Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.

Grasslands are threatened globally due to the expansion of woody plants. The few remaining headwater streams within tallgrass prairies are becoming more like typical forested streams due to rapid conversion of riparian zones from grassy to wooded. Forestation can alter stream hydrology and biogeoche...

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Main Authors: Allison M Veach, Walter K Dodds, Adam Skibbe
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4156405?pdf=render
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spelling doaj-a1305857d0d94168bab24c5e9fc48dcc2020-11-25T01:24:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0199e10692210.1371/journal.pone.0106922Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.Allison M VeachWalter K DoddsAdam SkibbeGrasslands are threatened globally due to the expansion of woody plants. The few remaining headwater streams within tallgrass prairies are becoming more like typical forested streams due to rapid conversion of riparian zones from grassy to wooded. Forestation can alter stream hydrology and biogeochemistry. We estimated the rate of riparian woody plant expansion within a 30 m buffer zone surrounding the stream bed across whole watersheds at Konza Prairie Biological Station over 25 years from aerial photographs. Watersheds varied with respect to experimentally-controlled fire and bison grazing. Fire frequency, presence or absence of grazing bison, and the historical presence of woody vegetation prior to the study time period (a proxy for proximity of propagule sources) were used as independent variables to predict the rate of riparian woody plant expansion between 1985 and 2010. Water yield was estimated across these years for a subset of watersheds. Riparian woody encroachment rates increased as burning became less frequent than every two years. However, a higher fire frequency (1-2 years) did not reverse riparian woody encroachment regardless of whether woody vegetation was present or not before burning regimes were initiated. Although riparian woody vegetation cover increased over time, annual total precipitation and average annual temperature were variable. So, water yield over 4 watersheds under differing burn frequencies was quite variable and with no statistically significant detected temporal trends. Overall, burning regimes with a frequency of every 1-2 years will slow the conversion of tallgrass prairie stream ecosystems to forested ones, yet over long time periods, riparian woody plant encroachment may not be prevented by fire alone, regardless of fire frequency.http://europepmc.org/articles/PMC4156405?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Allison M Veach
Walter K Dodds
Adam Skibbe
spellingShingle Allison M Veach
Walter K Dodds
Adam Skibbe
Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.
PLoS ONE
author_facet Allison M Veach
Walter K Dodds
Adam Skibbe
author_sort Allison M Veach
title Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.
title_short Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.
title_full Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.
title_fullStr Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.
title_full_unstemmed Fire and grazing influences on rates of riparian woody plant expansion along grassland streams.
title_sort fire and grazing influences on rates of riparian woody plant expansion along grassland streams.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Grasslands are threatened globally due to the expansion of woody plants. The few remaining headwater streams within tallgrass prairies are becoming more like typical forested streams due to rapid conversion of riparian zones from grassy to wooded. Forestation can alter stream hydrology and biogeochemistry. We estimated the rate of riparian woody plant expansion within a 30 m buffer zone surrounding the stream bed across whole watersheds at Konza Prairie Biological Station over 25 years from aerial photographs. Watersheds varied with respect to experimentally-controlled fire and bison grazing. Fire frequency, presence or absence of grazing bison, and the historical presence of woody vegetation prior to the study time period (a proxy for proximity of propagule sources) were used as independent variables to predict the rate of riparian woody plant expansion between 1985 and 2010. Water yield was estimated across these years for a subset of watersheds. Riparian woody encroachment rates increased as burning became less frequent than every two years. However, a higher fire frequency (1-2 years) did not reverse riparian woody encroachment regardless of whether woody vegetation was present or not before burning regimes were initiated. Although riparian woody vegetation cover increased over time, annual total precipitation and average annual temperature were variable. So, water yield over 4 watersheds under differing burn frequencies was quite variable and with no statistically significant detected temporal trends. Overall, burning regimes with a frequency of every 1-2 years will slow the conversion of tallgrass prairie stream ecosystems to forested ones, yet over long time periods, riparian woody plant encroachment may not be prevented by fire alone, regardless of fire frequency.
url http://europepmc.org/articles/PMC4156405?pdf=render
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