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Initial response of riparian plant community structure to clearing of invasive alien plants in Kruger National Park, South Africa

Authors :
T.L. Morris
Julie A. Coetzee
Ed T.F. Witkowski
Source :
South African Journal of Botany. 74:485-494
Publication Year :
2008
Publisher :
Elsevier BV, 2008.

Abstract

Recovery of indigenous species subsequent to the clearing of invasive alien plants (IAPs) is crucial for ecosystem recovery to occur. However, cleared sites are often just left in the hope that revegetation will occur naturally. In riparian areas of Kruger National Park (KNP), the Working for Water (WfW) Programme has cleared IAPs on a regular basis, but little post-clearance monitoring has taken place. Thus investigating short-term effects of IAPs and IAP clearing on plant community diversity and vegetation recovery provided an ideal opportunity to assess feasible targets of natural ecosystem recovery in similar areas. Vegetation was sampled from twelve transects along the Sabie River in and adjacent to the KNP, before (March/April 2006) and after (March 2007) the annual clearing of IAPs by WfW. Rarefied species richness, alpha diversity and evenness of distribution of species all declined with increasing density of IAPs (Pb 0.05). There was a mean reduction in IAP density of 80% (S.E ± 6%) (P = 0.002) through the clearing by WfW. After clearing of IAPs, indigenous vegetation densities increased, with herbaceous growth forms showing the largest increase in transects that were previously heavily invaded. Thus, in this system, which is relatively undisturbed by human activities, initial recovery of indigenous vegetation can occur without further restorative interventions. This process is more than likely aided by the continuous clearing of IAPs by WfW as this acts to deplete alien seed banks and maintain IAPs at acceptable and manageable levels. © 2008 SAAB. Published by Elsevier B.V. All rights reserved.

Details

ISSN :
02546299
Volume :
74
Database :
OpenAIRE
Journal :
South African Journal of Botany
Accession number :
edsair.doi.dedup.....ac60f887f32814f6e3733dc37486c5bb