数字农科院2.0

HMW-GSs 1Dx3+1Dy12 contribute to a suitable wheat gluten strength that confers superior Chinese steamed bread quality

文献类型: 外文期刊

作者: Zhou, Hongwei;Wang, Xiaolong;Yang, Yanning;Ban, Jinfu;Guo, Sihai;Song, Tianqi;Zhang, Shuangxing;Yu, Yang;Guo, Boli;Zhang, Yingquan;Zhang, Xiaoke

作者机构:

关键词: 3+12;Chinese steamed bread quality;gluten strength;HMW-GSs;wheat

期刊名称: JOURNAL OF FOOD SCIENCE

ISSN: 0022-1147

年卷期: 2024 年

页码:

收录情况: SCIE(2024版)

摘要: The aim of this study was to clarify the effects of the high-molecular-weight glutenin subunits (HMW-GSs) 1Dx3+1Dy12 (3+12) and 1Dx4+1Dy12 (4+12) at the Glu-D1 locus on gluten and Chinese steamed bread (CSB) quality. The grain protein content and composition, gluten content and gluten index, farinograph properties, and CSB quality were investigated using four wheat near-isogenic lines (NILs) carrying HMW-GSs 1Dx2+1Dy12 (2+12), 3+12, 4+12 and 1Dx5+1Dy10 (5+10), respectively. The unextractable polymeric protein (UPP) and glutenin macropolymer (GMP) content, gluten index, dough development time, stability time, and farinograph quality number of four NILs all ranked as 5+10 > 3+12 > 2+12/4+12, such as the gluten index ranked as 5+10(44.88%) > 3+12(40.07%) > 2+12(37.46%)/4+12(35.85%); however, their contributions to the quality of CSB were ranked as 3+12 > 5+10 > 2+12/4+12, such as the specific volume ranked as 3+12(2.64 mL/g) > 5+10(2.49 mL/g) > 2+12(2.36 mL/g)/4+12(2.35 mL/g), which indicated that a suitable gluten strength (3+12) was crucial to making high-quality CSB. In addition, subunits 4+12 had a similar quality performance to low-quality subunits 2+12. All these findings suggested that, except for the acknowledged high-quality subunits 5+10, the introduction of 3+12 at the Glu-D1 locus is an efficient way for quality improvement of gluten as well as CSB.

分类号:

  • 相关文献

[1]充分发掘保护利用生物多样性;促进农业可持续发展——《生物多样性与小麦改良》简评. 李祥洲. 1997

[2]Dynamic behaviors of protein and water associated with fresh noodle quality during processing based on different HMW-GSs at Glu-D1. Yuyan Zhang,Hongwei Zhou,Haiyan Zhao,Xiaoke Zhang,Boli Guo,Yingquan Zhang. 2024

[3]30个小麦新品系抗条锈病基因分析及成株期抗病性评价. 冯晶,蔺瑞明,林凤,徐世昌. 2013

[4]小麦抗菌蛋白编码基因BS108的克隆及其转基因抗病小麦的创制. 李钊,周淼平,张增艳,庄洪涛,徐惠君,杜丽璞,叶兴国. 2010

[5]渗透调节物质及有机附加物对小麦体细胞胚发生影响的研究(英文). 孙朝霞,侯思宇,王玉国. 2008

[6]普通小麦品种辐射敏感性模糊聚类分析<英文>. 冯志杰,王琳清. 1992

[7]基因枪转化小麦主要轰击参数的优化. 闵东红,何莎,张彦,夏兰琴. 2013

[8]小麦矮缩病毒分子群体遗传结构研究. 刘艳,王锡锋,周广和. 2008

[9]The Relationship Between Chinese Raw Dumpling Quality and Flour Characteristics of Shandong Winter Wheat Cultivars. Zhang Yan,Ye Yi-li,Xiao Yong-gui,He Zhong-hu,Zhang Yan,Sun Qi-xin,Liu Jian-jun,He Zhong-hu. 2011

[10]Pan bread and dry white Chinense qualities in Chinese winter wheats. He, ZH,Yang, J,Zhang, Y,Quail, KJ,Pena, RJ. 2004

[11]Wheat quality traits and quality parameters of cooked dry white Chinese noodles. Liu, JJ,He, ZH,Zhao, ZD,Pena, RJ,Rajaram, S. 2003

[12]Suitability of Chinese wheat cultivars for production of northern style Chinese steamed bread. He, ZH,Liu, AH,Pena, RJ,Rajaram, S. 2003

[13]Applicability of DATEM for Chinese steamed bread made from flours of different gluten qualities. Bi Ying,Feng Yunzi,Chen Zhuo,Li Zaigui,Li Jun.

[14]Modulation mechanism of starch gelatinization and gluten network restructuring in wheat flour during atmospheric steam treatment. Xiangqi Fan,Jikai Jiang,Mohsin Rasheed,Ming Li,Yingquan Zhang,Yutong Cui,Bo Zhang,Boli Guo. 2025

[15]Folate Content Analysis Of Wheat C.ultivars Developed In The N orth China Plain. Zhang, Chunyi,Riaz, Bisma,Ye, Xingguo,Wan, Xing,Liang, Qiuju,Wang, Ke. 2019

[16]Physical Information Of 2705 Pcr-Based M.olecular Markers And The E valuation Of Their Potential Use In Wheat. Zhang, Mengna,Sun, Han,Cui, Fa,Wu, Yongzhen,Zhang, Qianqian,Jiang, Xiaomin,Liu, Mengmeng,Cui, Junpeng,Guan, Chunhui,Zhao, Chunhua,Hou, Yuzhu,Han, Dejun,Guo, Qifan,Xiang, Mingjie,Luo, Xiulong. 2019

[17]Identification Of Novel Alleles Induced B.y Ems-Mutagenesis In Key G enes Of Kernel Hardness And Starch Biosynthesis In Wheat By Tilling. Xie, Yongdun,Wang, Yongbin,Zhao, Baocun,Zhao, Shirong,Zhao, Linshu,Wang, Guangjin,Guo, Huijun,Gu, Jiayu,Li, Wenjie,Liu, Luxiang,Li, Wenjie. 2017

[18]Unconventional Splicing Of Wheat Tabzip60 C.onfers Heat Tolerance In T ransgenic Arabidopsis. Geng, Xiaoli,Zhao, Aiju,Zang, Xinshan,Geng, Xiaoli,Li, Haoran,Liu, Jian,Hu, Zhaorong,Ni, Zhongfu,Peng, Huiru,Sun, Qixin,Liu, Zhenshan,Zang, Xinshan,Yao, Yingyin,Xin, Mingming. 2018

[19]Development Of A High-Efficient Mutation R.esource With Phenotypic Variation I n Hexaploid Winter Wheat And Identification Of Novel Alleles In The Taagp.L-B1 Gene. Zhao Shirong,Xiong Hongchun,Li Xiao,Zhao Linshu,Yan Xiaoli,Xie Yongdun,Gu Jiayu,Guo Huijun,Liu, Luxiang,Liu Yunchuan. 2017

[20]Fine Mapping Of A Novel H.eading Date Gene, Tahdm605, I n Hexaploid Wheat. Jia, Jizeng,Liu, Xu,Liu, Guoxiang,Kong, Xiuying,Xia, Chuan,Zhang, Lichao,Zhang, Xueying,Zhao, Tianxiang. 2018

作者其他论文 更多>>