Restoration promotes ecological functioning through greater complementarity

Author:

Rummell Ashley J.1ORCID,Borland Hayden P.1,Hazell Jackson J.1,Mosman Jesse D.1,Henderson Christopher J.1,Leon Javier X.1,Gilby Ben L.2ORCID,Olds Andrew D.1

Affiliation:

1. School of Science, Technology and Engineering University of the Sunshine Coast Maroochydore DC, QLD 4558 Australia

2. School of Science, Technology and Engineering University of the Sunshine Coast Petrie, QLD 4502 Australia

Abstract

Restoration projects are increasingly widespread and many promote habitat succession and the diversity and abundance of faunal communities. These positive effects on biodiversity and abundance may extend to enhancing the ecological functioning and resilience of previously degraded ecosystems, but this is rarely quantified. This study surveyed a 200‐ha restoring coastal wetland and three control wetlands in the Maroochy River, eastern Australia to compare the effects of wetland restoration on the consumption of carrion and the biodiversity, abundance, and functional diversity of functionally important fish and crustaceans. Carrion consumption by fish and crustaceans was measured every 6 months from spring 2017 until spring 2021 for nine events using a combination of baited cameras and scavenging assays. We found restoration improved rates of carrion consumption and the biodiversity, functional diversity, and abundance of scavenger species. Despite positive effects on the diversity of scavengers and carrion consumption, the abundance of two species, longfin eels (Anguilla reinhardtii) and mud crabs (Scylla serrata), was the most important predictors of carrion consumption rates. The spatial distribution of carrion consumption was concentrated in areas with high saltmarsh extent, moderate to high mangrove extent, and high salinity, which also resembled the distribution of both longfin eels and mud crabs. We show that restoration can promote the rates of key ecological functions but that increases to functions are likely to be characterized by low functional redundancy and greater complementarity. Therefore, maintaining or increasing the abundance of functionally important species should become a key objective in future restoration projects.

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

Reference116 articles.

1. Biology and Ecology of Anguillid Eels

2. BartonK(2019) MuMIN: Multi‐model inference. In: R package version 1.47.5 R archive network (CRAN) Vienna Austria

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