田菁改良盐碱地研究的CiteSpace可视化分析

CiteSpace visualization analysis of Sesbania cannabina in improving saline-alkaline land

  • 摘要: 田菁在盐碱地改良和综合利用中的效果十分显著,已受到广泛的关注,但目前该方向研究缺乏整合和总结。本文以中国知网(CNKI)数据库和科学引文索引(Web of Science)数据库为数据来源,利用CiteSpace文献计量学方法,分析了1964年1月1日至 2025年3月13日田菁在盐碱地应用领域的发文量及特征、合作研究共现网络特征、文献共被引图谱、核心关键词聚类图谱和关键词突现图谱,探究了田菁在盐碱地改良中的研究热点和发展趋势,提出了今后需要重视的几个问题。在田菁研究近61年历史中,我国发文量远超国外,在该领域有国际影响力,其中,中国科学院、中国农业科学院和中国科学院大学是主要研究机构。我国学者解志红、王立艳等团队发文量最多,在田菁茎瘤固氮根瘤菌及田菁改良滨海盐碱地效果研究方面取得成就。利用分子生物学和基因技术研究田菁改良盐碱地是目前研究的主要方向。今后研究需要重视利用科学的育种技术,培育田菁耐盐碱品种,提高田菁生存能力,同时应加强田菁生物学、抗逆耐盐碱分子机制研究,深挖田菁生态学价值和经济价值,并创新构建盐碱土区田菁-耐盐碱植物生态治理模式和田菁-经济作物的耕作模式,协同提升生态环境安全和土壤地力-饲草-粮食产出等。

     

    Abstract: The effect of Sesbania cannabina in the improvement and comprehensive utilization of saline-alkaline land is significant, which has received great attention, while the research in this field lacks integration and summarization. In this paper, the number and characteristics of Sesbania cannabina's publications in the field of saline-alkaline land application from January 1, 1964 to March 13, 2025 by CiteSpace bibliometrics method with the data sources of China Knowledge Network (CNKI) and Web of Science are analyzed. The characteristics of co-occurring network of collaborative research, co-citation mapping of literature, core keywords, clustering mapping and keyword emergence mapping are also analyzed simultaneously. The research hotspots and development trends of Sesbania cannabina in saline-alkaline land improvement are explored, and several issues that need to be emphasized in the future are proposed. Over 61-year history of Sesbania cannabina research, the number of papers published by Chinese scientists far exceeds that of other countries' scientists, which exhibits international influence in the field. Chinese Academy of Sciences, Chinese Academy of Agricultural Sciences and University of the Chinese Academy of Sciences are the main research institutions. The number of papers from Chinese scholars Xie Zhihong, Wang Liyan and their teams is the most focusing on the research of Azorhizobium caulinodans and Sesbania cannabina in improvement of coastal saline-alkaline land, and the use of biomolecules and gene technology. The future research needs to pay more attention to the use of scientific breeding technology to select Sesbania cannabina saline-alkaline tolerant varieties in improving the ability of survival of Sesbania cannabina, as well as highlight the biology and resistance to salinity and alkalinity molecular mechanisms of Sesbania cannabina. The ecological and economic values, innovative construction of Sesbania cannabina - salinity-tolerant plant ecological management and cash crop farming modes as well as synergistic enhancement of ecological environment and soil fertility - forage - food output should also be addressed.

     

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