Milling quality and protein properties of autumn-sown Chinese wheats evaluated through multi-location trials

文献类型: 外文期刊

第一作者: Zhang, Y

作者: Zhang, Y;Zhang, Y;He, ZH;Ye, GY

作者机构:

关键词: bread wheat;genotype x location interaction;milling quality;protein properties;Triticum aestivum

期刊名称:EUPHYTICA ( 影响因子:1.895; 五年影响因子:2.181 )

ISSN: 0014-2336

年卷期: 2005 年 143 卷 1-2 期

页码:

收录情况: SCI

摘要: Eight milling quality and protein properties of autumn-sown Chinese wheats were investigated using 59 cultivars and advanced lines grown in 14 locations in China from 1995 to 1998. Wide ranges of variability for all traits were observed across genotypes and locations. Genotype, location, year, and their interactions all significantly influenced most of the quality parameters. Kernel hardness, Zeleny sedimentation value, and mixograph development time were predominantly influenced by the effects of genotype. Genotype, location and genotype x location interaction were all important sources of variation for thousand kernel weight, test weight, protein content, and falling number, whereas genotype x location interaction had the largest effect on flour yield. Most of the genotypes were characterized by weak gluten strength with Zeleny sedimentation values less than 40 ml and mixograph development time shorter than 3 min. Eight groups of genotypes were recognized based on the average quality performance, grain hardness and gluten strength were the two parameters that determined the grouping, with contributions from protein content. Genotypes such as Zhongyou 16 and Annong 8903 displayed good milling quality, high grain hardness, protein content and strong gluten strength with high sedimentation value and long mixograph development time. Genotypes such as Lumai 15 and Yumai 18 were characterized by low grain hardness, protein content and weak gluten strength. Genotypes such as Yannong 15 and Chuanmai 24 were characterized by strong gluten strength with high sedimentation value and long mixograph development time, but low grain hardness and protein content lower than 12.3%. Genotypes such as Jingdong 6 and Xi'an 8 had weak gluten strength, but with high grain hardness and protein content higher than 12.2%. Five groups of locations were identified, and protein content and gluten strength were the two parameters that determined the grouping. Beijing, Shijiazhuang, Nanyang, Zhumadian and Nanjing produced wheats with medium to strong gluten strength and medium protein content, although there was still a large variation for most of the traits investigated between the locations. Wheat produced in Yantai was characterized by strong gluten strength, but with low protein content. Jinan, Anyang and Linfen locations produced wheats with medium to weak gluten strength and medium to high protein content. Wheats produced in Yangling, Zhenzhou, and Chengdu were characterized by weak gluten strength with medium to low protein content, whereas wheats produced in Xuzhou and Wuhan were characterized by weak gluten strength with low protein content. Industrial grain quality could be substantially improved through integrating knowledge of geographic genotype distribution with key location variables that affected end-use quality.

分类号:

  • 相关文献

[1]Influence of puroindoline alleles on milling performance and qualities of Chinese noodles, steamed bread and pan bread in spring wheats. Chen, Feng,He, Zhonghu,Chen, Dongsheng,Zhang, Chunli,Zhang, Yan,Xia, Xianchun. 2007

[2]Milling and Chinese raw white noodle qualities of common wheat near-isogenic lines differing in puroindoline b alleles. He, Zhonghu,Ma, Dongyun,Morris, Craig F..

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

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

[5]Effect of environment and genotype on bread-making quality of spring-sown spring wheat cultivars in China. Zhang, Y,He, ZH,Ye, GY,Aimin, Z,Van Ginkel, M. 2004

[6]Studies on somaclonal variants for resistance to scab in bread wheat (Triticum aestivum L.) through in vitro selection for tolerance to deoxynivalenol. Yang, ZP,Yang, XY,Huang, DC. 1998

[7]Prevalence of a novel puroindoline b allele in Yunnan endemic wheats (Triticum aestivum ssp. yunnanense King). Chen, Feng,Yu, Yaxiong,Xia, Xianchun,He, Zhonghu. 2007

[8]Pattern analysis on protein properties of Chinese and CIMMYT spring wheat cultivars sown in China and CIMMYT. Zhang, Yong,He, Zhonghu,Zhang, Aimin,van Ginkel, Maarten,Pena, Roberto J.,Ye, Guoyou. 2006

[9]The crossability percentages of 96 bread wheat landraces and cultivars from Japan with rye. Rui, M,Zheng, DS,Fan, L. 1996

[10]Pattern analysis on grain yield performance of Chinese and CIMMYT spring wheat cultivars sown in China and CIMMYT. Zhang, Y,He, ZH,Zhang, AM,van Ginkel, M,Ye, GY. 2006

[11]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

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

[13]Molecular mapping of quantitative trait loci for kernel morphology traits in a non-1BL.1RS x 1BL.1RS wheat cross. Yonggui Xiao,Shengmei He,Jun Yan,Yong Zhang,Yelun Zhang,Yunpeng Wu,Xianchun Xia,Jichun Tian,Wanquan Ji,Zhonghu He.

[14]Effects of plastic film mulching cultivation under non-flooded condition on rice quality. Lu, Xinghua,Wu, Lianghuan,Pang, Linjiang,Li, Yongshan,Wu, Jianguo,Shi, Chunhai,Zhang, Fusuo. 2007

[15]Identification of quantitative trait loci underlying milling quality of rice (Oryza sativa) grains. Li, ZF,Wan, JM,Xia, JF,Zhai, HQ,Ikehashi, H. 2004

[16]Genomic regions associated with milling quality and grain shape identified in a set of random introgression lines of rice (Oryza sativa L.). Zheng, T. Q.,Xu, J. L.,Li, Z. K.,Zhai, H. Q.,Wan, J. M.. 2007

[17]Mapping quantitative trait loci for quality factors in an inter-class cross of US and Chinese wheat. Bai, Guihua,Sun, Xiaochun,Marza, Felix,Carver, Brett F.,Ma, Hongxiang.

[18]Characterization of A- and B-type starch granules in Chinese wheat cultivars. Zhang Yan,Guo Qi,Feng Nan,He Zhong-hu,Wang Jin-rong,Wang Shu-jun,He Zhong-hu. 2016

[19]Association Analysis of Grain-setting Rates in Apical and Basal Spikelets in Bread Wheat (Triticum aestivum L.). Guo, Jie,Zhang, Yong,Zhang, Boqiao,Cheng, Xiaoming,Cheng, Kai,Cheng, Shunhe,Zhang, Xueyong,Hao, Chenyang,Guo, Jie,Shi, Weiping,Zhang, Jingjuan,Xu, Yanhao. 2015

[20]Identification of genome-wide single-nucleotide polymorphisms (SNPs) associated with tolerance to chromium toxicity in spring wheat (Triticum aestivum L.). Almas, Fakhrah,Hassan, Adeel,Bibi, Arfa,Ali, Masab,Lateef, Sadia,Mahmood, Tariq,Quraishi, Umar Masood,Rasheed, Awais. 2018

作者其他论文 更多>>