数字农科院2.0

Effects of Different Highland Barley Varieties on Quality and Digestibility of Noodles

文献类型: 外文期刊

作者: Guiyun Wu;Lili Wang;Xueqing Wang;Bin Dang;Wengang Zhang;Jingjing Yang;Lang Jia;Jinbian Wei;Zhihui Han;Xiaopei Chen;Jingfeng Li;Xijuan Yang;Fengzhong Wang

作者机构:

关键词: digestive characteristics;highland barley varieties;noodle quality

期刊名称: Foods

ISSN: 2304-8158

年卷期: 2025 年 14 卷 13 期

页码:

收录情况: SCIE(2025版)

摘要: This study comprehensively assessed the effects of ten highland barley varieties on the quality and digestibility of noodles. The characteristics of highland barley flour, including proximate composition, pasting properties, and dough mixing behavior, were analyzed. The quality of the resulting noodles was evaluated through cooking and textural property analysis. The digestion characteristics of the noodles were determined to evaluate the starch hydrolysis rate and glycemic index (GI). Additionally, a correlation analysis was conducted among the proximate composition of highland barley flour, the characteristics of flour, and the quality of noodles. The results demonstrate that Chaiqing 1 exhibited superior performance in terms of flour quality and noodle texture compared to other varieties. The noodles produced from this variety possessed an outstanding texture, with moderate hardness and excellent elasticity. Additionally, its noodles also exhibited superior cooking resistance and low cooking loss. Nutritionally, the moderate estimated glycemic index (eGI) and high resistant starch (RS) content of Chaiqing 1 were beneficial for intestinal health. Ximalaya 22 showed good processing performance but slightly inferior texture, whereas Kunlun 14 had a high dietary fiber content, which resulted in noodles prone to breaking. Through a comprehensive variety comparison and screening, Chaiqing 1 emerged as the preferred choice for producing high-quality highland barley noodles. Furthermore, correlation analysis revealed that dietary fiber was significantly and positively correlated with water absorption, stability time (ST), and hardness (p < 0.01). Amylose content was associated with peak temperature and breakdown viscosity. This study provides valuable insights into the selection of highland barley varieties for noodle production.

分类号:

  • 相关文献

[1]Performance of industrial dough mixers and its effects on noodle quality. Liu Rui,Wei Yimin,Lu Yangyang,Zhang Yingquan,Liu Rui,Xing Yanan. 2016

[2]Quantitative assessment of protein fractions of Chinese wheat flours and their contribution to white salted noodle quality. Xin-Zhong, Hu,Yi-Min, Wei,Chun, Wang,Kovacs, M. I. P..

[3]Effects of LMW-GS Allelic Variations at the Glu-A3 Locus on Fresh Wet Noodle and Frozen Cooked Noodle Quality. Xiaohong Chen,Hongwei Zhou,Yufei Zou,Jinfu Ban,Huizhi Zhang,Xiaoke Zhang,Boli Guo,Yingquan Zhang. 2025

[4]Impact of Wheat Glu-B3 LMW-GS Allelic Variation on Dough and Noodle Quality: A Near-Isogenic Line Study Across Two-Background and Multi-Season. Hongwei Zhou,Xiaohong Chen,Jinfu Ban,Huizhi Zhang,Yufei Zou,Xiaoke Zhang,Boli Guo,Yingquan Zhang. 2025

作者其他论文 更多>>