, Yinan,Hu, Peisong,Xu, Hai,Jiao, Guiai,Tang, Shaoqing. 2025

[11]Uncovering the Genetic Basis of Grain Protein Content and Wet Gluten Content in Common Wheat (Triticum aestivum L.). Song, Quanhao,Cui, Wenwen,Gao, Zhanning,Song, Jiajing,Wang, Shuaishuai,Ma, Hongzhen,Chen, Liang,Xu, Kaijie,Jin, Yan. 2026

[12]Effects of camptothecin and hydroxycamptothecin on insect cell lines Sf21 and IOZCAS-Spex-II. Zhang, Lan,Zhang, Yanning,He, Weizhi,Ma, Dejun,Jiang, Hongyun. 2012

[13]Nutritional composition and biological activities of 17 Chinese adzuki bean (Vigna angularis) varieties. Shi, Zhenxing,Yao, Yang,Zhu, Yingying,Ren, Guixing,Zhu, Yingying.

[14]Effects of light quality on the accumulation of phytochemicals in vegetables produced in controlled environments: a review. Bian, Zhong Hua,Yang, Qi Chang,Liu, Wen Ke,Bian, Zhong Hua,Yang, Qi Chang,Liu, Wen Ke.

[15]Effect of Production Systems on Phenolic Compositions of Strawberry Fruits. Khanizadeh, S.,Fan, Li,Charles, M. T.,Khanizadeh, S.,Fan, Li,Fang, Chengquan,Tao Shutian.

[16]Effects of processing on phytochemical profiles and biological activities for production of sorghum tea. Wu, Li,Huang, Zhaohui,Qin, Peiyou,Ren, Guixing,Huang, Zhaohui.

[17]Effect of parboiling on phytochemical content, antioxidant activity and physicochemical properties of germinated red rice. Hu, Zhanqiang,Zhu, Zhiwei,Shao, Yafang,Tang, Xiaozhi,Liu, Junfei.

[18]Influence of phytochemicals on the biocompatibility of inorganic nanoparticles: a state-of-the-art review. Cao, Yi,Xie, Yixi,Li, Yining,Zhang, Cao,Fang, Xin,Zhou, Yiwei,Cao, Yi,Xie, Yixi,Liu, Liangliang,Xiao, Aiping,Fang, Xin,Zhou, Yiwei.

[19]Chemical Structures Of Polyphenols That C.ritically Influence The Toxicity O f Zno Nanoparticles. Zhang, C, Li, YN, Liu, LL, Gong, Y, Xie, YX, Cao, Y. 2018

[20]Phytochemicals For The Prevention And Treatment Of Gastric Cancer: Effects And Mechanisms. Mao, QQ, Xu, XY, Shang, A, Gan, RY, Wu, DT, Atanasov, AG, Li, HB. 2020

作者其他论文 更多>>