Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms

<p>We explore how the ground flora of a temperate woodland (Wytham Woods, southern England) changed in terms of species-richness, cover and biomass over five decades; what the drivers of change were; and possible future change as a consequence of the decline in&nbsp;<em>Fraxinus exce...

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Váldodahkkit: Kirby, KJ, Bazely, DR, Goldberg, EA, Hall, JE, Isted, R, Perry, SC, Thomas, RC
Materiálatiipa: Journal article
Giella:English
Almmustuhtton: Elsevier 2021
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author Kirby, KJ
Bazely, DR
Goldberg, EA
Hall, JE
Isted, R
Perry, SC
Thomas, RC
author_facet Kirby, KJ
Bazely, DR
Goldberg, EA
Hall, JE
Isted, R
Perry, SC
Thomas, RC
author_sort Kirby, KJ
collection OXFORD
description <p>We explore how the ground flora of a temperate woodland (Wytham Woods, southern England) changed in terms of species-richness, cover and biomass over five decades; what the drivers of change were; and possible future change as a consequence of the decline in&nbsp;<em>Fraxinus excelsior</em>&nbsp;as a canopy dominant. Vascular plants were recorded from 164 permanent, 10x10 m plots, distributed as a 141&nbsp;m grid, in 1974, 1991, 1999, 2012, and 2018. Species presence and frequency/abundance in each plot were estimated and used to model biomass changes. Changes in species-richness, vegetation composition and structure were analysed. Stands opened out by thinning or which became denser through tree growth gained or lost species respectively, particularly non-woodland species. Deer pressure favoured the spread of&nbsp;<em>Brachypodium sylvaticum</em>&nbsp;and reduced&nbsp;<em>Rubus fruticosus.</em>&nbsp;No obvious impacts of climate change, eutrophication or of invasive species were detected in the plot records although other signs suggest these are starting to affect the flora. Just 12 out of 235 species contributed 47% of all species occurrences, 82% of the vegetation cover and 87% of the modelled biomass. We conclude that the ground flora is highly variable over decadal timescales, but the patterns of change observed differ according to the measures used (species richness, cover, biomass, etc). Site level drivers in the short-term swamped effects of slower acting regional/global drivers. Legacy effects were seen in the greater richness of specialists in the older woodland. While some impacts can be mitigated by management, others are largely beyond control at the site level.</p>
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spelling oxford-uuid:39a9f0d5-ee5e-406c-97c2-6bbbdd34a2422022-12-02T08:01:05ZFive decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity termsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:39a9f0d5-ee5e-406c-97c2-6bbbdd34a242EnglishSymplectic ElementsElsevier2021Kirby, KJBazely, DRGoldberg, EAHall, JEIsted, RPerry, SCThomas, RC<p>We explore how the ground flora of a temperate woodland (Wytham Woods, southern England) changed in terms of species-richness, cover and biomass over five decades; what the drivers of change were; and possible future change as a consequence of the decline in&nbsp;<em>Fraxinus excelsior</em>&nbsp;as a canopy dominant. Vascular plants were recorded from 164 permanent, 10x10 m plots, distributed as a 141&nbsp;m grid, in 1974, 1991, 1999, 2012, and 2018. Species presence and frequency/abundance in each plot were estimated and used to model biomass changes. Changes in species-richness, vegetation composition and structure were analysed. Stands opened out by thinning or which became denser through tree growth gained or lost species respectively, particularly non-woodland species. Deer pressure favoured the spread of&nbsp;<em>Brachypodium sylvaticum</em>&nbsp;and reduced&nbsp;<em>Rubus fruticosus.</em>&nbsp;No obvious impacts of climate change, eutrophication or of invasive species were detected in the plot records although other signs suggest these are starting to affect the flora. Just 12 out of 235 species contributed 47% of all species occurrences, 82% of the vegetation cover and 87% of the modelled biomass. We conclude that the ground flora is highly variable over decadal timescales, but the patterns of change observed differ according to the measures used (species richness, cover, biomass, etc). Site level drivers in the short-term swamped effects of slower acting regional/global drivers. Legacy effects were seen in the greater richness of specialists in the older woodland. While some impacts can be mitigated by management, others are largely beyond control at the site level.</p>
spellingShingle Kirby, KJ
Bazely, DR
Goldberg, EA
Hall, JE
Isted, R
Perry, SC
Thomas, RC
Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms
title Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms
title_full Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms
title_fullStr Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms
title_full_unstemmed Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms
title_short Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms
title_sort five decades of ground flora changes in a temperate forest the good the bad and the ambiguous in biodiversity terms
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