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关于欧洲主要低地作物和草地管理实践对生物多样性指示物种组的影响,有哪些证据?一项系统综述方案。

What evidence exists on the effect of the main European lowland crop and grassland management practices on biodiversity indicator species groups? A systematic map protocol.

作者信息

Séchaud Robin, Van der Meer Markus, Fabian Yvonne, Jeanneret Philippe

机构信息

Agroecology and Environment, Agroscope, Reckenholzstrasse 191, CH-8046, Zurich, Switzerland.

出版信息

Environ Evid. 2022 Aug 25;11(1):27. doi: 10.1186/s13750-022-00280-0.

Abstract

BACKGROUND

The intensification of the agricultural practices in Europe over the last decades has drastically transformed the agroecosystems. The simplification of the landscape, the loss of semi-natural habitats and the application of chemicals on crops are known to have led to biodiversity decline in agricultural landscapes, raising substantial concerns about the loss of essential ecosystem services, such as pollination or pest control. Depending on the location, the scale and the regional context, different indicator species groups (ISGs) are often surveyed to assess the state and trend of biodiversity changes in agroecosystems. Although the high diversity of these ISGs allows a broad overview of the biodiversity, it complicates the interpretation of the results and thus their application. In addition, species diversity metrics are various, from simple species counts to more complex measurements of diversity indices, sometimes with antagonistic responses. Here, to meet the pressing need for synthesis in this complex topic, we will follow a standardized systematic map protocol to collect and summarize the literature reporting the effects of the main European lowland agricultural management practices (AMPs) on a set of ISGs.

METHODS

Following the systematic evidence synthesis standards, we developed the question to address in the systematic map using the PICO framework. We established a preliminary search string by combining search terms for the categories Population (ISGs), Intervention (AMPs) and Outcome (species diversity), as well as with two additional groups (Environment-to focus on lowland crop and grassland-and Location-to restrict the study area to Europe). We will conduct a comprehensive literature search of relevant peer-reviewed and grey literature using Web of Science and CABI platforms, Google Scholar, specialized websites and through our professional collaborator network. The comprehensiveness of the search will be assessed by comparing the literature collected to a test-list of ninety relevant articles. The repeatability of the literature screening process will be ensured by a list of inclusion/exclusion criteria and inter-reviewer consistency statistical tests. Data extraction will be organized in three complementary tables (article references, study characteristics, species diversity), on which we will perform queries to produce the tables, figures and maps that will compose the systematic map.

摘要

背景

在过去几十年里,欧洲农业实践的强化极大地改变了农业生态系统。景观的简化、半自然栖息地的丧失以及化学物质在农作物上的施用,已知会导致农业景观中的生物多样性下降,引发了人们对授粉或害虫控制等基本生态系统服务丧失的严重担忧。根据地点、规模和区域背景的不同,人们经常会调查不同的指示物种组(ISGs),以评估农业生态系统中生物多样性变化的现状和趋势。尽管这些指示物种组具有高度多样性,能够对生物多样性进行广泛概述,但这也使得结果的解读以及结果的应用变得复杂。此外,物种多样性指标多种多样,从简单的物种计数到更复杂的多样性指数测量,有时还会出现相互矛盾的反应。在此,为满足对这一复杂主题进行综合研究的迫切需求,我们将遵循标准化的系统地图协议,收集并总结报告欧洲主要低地农业管理实践(AMPs)对一组指示物种组影响的文献。

方法

遵循系统证据综合标准,我们使用PICO框架制定了系统地图中要解决的问题。我们通过组合人口(指示物种组)、干预(农业管理实践)和结果(物种多样性)类别的搜索词,以及另外两个组(环境——关注低地作物和草地——和地点——将研究区域限制在欧洲),建立了一个初步搜索字符串。我们将使用科学网和CABI平台、谷歌学术、专业网站,并通过我们的专业合作网络,对相关的同行评审文献和灰色文献进行全面的文献搜索。将通过把收集到的文献与90篇相关文章的测试列表进行比较,来评估搜索的全面性。文献筛选过程的可重复性将通过纳入/排除标准列表和评审员间一致性统计测试来确保。数据提取将整理在三个互补的表格(文章参考文献、研究特征、物种多样性)中,我们将在这些表格上进行查询,以生成构成系统地图的表格、图表和地图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bba2/11378791/6ce55fa66ed9/13750_2022_280_Fig1_HTML.jpg

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