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International Research Status Analysis of Tomato Molecular Breeding Based on Literature Survey

Received: 1 September 2016    Accepted:     Published: 2 September 2016
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Abstract

The international research trend of tomato molecular breeding was studied based on thesis analysis in SCIE. Through the analysis of the annual number of articles, reveals the variation trend of related research. By the analysis of Scientific productivity and achievement influence, compares the research competitiveness among countries. Use the co-word clustering to identify 6 important research topics in the field, and use the strategy coordinates to evaluation the relative position of these topics .The result shows that, tomato molecular breeding research presents a rising trend. The United States plays an absolute leading role in the field. China’s research layouts more but achievements influence is relatively low. # 5 (tomato genome) and # 1 (resistance) themes are the center of tomatoes molecular breeding. # 2 (oxidative stress) may be the center of the future research.

Published in American Journal of BioScience (Volume 4, Issue 4)
DOI 10.11648/j.ajbio.20160404.13
Page(s) 53-57
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Tomato, Molecular Breeding, Situation, Co-word Analysis, Strategic Coordinates

References
[1] Lin, T; Zhu, GT; Zhang, JH; et al. Genomic analyses provide insights into the history of tomato breeding [J]. NATURE GENETICS, 2014, 46 (11): 1220-1226.
[2] Kong Fanhui. The study of creating multi-resistance and long shelf life tomato materials by marker-assisted selection [D]. Northeast Agricultural University, 2015.
[3] ZHU Ming-tao. Research Progress on Molecular Breeding for Disease Resistance of Tomato [J]. Northern Horticulture, 2010, 23: 200-203.
[4] Sim, Sung-Chur; Robbins, Matthew D.; Wijeratne, Saranga; et al. Association Analysis for Bacterial Spot Resistance in a Directionally Selected Complex Breeding Population of Tomato [J]. PHYTOPATHOLOGY, 2015, 105 (11): 1437-1445.
[5] Santos, Jean C. S.; Siqueira, Walter J.; Melo, Paulo C. T.; et al. Selection of tomato breeding lines with resistance to Tomato yellow vein streak virus [J]. HORTICULTURA BRASILEIRA, 2015, 33 (3): 345-351.
[6] Cao Yongxiang, Zhang Xichun. Molecule Marker Technology in The tomato Resistance Breeding Application [J].Chinese Agricultural Science Bulletin, 2008, 02: 81-88.
[7] Li Junming, Song Yan, Zhu Tong, et al. Reviews about Molecular Breeding of Salt Tolerance on Tomato [J]. Molecular Plant Breeding, 2006, 01: 111-116.
[8] LI Xiao-lei, LI Jing-fu, KANG Li-gong, et al. Research Progress in Tomato Quality Genetics and Breeding [J]. CHINA VEGETABLES, 2010, (14): 1-3.
[9] Bai Yan-jing. Selective breeding of transgenic anti. decayed tomato inbred lines and hybiud generation variety test [D]. Huazhong Agricultural University, 2013.
[10] ZHANG He, LI Jing-fu, ZHUANG Lei, et al. Initial Exploration about Creation of New Tomato Male Sterile Line and Its Seed Production Technology [J]. China Vegetables, 2012, 06: 93-95+108.
[11] WANG Ao-Xue, CHEN Xiu-Ling. Current status and industrialization of transgenic tomatoes [J]. Hereditas, 2011, 33 (9): 962-974.
[12] Kostoff RN, Eberhart HJ, Toothman DR. Database tomography for information retrieval. JOURNAL OF INFORMATION SCIENCE, 1997, 23 (4): 301-311.
[13] Yuan Jianxia, Dong Yu, Zhang Bo, et al. A Bibliometrical Analysis of International Development of Molecular Marker Assisted Breeding of Crop [J]. Science Focus, 2012, 02: 24-32.
[14] ZHOU Li-ying; ZUO Wen-ge. Soil science research profiling based on subject co-occurrence [J]. Journal of China Agricultural University, 2014, 04: 265-272.
Cite This Article
  • APA Style

