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Shifts in plant functional community composition under hydrological stress strongly decelerate litter decomposition

机译:水文胁迫下植物功能群落组成的变化极大地减缓了凋落物的分解

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摘要

Litter decomposition is a key process of nutrient and carbon cycling in terrestrial ecosystems. The decomposition process will likely be altered under ongoing climate change, both through direct effects on decomposer activity and through indirect effects caused by changes in litter quality. We studied how hydrological change indirectly affects decomposition via plant functional community restructuring caused by changes in plant species’ relative abundances (community‐weighted mean (CWM) traits and functional diversity). We further assessed how those indirect litter quality effects compare to direct effects. We set up a mesocosm experiment, in which sown grassland communities and natural turf pieces were subjected to different hydrological conditions (dryness and waterlogging) for two growing seasons. Species‐level mean traits were obtained from trait databases and combined with species’ relative abundances to assess functional community restructuring. We studied decomposition of mixed litter from these communities in a common “litterbed.” These indirect effects were compared to effects of different hydrological conditions on soil respiration and on decomposition of standard litter (direct effects). Dryness reduced biomass production in sown communities and natural turf pieces, while waterlogging only reduced biomass in sown communities. Hydrological stress caused profound shifts in species’ abundances and consequently in plant functional community composition. Hydrologically stressed communities had higher CMW leaf dry matter content, lower CMW leaf nitrogen content, and lower functional diversity. Lower CWM leaf N content and functional diversity were strongly related to slower decomposition. These indirect effects paralleled direct effects, but were larger and longer‐lasting. Species mean traits from trait databases had therefore considerable predictive power for decomposition. Our results show that stressful soil moisture conditions, that are likely to occur more frequently in the future, quickly shift species’ abundances. The resulting functional community restructuring will decelerate decomposition under hydrological stress.
机译:凋落物分解是陆地生态系统中养分和碳循环的关键过程。在持续的气候变化下,分解过程很可能会发生变化,既可能直接影响分解活动,也可能会由于垃圾质量变化而产生间接影响。我们研究了水文变化如何通过植物物种的相对丰度(社区加权均值(CWM)性状和功能多样性)变化而通过植物功能性群落重组间接影响分解。我们进一步评估了这些间接垃圾质量影响与直接影响的比较。我们建立了一个中观试验,其中播种的草地群落和天然草皮碎片在两个生长季节中经受了不同的水文条件(干燥和浸水)。从性状数据库获得物种水平的平均性状,并与物种的相对丰度相结合,以评估功能性群落的重组。我们研究了在常见的“乱抛垃圾”中来自这些社区的混合垃圾的分解。将这些间接影响与不同水文条件对土壤呼吸和标准凋落物分解的影响(直接影响)进行了比较。干燥减少了播种社区和天然草皮碎片的生物量生产,而涝渍仅减少了播种社区的生物量。水文压力导致物种丰度发生了深刻变化,进而导致植物功能群落组成发生变化。受水文压力的群落具有较高的CMW叶片干物质含量,较低的CMW叶片氮含量和较低的功能多样性。较低的CWM叶片氮含量和功能多样性与分解速度较慢密切相关。这些间接效应与直接效应相似,但更大,更持久。因此,来自特征数据库的物种平均特征具有相当大的分解预测能力。我们的结果表明,在未来可能更频繁发生的紧张的土壤水分条件会迅速改变物种的丰度。由此产生的功能性社区重组将在水文压力下加速分解。

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