Scientia Agricultura Sinica ›› 2014, Vol. 47 ›› Issue (14): 2723-2730.doi: 10.3864/j.issn.0578-1752.2014.14.003

• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles     Next Articles

The Trend of Quality Traits of Maize Varieties Released Extensively in Different Eras in China

 SUN  Qi-1, 2 , ZHANG  Shi-Huang-1, LI  Xin-Hai-1, MENG  Zhao-Dong-2, CI  Xiao-Ke-1, ZHANG  De-Gui-1, HAO  Zhuan-Fang-1, WENG  Jian-Feng-1, BAI  Li-1, LI  Ming-Shun-1   

  1. 1、Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081;
    2、Maize Institute, Shandong Academy of Agricultural Sciences, Ji’nan 250100
  • Received:2014-01-24 Online:2014-07-15 Published:2014-04-22

Abstract: 【Objective】 The experiment materials were the varieties released from 1950 with large area application in the production. The trend of quality traits of maize varieties released extensively in different eras in China was studied. The result will be useful for guiding the genetic improvement of quality traits of maize.【Method】Thirty-five cultivars extended in 1950-2000 at large scale were selected. All the varieties were planted in the Shunyi experimental field of Institute of Crop Sciences, Chinese Academy of Agricultural Sciences. Each cultivar was sowed for 5 rows, 3 replications, randomized block design. Two rows in the middle of each plot were reaped. The grain yield and the volume-weight were observed after harvest. The contents of starch, protein and fat of seeds were measured, respectively, with near infrared reflectance spectroscopy (NIRS). ANOVA analysis was made for the quality traits and grain yield. The correlation between the quality traits and grain yield was analyzed. Base on the regression analysis on the mean value of quality traits and yield, the trend of them was studied. 【Result】 Within each decade, the coefficient of variance (CV) was below 10% for the contents of starch and protein and the volume-weight of seed. But the coefficient of variance (CV) was 9.54%-18.74% for the content of fat of seed and 4.53%-33.33% for the grain yield. It meant that the variance range within each decade was small for the content of starch, protein and the volume-weight of seed, but large for the content of fat of seed and the grain yield. The difference of the grain yield between decades was significant, the same as the contents of starch, protein and the volume-weight of seed. The difference in content of fat of seed was not significant. The grain yield of the maize cultivars released extensively increased gradually from 1950 to 2000, average 871 kg•hm-2 per ten years. The content of starch of seed increased generally with the decades, 0.25% per ten years in average. But the content of protein of seed decreased gradually with the decades, 0.31% per ten years in average. The volume-weight also increased generally with the decades, 5.97g•L-1 per ten years in average. The relationship between the content of starch of seed and the grain yield was significantly positive correlation (r=0.493). But the relationship between the content of protein of seed and the grain yield was significantly negative correlation (r=-0.678). It showed that the increase of the starch content and the decrease of the protein content of seeds from 1950 to 2000 was related to the improvement of yield.【conclusion】The grain yield of the maize varieties released extensively was improved greatly from 1950 to 2000. The content of starch and the volume-weight of seed were improved, but the content of protein of seed decreased. The fat content of seed had no obvious changes.

Key words: maize , mainly spreading varieties , starch , protein , fat

[1]Duvick D N. The contribution of breeding to yield advances in maize (Zea mays L.). Advances in Agronomy, 2005, 86: 83-145.

[2]Duvick D N, Smith J, Cooper M. Long-Term selection in a commercial hybrid maize breeding program. Plant Breeding Reviews, 2004: 109-151.

[3]Edmeades G O, Bolanos J, Elings A, Ribaut J M, Bänziger M, Westgate M E, Boote K J. The role and regulation of the anthesis-silking interval in maize. Crop Science Society of America, 2000: 43-73.

[4]Russell W A. Evaluations for plant, ear, and grain traits of maize cultivars representing seven eras of breeding. Maydica, 1985, 30: 85-96.

[5]Tollenaar M. Genetic improvement in grain yield of commercial maize hybrids grown in Ontario from 1959 to 1988. Crop Science, 1989, 29: 1365-1371.

[6]Tollenaar M, Dwyer L M, Stewart D W. Ear and kernel formation in maize hybrids representing three decades of grain yield improvement in Ontario. Crop Science, 1992, 32: 432-438.

[7]Barker T, Campos H, Cooper M, Dolan D, Edmeades G, Habben J, Schussler J, Wright D, Zinselmeier C. Improving drought tolerance in maize. Plant Breeding Reviews, 2005: 173-253.

[8]Dwyer L M, Stewart D W, Tollenaar M. Changes in plant density dependence of leaf photosynthesis of maize (Zea mays L.) hybrids, 1959 to 1988. Canadian Journal of Plant Science, 1991, 71(1): 1-11.

[9]Edmeades G O, Schussler J, Campos H, Zinselmeier C, Habben J, Collinson S, Cooper M, Hoffbeck M, Smith O. Increasing the odds of success in selecting for abiotic stress tolerance in maize//Proceedings 5th Australian Maize Conference. Toowoomba: Maize Association of Australia, 2003: 16-28.

[10]Duvick D N. What is Yield?//Developing Drought- and Low N-Tolerant Maize. Mexico: CIMMYT, 1997: 332-335.