    Sufen Sun, Changshou Luo, Qingfeng Wei, Junfeng Zhang. (2016). International Research Status Analysis of Tomato Molecular Breeding Based on Literature Survey. American Journal of BioScience, 4(4), 53-57. https://doi.org/10.11648/j.ajbio.20160404.13

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    ACS Style

    Sufen Sun; Changshou Luo; Qingfeng Wei; Junfeng Zhang. International Research Status Analysis of Tomato Molecular Breeding Based on Literature Survey. Am. J. BioScience 2016, 4(4), 53-57. doi: 10.11648/j.ajbio.20160404.13

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    AMA Style

    Sufen Sun, Changshou Luo, Qingfeng Wei, Junfeng Zhang. International Research Status Analysis of Tomato Molecular Breeding Based on Literature Survey. Am J BioScience. 2016;4(4):53-57. doi: 10.11648/j.ajbio.20160404.13

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  • @article{10.11648/j.ajbio.20160404.13,
      author = {Sufen Sun and Changshou Luo and Qingfeng Wei and Junfeng Zhang},
      title = {International Research Status Analysis of Tomato Molecular Breeding Based on Literature Survey},
      journal = {American Journal of BioScience},
      volume = {4},
      number = {4},
      pages = {53-57},
      doi = {10.11648/j.ajbio.20160404.13},
      url = {https://doi.org/10.11648/j.ajbio.20160404.13},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajbio.20160404.13},
      abstract = {The international research trend of tomato molecular breeding was studied based on thesis analysis in SCIE. Through the analysis of the annual number of articles, reveals the variation trend of related research. By the analysis of Scientific productivity and achievement influence, compares the research competitiveness among countries. Use the co-word clustering to identify 6 important research topics in the field, and use the strategy coordinates to evaluation the relative position of these topics .The result shows that, tomato molecular breeding research presents a rising trend. The United States plays an absolute leading role in the field. China’s research layouts more but achievements influence is relatively low. # 5 (tomato genome) and # 1 (resistance) themes are the center of tomatoes molecular breeding. # 2 (oxidative stress) may be the center of the future research.},
     year = {2016}
    }
    

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  • TY  - JOUR
    T1  - International Research Status Analysis of Tomato Molecular Breeding Based on Literature Survey
    AU  - Sufen Sun
    AU  - Changshou Luo
    AU  - Qingfeng Wei
    AU  - Junfeng Zhang
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    N1  - https://doi.org/10.11648/j.ajbio.20160404.13
    DO  - 10.11648/j.ajbio.20160404.13
    T2  - American Journal of BioScience
    JF  - American Journal of BioScience
    JO  - American Journal of BioScience
    SP  - 53
    EP  - 57
    PB  - Science Publishing Group
    SN  - 2330-0167
    UR  - https://doi.org/10.11648/j.ajbio.20160404.13
    AB  - The international research trend of tomato molecular breeding was studied based on thesis analysis in SCIE. Through the analysis of the annual number of articles, reveals the variation trend of related research. By the analysis of Scientific productivity and achievement influence, compares the research competitiveness among countries. Use the co-word clustering to identify 6 important research topics in the field, and use the strategy coordinates to evaluation the relative position of these topics .The result shows that, tomato molecular breeding research presents a rising trend. The United States plays an absolute leading role in the field. China’s research layouts more but achievements influence is relatively low. # 5 (tomato genome) and # 1 (resistance) themes are the center of tomatoes molecular breeding. # 2 (oxidative stress) may be the center of the future research.
    VL  - 4
    IS  - 4
    ER  - 

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Author Information
  • Institute of Information on Science and Technology of Agriculture, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China;Rural Distance Information Service Engineering Technology Research Center of Beijing Beijing, China

  • Institute of Information on Science and Technology of Agriculture, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China;Rural Distance Information Service Engineering Technology Research Center of Beijing Beijing, China

  • Institute of Information on Science and Technology of Agriculture, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China;Rural Distance Information Service Engineering Technology Research Center of Beijing Beijing, China

  • Institute of Information on Science and Technology of Agriculture, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China;Rural Distance Information Service Engineering Technology Research Center of Beijing Beijing, China

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