Pattern analysis on grain yield performance of Chinese and CIMMYT spring wheat cultivars sown in China and CIMMYT

文献类型: 外文期刊

第一作者: Zhang, Y

作者: Zhang, Y;He, ZH;Zhang, AM;van Ginkel, M;Ye, GY

作者机构:

关键词: Triticum aestivum;bread wheat;grain yield;cultivar-by-environment interaction;pattern analysis

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: 2006 年 147 卷 3 期

页码:

收录情况: SCI

摘要: Understanding the relationships among testing environments is essential for better targeting cultivars to production environments. To identify patterns of cultivar, environment, cultivar-by-environment interactions, and opportunities for indirect selection for grain yield, a set of 25 spring wheat cultivars from China and the International Maize and Wheat Improvement Center (CIMMYT) was evaluated in nine environments in China and four management environments at CIMMYT in Cd. Obregon, Mexico, during two wheat seasons. Genetic background and original environment were the main factors influencing grain yield performance of the cultivars. Baviacora M 92, Xinchun 2 and Xinchun 6 showed relatively more stable and higher grain yields, whereas highly photoperiod sensitive cultivars Xinkehan 9, Kefeng 6 and Longmai 19 proved consistently inferior across environments, except in Harbin and Keshan, the two high latitude environments. Longmai 26, also from high latitude environments in the northeastern Heilongjiang province, was however probably not as photoperiodicly sensitive as other cultivars; from that region, and produced much higher grain yield and expressed a broader adaptation. None of the environments reported major diseases. Pattern analyses revealed that photoperiod response and planting option on beds were the two main factors underlying the observed interactions for grain yield. The production environment of planting on the flat in Mexico grouped together with Huhhot and Urumqi in both wheat seasons, indicating an indirect response to selection for grain yield in this CIMMYT managed environment could benefit the two Chinese environments. Both the environment of planting on the flat with Chinese Hejin and Yongning, and the three CIMMYT enviromnents planting on raised beds with Chinese Yongning grouped together only in one season, showing that repeatability may not be stable in this case.

分类号:

  • 相关文献

[1]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

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

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

[4]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

[5]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

[6]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

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

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

[10]Milling quality and protein properties of autumn-sown Chinese wheats evaluated through multi-location trials. Zhang, Y,Zhang, Y,He, ZH,Ye, GY. 2005

[11]Molecular characterization and expression analysis of Triticum aestivum squamosa-promoter binding protein-box genes involved in ear development. Zhang, Bin,Liu, Xia,Zhao, Guangyao,Mao, Xinguo,Li, Ang,Jing, Ruilian,Liu, Xia. 2014

[12]Winter wheat grain yield and its components in the North China Plain: irrigation management, cultivation, and climate. Lv, Lihua,Yao, Yanrong,Zhang, Lihua,Jia, Xiuling,Liang, Shuangbo. 2013

[13]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

[14]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

[15]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

[16]AMMI AND GGE BIPLOT ANALYSIS FOR YIELD STABILITY OF PROMISING BREAD WHEAT GENOTYPES IN BANGLADESH. Alam, Md. Ashraful,Li, Mingju,Alam, Md. Ashraful,Farhad, Md.,Hakim, Md. Abdul,Malaker, Paritosh Kumar,Reza, Md. Mostofa Ali,Barma, Naresh Chandra Deb,Hossain, Md. Amir. 2017

[17]Genetic improvement of grain yield and associated traits in the southern China winter wheat region: 1949 to 2000. Zhu, H. Z.,Cai, S. B.,He, Z. H.,Zhang, X. K.,Xia, X. C.,Zhang, G. S.. 2007

[18]Seedling and slow rusting resistance to stripe rust in Chinese common wheats. Xia, X. C.,Zhou, X. C.,Niu, Y. C.,He, Z. H.,Zhang, Y.,Li, G. Q.,Wan, A. M.,Wang, D. S.,Chen, X. M.,Lu, Q. L.,Singh, R. P.. 2006

[19]Identification of QTLs for seedling vigor in winter wheat. Li, Xing-Mao,Wang, Hua-Jun,Li, Xing-Mao,Chen, Xin-Min,Xiao, Yong-Gui,Xia, Xian-Chun,Wang, De-Sen,He, Zhong-Hu,Li, Xing-Mao,He, Zhong-Hu.

[20]Rapid genome evolution revealed by comparative sequence analysis of orthologous regions from four triticeae genomes. Gu, YQ,Coleman-Derr, D,Kong, XY,Anderson, OD.

作者其他论文 更多>>