What evidence exists relating the impact of different grassland management practices to soil carbon in livestock systems? A systematic map protocol.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-01-01 Epub Date: 2024-08-24 DOI:10.1186/s13750-024-00345-2
Camille Rousset, Carmen Segura, Anina Gilgen, Marta Alfaro, Luís André Mendes, Mike Dodd, Batnyambuu Dashpurev, Mike Bastidas, Julian Rivera, Lutz Merbold, Eduardo Vázquez
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Abstract

Background: Grasslands are essential for providing vital resources in the livestock sector and delivering invaluable ecosystem services such as biodiversity and soil carbon (C) sequestration. Despite their critical importance, these ecosystems face escalating threats from human disturbances, human degradation, and climate change, compromising their ability to effectively stock C. Restoring degraded grasslands emerges as a pragmatic and cost-effective approach to tackling climate change. However, the successful implementation of grassland management toward this goal, faces significant challenges. A systematic mapping approach will help to compile a comprehensive global inventory of studies investigating the impact of differing grassland management practices on soil carbon. In addition, the potential for trade-offs with other greenhouse gas emissions further underlines the value of a systematic assessment. This approach aims to identify knowledge clusters (i.e., well-represented subtopics that are amenable to full synthesis) for potential systematic reviews and pinpoint knowledge gaps requiring further primary research efforts, all contributing to a better understanding of the evidence surrounding this topic.

Methods: Following systematic evidence synthesis standards, we developed the question to address in the systematic map protocol using the PICO framework. We established a preliminary search string by combining search terms for the Population (Grasslands), Intervention (management) and Outcome (soil carbon) categories, as well as with one additional group (Study types-to focus on farm and field experiments). We will conduct a comprehensive literature search of relevant peer-reviewed and grey literature using Web of Science, Scopus, CABI platforms, Google Scholar, and specialised websites (e.g., Agrotrop). Searches will be conducted in the English, Spanish, Portuguese, French, German, and Mongolian languages, as per the linguistic capabilities of the research team. The comprehensiveness of the search will be assessed by comparing the literature collected to a test-list of forty 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 organised into four complementary sections (article information, PICO categories, study characteristics, measurable parameters), on which we will perform queries to produce the tables, figures and evidence maps that will compose the systematic map. The results will identify and describe knowledge gaps and clusters.

Supplementary information: The online version contains supplementary material available at 10.1186/s13750-024-00345-2.

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在畜牧业系统中,不同草地管理方法对土壤碳的影响有哪些证据?系统地图协议。
背景:草地对于为畜牧业提供重要资源以及提供宝贵的生态系统服务(如生物多样性和土壤固碳)至关重要。尽管这些生态系统至关重要,但它们却面临着来自人类干扰、人类退化和气候变化的不断升级的威胁,从而损害了它们有效储存碳的能力。恢复退化的草地是应对气候变化的一种务实且具有成本效益的方法。然而,为实现这一目标而成功实施草原管理面临着巨大挑战。系统的绘图方法将有助于编制一份全面的全球研究清单,调查不同草原管理方法对土壤碳的影响。此外,与其他温室气体排放权衡的可能性也进一步凸显了系统评估的价值。这种方法旨在为潜在的系统性综述确定知识集群(即可进行全面综合的、代表性强的子课题),并指出需要进一步开展初级研究的知识差距,所有这些都有助于更好地了解与该主题相关的证据:按照系统证据综合标准,我们使用 PICO 框架制定了系统地图协议中要解决的问题。我们结合人群(草地)、干预(管理)和结果(土壤碳)类别的检索词以及另外一组检索词(研究类型--侧重于农场和田间试验),建立了初步的检索字符串。我们将利用 Web of Science、Scopus、CABI 平台、Google Scholar 和专业网站(如 Agrotrop)对相关的同行评审文献和灰色文献进行全面检索。将根据研究小组的语言能力,使用英语、西班牙语、葡萄牙语、法语、德语和蒙古语进行检索。将把收集到的文献与一份包含 40 篇相关文章的测试清单进行比较,以评估搜索的全面性。文献筛选过程的可重复性将通过纳入/排除标准清单和审稿人之间的一致性统计检验来确保。数据提取将分为四个互补部分(文章信息、PICO 类别、研究特点、可测量参数),我们将对这四个部分进行查询,以生成构成系统图的表格、图表和证据图。结果将确定并描述知识差距和知识集群:在线版本包含补充材料,可查阅 10.1186/s13750-024-00345-2。
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4.30%
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