[11]白永新, 陈保国, 张润生, 卢桂花, 王早荣, 李全泽. 普通玉米品质育种的现状分析与综合评价. 玉米科学, 2003, 11(2): 50-53.

Bai Y X, Chen B G, Zhang R S, Lu G H, Wang Z R, Li Q Z. The situation analysis and integrated evaluation of quality breeding in normaI corn. Journal of Maize Sciences, 2003, 11(2): 50-53. (in Chinese)

[12]何代元, 何琴, 刘经纬, 周联东, 刘朝晖. 我国普通玉米品种品质现状分析. 杂粮作物, 2007, 27(5): 329-330.

He D Y, He Q, Liu J W, Zhou L D, Liu Z H. Analysis on the current situation about quality of corn varieties in China. Rain Fed Crops, 2007, 27(5): 329-330. (in Chinese)

[13]杨书成, 杨振兴, 宋景楠. “十一五”我国普通玉米品质现状与分析. 农业科技通讯, 2011(8): 5-7.

Yang S C, Yang Z X, Song J N. Analysis on the current situation about quality of corn varieties from 2006 to 2000 in China. Agricultural Technology Bulletin, 2011(8): 5-7. (in Chinese)

[14]岳尧海, 王敏, 张洪伟, 金明华, 刘文国. 吉林省玉米品种品质现状分析. 农业与技术, 2010, 30(6): 17-22.

Yue Y H, Wang M, Zhang H W, Jin M H, Liu W G. Analysis on the current situation about quality of corn varieties in Jilin. Agriculture & Technology, 2010, 30(6): 17-22. (in Chinese)

[15]陈保国, 白永新, 张润生, 李鹏, 郭盛. 山西省普通玉米品质育种分析与评价. 山西农业科学, 2012, 40(6): 593-595.

Chen B G, Bai Y X, Zhang R S, Li P, Guo S. Analysis and evaluation on quality breeding in conventional maize in Shanxi. Journal of Shanxi Agricultural Sciences, 2012, 40(6): 593-595. (in Chinese)

[16]侯旭光, 吴云霞, 冯勇. 内蒙古普通玉米品质育种的现状分析. 华北农学报, 2004, 19(S1): 86-91.

Hou X G, Wu Y X, Feng Y. The situation analysis of quality breeding in normalcorn in Inner Mongolia. Acta Agriculturae Boreali-Sinica, 2004, 19(S1): 86-91. (in Chinese)

[17]佟屏亚. 20世纪中国玉米品种改良的历程和成就. 中国科技史料, 2001(22): 113-127.

Tong P Y. Process and achievements of improvement on corn varieties of 20th century in China. Historical Data of Chinese Science and Technology, 2001(22): 113-127. (in Chinese)

[18]郭庆法, 王庆成, 汪黎明. 中国玉米栽培学. 上海: 上海科学技术出版社, 2004: 284-300.

Guo Q F, Wang Q C, Wang L M. Maize Cultivation in China. Shanghai: Shanghai Science and Technology Press, 2004: 284-300. (in Chinese)

[19]周洪生. 玉米种子大全. 北京: 中国农业科学技术出版社, 1996: 175-176.

Zhou H S. Corn Seed Books. Beijing: Chinese Agricultural Science and Technology Press, 1996: 175-176. (in Chinese)

[20]谢振江. 我国玉米单交种产量及主要农艺性状遗传增益分析[D]. 沈阳: 沈阳农业大学, 2009: 3-5.

Xie Z J. Analysis on genetic gain of yield and its major agronomy traits for maize hybrids in the latest 40 years in China [D]. Shenyang: Shenyang Agricultural University, 2009: 3-5. (in Chinese)

[21]Ci X K, Li M S, Liang X L, Xie Z J, Zhang D G, Li X H, Lu Z Y, Ru G L, Bai L, Xie C X, Hao Z F, Zhang S H. Genetic contribution to advanced yield for maize hybrids released from 1970 to 2000 in China. Crop Science, 2011, 51: 13-20.

[22]Ci X K, Li M S, Xu J S, Lu Z Y, Bai P F, Ru G L, Liang X L, Zhang D G, Li X H, Bai L, Xie C X, Hao Z F, Zhang S H, Dong S T. Trends of grain yield and plant traits in Chinese maize cultivars from the 1950s to the 2000s. Euphytica, 2012, 185: 395-406.

[23]张晓芳. 玉米种质资源品质性状的鉴定与评价. 玉米科学, 2006, 14(1): 18-20.

Zhang X F. Identification and evaluation of quality traits in corn germplasm. Journal of Maize Sciences, 2006, 14(1): 18-20. (in Chinese)

[24]袁亮, 潘光堂, 邱正高, 杨华. 普通玉米品质性状与产量性状的相关通径分析. 南方农业, 2008, 2(11): 5-8.

Yuan L, Pan G T, Qiu Z G, Yang H. The correlation and path analysis between quality traits and yield. South China Agriculture, 2008, 2(11): 5-8. (in Chinese)

[25]赵克明. 提高玉米品质,推广优质玉米. 玉米科学, 2000, 8(1): 8-10.

Zhao K M. Improving corn quality and spreading good quality corn. Journal of Maize Sciences, 2000, 8(1): 8-10. (in Chinese)
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