Biodiversity promotes tree growth during succession in subtropical forest.

Martin Barrufol, Bernhard Schmid, Helge Bruelheide, Xiulian Chi, Andrew Hector, Keping Ma, Stefan Michalski, Zhiyao Tang, Pascal A Niklaus
Author Information
  1. Martin Barrufol: Institute of Evolutionary Biology and Environmental Studies, University of Zurich,Zürich, Switzerland.

Abstract

Losses of plant species diversity can affect ecosystem functioning, with decreased primary productivity being the most frequently reported effect in experimental plant assemblages, including tree plantations. Less is known about the role of biodiversity in natural ecosystems, including forests, despite their importance for global biogeochemical cycling and climate. In general, experimental manipulations of tree diversity will take decades to yield final results. To date, biodiversity effects in natural forests therefore have only been reported from sample surveys or meta-analyses with plots not initially selected for diversity. We studied biomass and growth of subtropical forests stands in southeastern China. Taking advantage of variation in species recruitment during secondary succession, we adopted a comparative study design selecting forest plots to span a gradient in species richness. We repeatedly censored the stem diameter of two tree size cohorts, comprising 93 species belonging to 57 genera and 33 families. Tree size and growth were analyzed in dependence of species richness, the functional diversity of growth-related traits, and phylogenetic diversity, using both general linear and structural equation modeling. Successional age covaried with diversity, but differently so in the two size cohorts. Plot-level stem basal area and growth were positively related with species richness, while growth was negatively related to successional age. The productivity increase in species-rich, functionally and phylogenetically diverse plots was driven by both larger mean sizes and larger numbers of trees. The biodiversity effects we report exceed those from experimental studies, sample surveys and meta-analyses, suggesting that subtropical tree diversity is an important driver of forest productivity and re-growth after disturbance that supports the provision of ecological services by these ecosystems.

References

  1. Ecol Lett. 2010 Sep;13(9):1085-93 [PMID: 20576030]
  2. Science. 2000 Mar 10;287(5459):1770-4 [PMID: 10710299]
  3. Science. 2008 Jan 11;319(5860):169-72 [PMID: 18048654]
  4. Ecology. 2009 Mar;90(3):663-74 [PMID: 19341137]
  5. Am J Bot. 2011 Mar;98(3):572-92 [PMID: 21613148]
  6. Ecol Lett. 2006 Jun;9(6):741-58 [PMID: 16706917]
  7. Proc Natl Acad Sci U S A. 2008 Apr 22;105(16):6087-90 [PMID: 18427124]
  8. Science. 1994 Jan 14;263(5144):185-90 [PMID: 17839174]
  9. Science. 2011 Sep 23;333(6050):1750-3 [PMID: 21940895]
  10. Trends Ecol Evol. 1995 Jan;10(1):18-22 [PMID: 21236939]
  11. PLoS One. 2012;7(4):e35742 [PMID: 22539999]
  12. Ecol Lett. 2009 Apr;12(4):351-66 [PMID: 19243406]
  13. Nature. 2012 May 02;486(7401):105-8 [PMID: 22678289]
  14. Ecol Lett. 2006 Oct;9(10):1146-56 [PMID: 16972878]
  15. PLoS One. 2013;8(2):e53530 [PMID: 23437038]
  16. Ecology. 2006 Jun;87(6):1387-98 [PMID: 16869413]
  17. Nature. 2002 Mar 28;416(6879):427-30 [PMID: 11919631]
  18. Proc Natl Acad Sci U S A. 2007 Apr 17;104(16):6550-5 [PMID: 17420463]

MeSH Term

Biodiversity
China
Climate
Ecosystem
Trees
Tropical Climate

Word Cloud

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