4.7 Article

Functional redundancy dampens the trophic cascade effect of a web-building spider in a tropical forest floor

Journal

SOIL BIOLOGY & BIOCHEMISTRY
Volume 98, Issue -, Pages 22-29

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.soilbio.2016.03.020

Keywords

Functional redundancy; Trophic cascade effect; Detritus-based food webs; Spiders; Tropical forest-floor; Litter decomposition

Categories

Funding

  1. Xishuangbanna Station for Tropical Rainforest Ecosystem Studies
  2. Central Laboratory of Xishuangbanna Tropical Botanical Garden
  3. National Science Foundation of China [41271278, 31500444]
  4. CAS 135 program [XTBG-T01]
  5. China Postdoctoral Science Foundation [2015M582434]

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The trophic cascade effect of predators on ecosystem functioning is generally believed to be less frequent and weaker in detritus-based than primary producer-based food webs, in part because of functional redundancy among soil fauna. Despite this view, no empirical studies have explicitly examined roles of different soil fauna within trophic levels in mediating cascading effects of predators in detritus food webs. Here we manipulated the density of a dominant funnel-web building spider Macrothele yunnanica in permanent plots (1 m(2)) for one year. Three spider treatments were applied: 0 spiders, 6 spiders (natural density) and 10 spiders (high density). We found that although changes in spider densities caused large shifts in litter-dwelling Collembola community composition on average, modifying spider densities did not generate a trophic cascade effect and alter litter decomposition in litter bags with coarse mesh (2 mm). Our data supports the hypothesis that functional redundancy among Collembola species may weaken the strength of spider-initiated cascading effects. Consequently, changes in Collembola diversity occupying the same trophic level may not significantly alter ecosystem function in tropical forest-floor ecosystems. (C) 2016 Published by Elsevier Ltd.

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