Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary Watershed

Increasing temperatures and wildfire incidence and decreasing precipitation and river runoff in southern Africa are predicted to have a variety of impacts on the ecology, structure, and function of semi-arid savannas, which provide innumerable livelihood resources for millions of people. This paper...

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Main Authors: Narcisa G. Pricope, Andrea E. Gaughan, John D. All, Michael W. Binford, Lucas P. Rutina
Format: Article
Language:English
Published: MDPI AG 2015-07-01
Series:Land
Subjects:
Online Access:http://www.mdpi.com/2073-445X/4/3/627
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spelling doaj-92afe393da604f6399d0aefa4d36e80f2020-11-24T22:16:54ZengMDPI AGLand2073-445X2015-07-014362765510.3390/land4030627land4030627Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary WatershedNarcisa G. Pricope0Andrea E. Gaughan1John D. All2Michael W. Binford3Lucas P. Rutina4Department of Geography and Geology, University of North Carolina Wilmington, 601 S College Rd., Wilmington, NC 28403, USADepartment of Geography and Geosciences, University of Louisville, 213 Lutz Hall, Louisville, KY 40205, USADepartment of Geography and Geology, Western Kentucky University, 1906 College Heights Blvd., Bowling Green, KY 42101, USADepartment of Geography, University of Florida, 3141 Turlington Hall, P.O. Box 11731, Gainesville, FL 32611, USAWildlife Ecology and Management, Okavango Research Institute, University of Botswana, P/Bag 285 Shorobe Road Sexaxa Maun, BotswanaIncreasing temperatures and wildfire incidence and decreasing precipitation and river runoff in southern Africa are predicted to have a variety of impacts on the ecology, structure, and function of semi-arid savannas, which provide innumerable livelihood resources for millions of people. This paper builds on previous research that documents change in inundation and fire regimes in the Chobe River Basin (CRB) in Namibia and Botswana and proposes to demonstrate a methodology that can be applied to disentangle the effect of environmental variability from land management decisions on changing and ecologically sensitive savanna ecosystems in transboundary contexts. We characterized the temporal dynamics (1985–2010) of vegetation productivity for the CRB using proxies of vegetation productivity and examine the relative importance of shifts in flooding and fire patterns to vegetation dynamics and effects of the association of phases of the El Niño—Southern Oscillation (ENSO) on vegetation greenness. Our results indicate that vegetation in these semi-arid environments is highly responsive to climatic fluctuations and the long-term trend is one of increased but heterogeneous vegetation cover. The increased cover and heterogeneity during the growing season is especially noted in communally-managed areas of Botswana where long-term fire suppression has been instituted, in contrast to communal areas in Namibia where heterogeneity in vegetation cover is mostly increasing primarily outside of the growing season and may correspond to mosaic early dry season burns. Observed patterns of increased vegetation productivity and heterogeneity may relate to more frequent and intense burning and higher spatial variability in surface water availability from both precipitation and regional inundation patterns, with implications for global environmental change and adaptation in subsistence-based communities.http://www.mdpi.com/2073-445X/4/3/627vegetation dynamicssouthern Africaclimate changeremote sensingsavannashuman-environment interactions
collection DOAJ
language English
format Article
sources DOAJ
author Narcisa G. Pricope
Andrea E. Gaughan
John D. All
Michael W. Binford
Lucas P. Rutina
spellingShingle Narcisa G. Pricope
Andrea E. Gaughan
John D. All
Michael W. Binford
Lucas P. Rutina
Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary Watershed
Land
vegetation dynamics
southern Africa
climate change
remote sensing
savannas
human-environment interactions
author_facet Narcisa G. Pricope
Andrea E. Gaughan
John D. All
Michael W. Binford
Lucas P. Rutina
author_sort Narcisa G. Pricope
title Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary Watershed
title_short Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary Watershed
title_full Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary Watershed
title_fullStr Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary Watershed
title_full_unstemmed Spatio-Temporal Analysis of Vegetation Dynamics in Relation to Shifting Inundation and Fire Regimes: Disentangling Environmental Variability from Land Management Decisions in a Southern African Transboundary Watershed
title_sort spatio-temporal analysis of vegetation dynamics in relation to shifting inundation and fire regimes: disentangling environmental variability from land management decisions in a southern african transboundary watershed
publisher MDPI AG
series Land
issn 2073-445X
publishDate 2015-07-01
description Increasing temperatures and wildfire incidence and decreasing precipitation and river runoff in southern Africa are predicted to have a variety of impacts on the ecology, structure, and function of semi-arid savannas, which provide innumerable livelihood resources for millions of people. This paper builds on previous research that documents change in inundation and fire regimes in the Chobe River Basin (CRB) in Namibia and Botswana and proposes to demonstrate a methodology that can be applied to disentangle the effect of environmental variability from land management decisions on changing and ecologically sensitive savanna ecosystems in transboundary contexts. We characterized the temporal dynamics (1985–2010) of vegetation productivity for the CRB using proxies of vegetation productivity and examine the relative importance of shifts in flooding and fire patterns to vegetation dynamics and effects of the association of phases of the El Niño—Southern Oscillation (ENSO) on vegetation greenness. Our results indicate that vegetation in these semi-arid environments is highly responsive to climatic fluctuations and the long-term trend is one of increased but heterogeneous vegetation cover. The increased cover and heterogeneity during the growing season is especially noted in communally-managed areas of Botswana where long-term fire suppression has been instituted, in contrast to communal areas in Namibia where heterogeneity in vegetation cover is mostly increasing primarily outside of the growing season and may correspond to mosaic early dry season burns. Observed patterns of increased vegetation productivity and heterogeneity may relate to more frequent and intense burning and higher spatial variability in surface water availability from both precipitation and regional inundation patterns, with implications for global environmental change and adaptation in subsistence-based communities.
topic vegetation dynamics
southern Africa
climate change
remote sensing
savannas
human-environment interactions
url http://www.mdpi.com/2073-445X/4/3/627
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