Soil conditions and phylogenetic relatedness influence total community trait space during early plant succession
Author(s) -
Werner Ulrich,
Marcin Piwczyński,
Markus Klemens Zaplata,
Susanne Winter,
Wolfgang Schaaf,
Anton Fischer
Publication year - 2013
Publication title -
journal of plant ecology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.718
H-Index - 38
eISSN - 1752-993X
pISSN - 1752-9921
DOI - 10.1093/jpe/rtt048
Subject(s) - ecological succession , species richness , trait , ecology , abiotic component , ecosystem , phylogenetic diversity , biology , plant community , phylogenetic tree , computer science , programming language , gene , biochemistry
Aims The total space of traits covered by the members of plant communities is an important parameter of ecosystem functioning and complexity. We trace the variability of trait space during early plant succession and ask how trait space co-varies with phylogenetic community structure and soil conditions. Particularly, we are inter ested in the small-scale variability in trait space and the influence of biotic and abiotic filters. Methods We use data on species richness and soil conditions from the first 7 years of initial succession of an artificial catchment in north-eastern Germany. Total functional attribute diversity serves as a proxy to total trait space. Important Findings Total trait space steadily increased during succession. We observed high small-scale variability in total trait space that was positively cor related with species richness and phylogenetic segregation and negatively correlated with total plant cover. Trait space increased with soil carbonate content, while pH and the fraction of sandy material behaved indifferently. Our results indicate that during early succession, habitat filtering processes gain importance leading to a lesser increase in trait space than expected from the increase in species richness alone.
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