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Biotic interactions, community assembly, and eco-evolutionary dynamics as drivers of long-term biodiversity–ecosystem functioning relationships

机译:生物互动,社区大会和生态进化动态作为长期生物多样性 - 生态系统运作关系的驱动因素

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The functioning and service provisioning of ecosystems in the face of anthropogenic environmental and biodiversity change is a cornerstone of ecological research. The last three decades of biodiversity–ecosystem functioning (BEF) research have provided compelling evidence for the significant positive role of biodiversity in the functioning of many ecosystems. Despite broad consensus of this relationship, the underlying ecological and evolutionary mechanisms have not been well understood. This complicates the transition from a description of patterns to a predictive science. The proposed Research Unit aims at filling this gap of knowledge by applying novel experimental and analytical approaches in one of the longest-running biodiversity experiments in the world: the Jena Experiment. The central aim of the Research Unit is to uncover the mechanisms that determine BEF relationships in the short- and in the long-term. Increasing BEF relationships with time in long-term experiments do not only call for a paradigm shift in the appreciation of the relevance of biodiversity change, they likely are key to understanding the mechanisms of BEF relationships in general. The subprojects of the proposed Research Unit fall into two tightly linked main categories with two research areas each that aim at exploring variation in community assembly processes and resulting differences in biotic interactions as determinants of the long-term BEF relationship. Subprojects under “Microbial community assembly” and “Assembly and functions of animal communities” mostly focus on plant diversity effects on the assembly of communities and their feedback effects on biotic interactions and ecosystem functions. Subprojects under “Mediators of plant-biotic interactions” and “Intraspecific diversity and micro-evolutionary changes” mostly focus on plant diversity effects on plant trait expression and micro-evolutionary adaptation, and subsequent feedback effects on biotic interactions and ecosystem functions. This unification of evolutionary and ecosystem processes requires collaboration across the proposed subprojects in targeted plant and soil history experiments using cutting-edge technology and will produce significant synergies and novel mechanistic insights into BEF relationships. The Research Unit of the Jena Experiment is uniquely positioned in this context by taking an interdisciplinary and integrative approach to capture whole-ecosystem responses to changes in biodiversity and to advance a vibrant research field.
机译:面对人为环境和生物多样性变化面临生态系统的运作和服务供应是生态研究的基石。最后三十年的生物多样性 - 生态系统运作(BEF)研究已经为生物多样性在许多生态系统的运作中提供了令人信服的证据。尽管对这种关系共识,但潜在的生态和进化机制尚未得到很好的理解。这使得从模式的描述转变为预测科学。拟议的研究单位旨在通过在世界上最长运行的生物多样性实验之一中应用新的实验和分析方法来填补这种知识差距:耶拿实验。研究单位的核心目标是揭示在短期和长期内决定BEF关系的机制。在长期实验中随着时间的推移,增加BEF关系,不仅呼吁在欣赏生物多样性变化的相关性方面,他们可能是了解一般情况的BEF关系机制的关键。拟议的研究单位的子项目分为两个紧密联系的主要类别,其中两个研究领域,每个研究领域都旨在探索社区组装过程的变化,并导致生物相互作用的差异作为长期BEF关系的决定因素。 “微生物社区组装”下的子项目和“动物社区的装配和功能”主要关注对社区组装的植物多样性及其对生物相互作用和生态系统功能的反馈效果。 “植物 - 生物相互作用的介质”下的副作志和“有内径多样性和微进化变化”主要关注植物性质表达和微进化适应的植物分集,以及对生物相互作用和生态系统功能的后续反馈效果。这种进化和生态系统过程的统一需要使用尖端技术在拟议的植物和土壤历史实验中进行合作,并将产生显着的协同作用和新的机制见解。耶拿实验的研究单位通过采取跨学科和综合方法来捕获整个生态系统对生物多样性的变化以及推进充满活力的研究领域的整个生态系统响应。

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