淡水湖泊固氮微生物与固氮速率影响因素:文献计量与整合分析
CSTR:
作者:
作者单位:

1:云南大学生态与环境学院,云南高原山地生态与退化环境修复重点实验室,昆明 650091 ;2:中国科学院南京地理湖泊研究所,湖泊与流域水安全全国重点实验室,南京 211135

作者简介:

通讯作者:

中图分类号:

基金项目:

国家自然科学基金项目(U2102216)和云南省基础研究计划项目(202201AT070093)联合资助


Bibliometric and meta-analysis of nitrogen-fixing microbial communities and factors influencing nitrogen fixation rates in freshwater lakes
Author:
Affiliation:

1: Yunnan Key Laboratory for Plateau Mountain Ecology and Restoration of Degraded Environments, School of Ecology and Environmental Science, Yunnan University, Kunming 650091 , P.R.China ;2: State Key Laboratory of Lake and Watershed Science for Water Security, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 211135 , P.R.China

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 附件
  • |
  • 文章评论
    摘要:

    固氮作用是生态系统生物地球化学循环的重要环节。目前对水生生态系统固氮作用的研究起步相对较晚,主要集中在海洋和湖泊等水体。为了解当前淡水湖泊固氮微生物的研究热点与发展趋势,本研究以Web of Science数据库中淡水湖泊固氮微生物及相关领域的文献为数据源,运用CiteSpace和VOSviewer软件构建知识图谱,分析该研究领域的发文热点及未来研究趋势。在此基础上,通过文献整合分析,梳理了水体氮磷营养盐对固氮速率的影响及其可能的作用机制。结果表明,(1)1992-2024年全球淡水湖泊固氮微生物研究领域的出版物数量和引用频次不断增加。(2)国家、作者、机构合作网络分析显示,淡水湖泊固氮微生物研究是一个多学科交叉、多国家和机构合作的研究领域。(3)聚类分析结果表明,当前研究热点主要聚焦于3个方向:磷限制情境下的营养调控策略及其对蓝藻群落演替过程的生态响应;基于nifH基因的固氮微生物多样性解析及其在氮循环功能中的生态位特征;环境因子驱动下浮游植物群落结构的长期时空动态演替规律。(4)整合分析结果表明:固氮量化研究的地理分布区域不平衡,北美洲构建了涵盖多类型水体的综合指标体系,而亚洲、南美洲则侧重蓝藻生物量描述,欧洲多聚焦于氮磷动态变化和固氮过程的耦合关系;固氮生物物种研究以蓝藻门(长孢藻、束丝藻等)为主,变形菌、古菌等门类研究相对较少;总磷与固氮速率呈显著正相关关系,而与总溶解氮、硝态氮、铵态氮呈显著负相关关系。非线性分段模型拟合发现总磷对淡水湖泊固氮速率的调控存在临界值(25μg/L)。未来固氮过程研究在测定方法(如乙炔还原法与同位素示踪法)和计量单位(面积/体积单位)等方面亟需标准化以提高研究结果的可比性。本研究总结了淡水湖泊固氮微生物研究过去30年热点与前沿的变化趋势,建议通过引入多样化的分析指标(酶活性、转录组)、标准化的分析流程和多指标融合的评价方法,继续拓宽对淡水湖泊固氮过程及其生态贡献的认识。

    Abstract:

    Nitrogen fixation is a vital process in biogeochemical cycles within ecosystems. While current research on nitrogen fixation in aquatic ecosystems has mainly focused on marine environments, studies on waters, such as lakes, have only recently begun. To understand current research hotspots and development trends regarding nitrogen-fixing microorganisms in freshwater lakes, this study examined literature on the topic from the Web of Science database. CiteSpace and VOSviewer were used to construct and analyze knowledge maps, revealing current research hotspots and future research trends in this field. Based on these findings, we conducted a literature integration analysis to outline the effects of nitrogen and phosphorus nutrients on nitrogen fixation rates in water and their underlying mechanisms. The results show that: (1) From 1992 to 2024, the number of publications and citations in the field of nitrogen-fixing microorganisms in global freshwater lakes has steadily increased. (2) National, author and institutional collaboration network analyses indicate that research on nitrogen-fixing microorganisms in freshwater lakes is an interdisciplinary field involving cooperation among multiple countries and institutions. (3)Cluster analysis reveals that research hotspots mainly focus on: nutrient control strategies under phosphorus limitation and their impact on cyanobacterial community succession; the analysis of nitrogen-fixing microbial diversity based on thenifH gene; and the functional characterization of this gene in the nitrogen cycle. The analysis also reveals long-term dynamic changes in phytoplankton community composition driven by environmental factors. (4) The results of the integration analysis indicate that: the geographical distribution of nitrogen fixation quantification studies is imbalanced. North America has established a comprehensive indicator system covering various water types. In contrast, Asia and South America focus on describing cyanobacterial biomass, while Europe primarily focuses on the dynamic changes of nitrogen and phosphorus, as well as the coupling relationship of the nitrogen fixation process. Research on nitrogen-fixing species mainly centres on the phylum Cyanobacteria (e.g.,Nostoc andDolichospermum), while other phyla such as Proteobacteria and Archaea are relatively scarce. Total phosphorus shows a significant positive correlation with nitrogen fixation rates, whereas total dissolved nitrogen, nitrate nitrogen and ammonium nitrogen show significant negative correlations. Non-linear segmented model fitting revealed a critical value of 25μg/L for total phosphorus in regulating nitrogen fixation rates in freshwater lakes. Future research on nitrogen fixation processes urgently requires standardised measurement methods (e.g., acetylene reduction and isotope tracing) and metric units (e.g., area/volume) to improve the comparability of research results. This study summarises changes in the research hotspots and frontiers of nitrogen-fixing microorganisms in freshwater lakes over the past 30 years, suggesting that our understanding of nitrogen fixation processes and their ecological contributions should continue to expand by incorporating diverse analytical indicators (e.g., enzyme activity and transcriptomics), standardized analytical procedures and multi-indicator fusion evaluation methods.

    参考文献
    相似文献
    引证文献
引用本文

杨予,朱先龙,徐润冰,邢鹏.淡水湖泊固氮微生物与固氮速率影响因素:文献计量与整合分析.湖泊科学,2026,38(2):465-481. Yang Yu, Zhu Xianlong, Xu Runbing, Xing Peng. Bibliometric and meta-analysis of nitrogen-fixing microbial communities and factors influencing nitrogen fixation rates in freshwater lakes. Journal of Lake Sciences,2026,38(2):465-481. DOI:10.18307/2026.0202

复制
相关视频

分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2025-02-28
  • 最后修改日期:2025-07-12
  • 录用日期:
  • 在线发布日期: 2026-03-05
  • 出版日期:
文章二维码
您是第    位访问者
地址:南京市江宁区麒麟街道创展路299号    邮政编码:211135
电话:025-86882041;86882040     传真:025-57714759     Email:jlakes@niglas.ac.cn
Copyright:中国科学院南京地理与湖泊研究所《湖泊科学》 版权所有:All Rights Reserved
技术支持:北京勤云科技发展有限公司

苏公网安备 32010202010073号

     苏ICP备09024011号-2