Apriyani Via, Holle Mukhlish Jm, Mumbunan Sonny
Center for Climate and Sustainable Finance (CCSF), Institute for Sustainable Earth and Resources, University of Indonesia, Depok, Indonesia.
Department of Tropical Biology, Faculty of Biology, Gadjah Mada University, Yogyakarta, Indonesia.
Environ Evid. 2024 Jun 2;13(1):17. doi: 10.1186/s13750-024-00339-0.
The tropical rainforest biome plays a significant role in providing habitats for terrestrial biodiversity and delivering ecosystem service values, contributing to agricultural production. However, the increasing demand for tropical commodities with high economic value threatens this humid ecosystem and its biodiversity. To our knowledge, no studies have systematically mapped the relationship between the impacts of agricultural production on biodiversity and the effects of biodiversity on agricultural production in tropical rainforest areas.
Since we were interested in systematically mapping the evidence measuring the impact of tropical agriculture on biodiversity (Map 1), and the vice versa relations, the influence of biodiversity on tropical agriculture production (Map 2), we developed a respective set of search strings, eligibility criteria, and subsequently performed independent searching, screening, and data coding processes. We searched articles from six peer-reviewed databases and 22 gray literature sources. Articles were screened based on the inclusion criteria at the title, abstract, and full-text levels. Individual articles that passed full-text screening were coded and synthesized to create heatmaps. Selected information of interest was also extracted and visualized in the graphics which were clustered based on the year of publication, geographical distribution, type of rainforest, exposure, outcome, farm commodity, and study comparators.
Two heatmaps were generated from a contrasting number of references, with heatmap 1 extracted from 222 studies and heatmap 2 derived from 10 times fewer references (n = 20). In heatmap 1, impacts of land conversion to aboveground biodiversity and wild species and ecosystem functions in natural ecosystems were the most common relationships examined, with 115 articles and 62 articles, respectively. Conversely, heatmap 2 showed evidence that focused predominantly on the examination of the links between the impacts of genetic resource diversity on environmental factors and soil management in tropical agricultural production, with four articles each exploring these relations.
These systematic maps reveal that while studies investigating the impacts of tropical agricultural production on biodiversity were abundant, studies examining the impacts of biodiversity on tropical agricultural production were lacking despite both systematic maps experiencing an increasing trend of publication during 2000-2020. Map 1 emphasized the examination of the effects of land conversion on aboveground biodiversity, and on wild species and ecosystem functions. Map 2 highlighted the influence of crop genetic resources on environmental factors, and on soil management as the most frequently studied. The evidence cluster identified here can be the starting point for further systematic review study (to assess, for example, their cause-effect significance).
热带雨林生物群落在为陆地生物多样性提供栖息地和提供生态系统服务价值、促进农业生产方面发挥着重要作用。然而,对具有高经济价值的热带商品需求的不断增加,正威胁着这片湿润的生态系统及其生物多样性。据我们所知,尚无研究系统地绘制热带雨林地区农业生产对生物多样性的影响与生物多样性对农业生产的影响之间的关系。
由于我们有兴趣系统地梳理衡量热带农业对生物多样性影响的证据(图1),以及反之的关系,即生物多样性对热带农业生产的影响(图2),我们制定了各自的搜索词集、纳入标准,随后进行了独立的搜索、筛选和数据编码过程。我们从六个同行评审数据库和22个灰色文献来源中搜索文章。文章根据标题、摘要和全文层面的纳入标准进行筛选。对通过全文筛选的单篇文章进行编码和综合,以创建热图。还提取了选定的感兴趣信息并在图表中进行可视化展示,这些图表根据发表年份、地理分布、雨林类型、暴露因素、结果、农场商品和研究对照进行了聚类。
从数量对比鲜明的参考文献中生成了两张热图,图1从222项研究中提取,图2的参考文献数量则少了10倍(n = 20)。在图1中,土地转化对自然生态系统中地上生物多样性、野生物种和生态系统功能的影响是研究最多的常见关系,分别有115篇和62篇文章。相反,图2显示的证据主要集中在研究遗传资源多样性对热带农业生产中的环境因素和土壤管理的影响,各有四篇文章探讨了这些关系。
这些系统图表明,虽然研究热带农业生产对生物多样性影响的研究很多,但研究生物多样性对热带农业生产影响的研究却很缺乏,尽管这两张系统图在2000 - 2020年期间的发表趋势都呈上升趋势。图1强调了土地转化对地上生物多样性、野生物种和生态系统功能的影响。图2突出了作物遗传资源对环境因素和土壤管理的影响,这是研究最频繁的方面。这里确定的证据集群可以作为进一步系统综述研究的起点(例如评估它们的因果意义)。