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Biodiversity and ecosystem functioning in dynamic landscapes

机译:动态景观中的生物多样性和生态系统功能

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摘要

The relationship between biodiversity and ecosystem functioning (BEF) and its consequence for ecosystem services has predominantly been studied by controlled, short-term and small-scale experiments under standardized environmental conditions and constant community compositions. However, changes in biodiversity occur in real-world ecosystems with varying environments and a dynamic community composition. In this theme issue, we present novel research on BEF in such dynamic communities. The contributions are organized in three sections on BEF relationships in (i) multi-trophic diversity, (ii) non-equilibrium biodiversity under disturbance and varying environmental conditions, and (iii) large spatial and long temporal scales. The first section shows that multi-trophic BEF relationships often appear idiosyncratic, while accounting for species traits enables a predictive understanding. Future BEF research on complex communities needs to include ecological theory that is based on first principles of species-averaged body masses, stoichiometry and effects of environmental conditions such as temperature. The second section illustrates that disturbance and varying environments have direct as well as indirect (via changes in species richness, community composition and species' traits) effects on BEF relationships. Fluctuations in biodiversity (species richness, community composition and also trait dominance within species) can severely modify BEF relationships. The third section demonstrates that BEF at larger spatial scales is driven by different variables. While species richness per se and community biomass are most important, species identity effects and community composition are less important than at small scales. Across long temporal scales, mass extinctions represent severe changes in biodiversity with mixed effects on ecosystem functions. Together, the contributions of this theme issue identify new research frontiers and answer some open questions on BEF relationships in dynamic communities of real-world landscapes.
机译:生物多样性和生态系统功能(BEF)及其对生态系统服务的后果之间的关系主要是通过在标准化的环境条件和恒定的社区组成下进行的受控,短期和小规模试验研究的。然而,生物多样性的变化发生在具有变化环境和动态社区组成的现实世界生态系统中。在本主题中,我们介绍了在这种动态社区中对BEF的新颖研究。这些贡献分为三个部分,分别是(i)多营养多样性,(ii)在干扰和变化的环境条件下的非平衡生物多样性以及(iii)较大的时空尺度。第一部分显示,多营养性BEF关系通常看起来是特异的,而考虑物种性状则可以进行预测性理解。未来对复杂社区的BEF研究需要包括生态理论,该理论基于物种平均体重,化学计量和环境条件(例如温度)的影响的首要原理。第二部分说明干扰和变化的环境对BEF关系具有直接或间接的影响(通过物种丰富度,群落组成和物种特性的变化)。生物多样性的波动(物种丰富度,社区组成以及物种内的特征优势)会严重改变BEF关系。第三部分说明了更大空间尺度上的BEF是由不同变量驱动的。虽然物种丰富性本身和社区生物量是最重要的,但物种识别效应和社区组成却不如小规模重要。在较长的时间尺度上,大规模灭绝代表了生物多样性的严重变化,对生态系统功能产生了多种影响。总之,本主题的贡献确定了新的研究前沿,并回答了有关现实世界动态社区中BEF关系的一些开放性问题。

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