Meta‐analysis reveals that the effects of precipitation change on soil and litter fauna in forests depend on body size

降水 丰度(生态学) 物种丰富度 生态学 环境科学 垃圾箱 气候变化 动物群 土壤生物学 土壤动物 生态系统 土壤水分 生物 地理 气象学
作者
Philip A. Martin,Leonora Fisher,Leticia Pérez‐Izquierdo,Charlotte Biryol,Bertrand Guenet,Sebastiaan Luyssaert,Stefano Manzoni,Claire Ménival,Mathieu Santonja,Rebecca Spake,Jan C. Axmacher,Jorge Curiel Yuste
出处
期刊:Global Change Biology [Wiley]
卷期号:30 (5): e17305-e17305 被引量:28
标识
DOI:10.1111/gcb.17305
摘要

Anthropogenic climate change is altering precipitation regimes at a global scale. While precipitation changes have been linked to changes in the abundance and diversity of soil and litter invertebrate fauna in forests, general trends have remained elusive due to mixed results from primary studies. We used a meta-analysis based on 430 comparisons from 38 primary studies to address associated knowledge gaps, (i) quantifying impacts of precipitation change on forest soil and litter fauna abundance and diversity, (ii) exploring reasons for variation in impacts and (iii) examining biases affecting the realism and accuracy of experimental studies. Precipitation reductions led to a decrease of 39% in soil and litter fauna abundance, with a 35% increase in abundance under precipitation increases, while diversity impacts were smaller. A statistical model containing an interaction between body size and the magnitude of precipitation change showed that mesofauna (e.g. mites, collembola) responded most to changes in precipitation. Changes in taxonomic richness were related solely to the magnitude of precipitation change. Our results suggest that body size is related to the ability of a taxon to survive under drought conditions, or to benefit from high precipitation. We also found that most experiments manipulated precipitation in a way that aligns better with predicted extreme climatic events than with predicted average annual changes in precipitation and that the experimental plots used in experiments were likely too small to accurately capture changes for mobile taxa. The relationship between body size and response to precipitation found here has far-reaching implications for our ability to predict future responses of soil biodiversity to climate change and will help to produce more realistic mechanistic soil models which aim to simulate the responses of soils to global change.
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