数字农科院2.0

The Role Of Exotic Wheat Germplasms In Wheat Breeding And Their Impact On Wheat Yield And Production In China

文献类型: 外文期刊

作者: Xiang, C; Huang, JK

作者机构:

关键词: Germplasm; Wheat; Variety; Yield; Cimmyt; China

期刊名称: CHINA ECONOMIC REVIEW

ISSN: 1043-951X

年卷期: 2020 年 62 卷

页码:

收录情况: JCR(2021版)

摘要: Wheat is the second most important food crop in China and its yield has increased significantly since the early 1980s. While the rise in yield is obviously owed to the adoption of modern varieties and the rising use of inputs, little research has examined the yield gains as a result of the improvement of germplasms through international exchanges in the domestic breeding program. This study aims to understand the uses of exotic germplasms in wheat varieties adopted by farmers and their contributions to wheat yield and production in China. Based on unique data on major wheat varieties adopted by farmers and their pedigree in 17 major wheat production provinces in the period between 1982 and 2014, descriptive analyses show that the varieties with germplasms from CIMMYT (International Maize and Wheat Improvement Center) and other countries (or Others) accounted for 19% and 81%, respectively, in the major varieties adopted by farmers. While the direct adoption of exotic varieties in production has been falling, the use of exotic germplasms in wheat breeding has increased over time. Moreover, the varieties with both, Chinese and exotic germplasms, normally had higher average yields than the varieties with Chinese germplasms alone in most periods studied. The econometric analysis further shows that when compared with the varieties with pure Chinese germplasms, those with exotic germplasms contributed higher yields. Without the germplasms from CIMMYT and Others, the average annual yield would be lowered by 63 kg/ha and 323 kg/ha, respectively, during 1982-2014. The estimated increase in wheat production as a result of using exotic germplasms reached 10.4 million tons annually and has increased over time in the past three decades. The paper concludes with several policy implications for China's plant breeding strategy and for international donors funding the germplasm program.

分类号:

  • 相关文献

[1]Synthetic Hexaploid Wheat: Yesterday, Today, A.nd Tomorrow. Li, AL, Liu, DC, Yang, WY, Kishii, M, Mao, L. 2018

[2]Research Progress On Heat Stress O.f Rice At Flowering S tage. Wang Yaliang,Zhu Defeng,Zhou Jianxia,Zhang Yikai,Zeng Yongjun,Zhang Yuping,Shi Qinghua,Wang Yaliang,Wang Lei,Xiang Jing,Hu Shengbo,Chen Huizhe. 2019

[3]Study on spatio-temporal variation mechanism of phytic acid contents of wheat grains. Sun T., Zhang Y., Wang S., Guo B., Yang Q., Zhao H.. 2022

[4]Fiber Flax Breeding In China A.nd Europe. Wang, YF, Jankauskiene, Z, Qiu, CS, Gruzdeviene, E, Long, SH, Alexopoulou, E, Guo, Y, Szopa, J, Hao, DM, Fernando, AL, Wang, H. 2018

[5]Synthetic Hexaploid Wheat: Yesterday, Today, A.nd Tomorrow. Kishii, Masahiro,Li, Aili,Liu, Dengcai,Mao, Long,Yang, Wuyun. 2018

[6]Global Sensitivity Analysis Of Wheat G.rain Yield And Quality A nd The Related Process Variables From The Dssat-Ceres Model Based On The Extended Fourier Amplitude Sensitivity Test Method. Liu Hai-long,Li Zhen-hai,Xu Xin-gang,Wang Ji-hua,Jin Xiu-liang,Li Zhen-hai. 2019

[7]Enhancement Of Dwarf Wheat Germplasm W.ith High-Yield Potential Derived F rom Induced Mutagenesis. Xiong, HC, Guo, HJ, Xie, YD, Zhao, LS, Gu, JY, Zhao, SR, Li, JH, Liu, LX. 2018

[8]Effects Of Plasticmulching And Plastic R.esidue On Agricultural Production: A Meta-Analysis. Gao, HH, Yan, CR, Liu, Q, Ding, WL, Chen, BQ, Li, Z. 2019

[9]Spatio-Temporal Analysis Of The Geographical C.entroids For Three Major C rops In China From 1949 To 2014. Fan, LL, Liang, SF, Chen, H, Hu, YA, Zhang, XF, Liu, ZH, Wu, WB, Yang, P. 2018

[10]Incidence and distribution of insect-transmitted cereal viruses in wheat in China from 2007 to 2019. Liu, Yan,Zhang, Peipei,Khine, May Oo,Fu, Yumei,Wang, Xifeng. 2020

[11]A Hierarchical Interannual Wheat Yield And Grain Protein Prediction Model Using Spectral Vegetative Indices And Meteorological Data. Li, ZH, Taylor, J, Yang, H, Casa, R, Jin, XL, Li, ZH, Song, XY, Yang, GJ. 2020

[12]A Consistent Calibration Across Three Wheat Models To Simulate Wheat Yield And Phenology In China. Liu, H, Pequeno, DNL, Hernandez-Ochoa, IM, Krupnik, TJ, Sonder, K, Xiong, W, Xu, YL. 2020

[13]Deoxynivalenol In Wheat From The N.orthwestern Region In China. Zhao, YJ, Guan, XL, Zong, Y, Hua, XT, Xing, FG, Wang, Y, Wang, FZ, Liu, Y. 2018

[14]Generation and characterization of 24 novel EST derived microsatellites from tea plant (Camellia sinensis) and cross-species amplification in its closely related species and varieties. Zhao, Li-Ping,Liu, Zhen,Chen, Liang,Yao, Ming-Zhe,Wang, Xin-Chao.

[15]Selenium distribution, translocation and speciation in wheat (Triticum aestivum L.) after foliar spraying selenite and selenate. Di X., Qin X., Zhao L., Liang X., Xu Y., Sun Y., Huang Q.. 2023

[16]Grape Berry Surface Bacterial Microbiome: I.mpact From The Varieties A nd Clones In The Same Vineyard From Central China. Zhang, J, Wang, ET, Singh, RP, Guo, C, Shang, Y, Chen, J, Liu, C. 2019

[17]IMPLICATIONS OF VARIABILITY IN MECHANICAL CHACTERISTICS OF RICE STRAW UNDER DIFFERENT MOISTURE, VARIETY AND LOADING RATE. Soomro, Shakeel Ahmed,Chen, Kunjie,Siyal, Altaf Ali,Sessiz, Abdullah,Wagan, Bakhtawar,Memon, Muhammad Sohail,Soomro, Zubair Ahmed,Peter, Mecha,Liu, Haolu,Yang, Zhenjie. 2021

[18]Biochar promotes soil organic carbon sequestration and reduces net global warming potential in apple orchard: A two-year study in the Loess Plateau of China. Han J., Zhang A., Kang Y., Han J., Yang B., Hussain Q., Wang X., Zhang M., Khan M.A.. 2022

[19]Race And Virulence Analysis Of Puccinia Triticina In China During 2011 To 2013. Zhang, L, Xiao, Y, Gao, Y, Zhao, N, An, YJ, Yang, WX, Meng, QF, Yan, HF, Liu, DQ. 2020

[20]Determining the geographical origin of flaxseed based on stable isotopes, fatty acids and antioxidant capacity. Liang K., Zhu H., Zhao S., Liu H., Zhao Y.. 2022

作者其他论文 更多>>