Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix Floras

Inselbergs and the adjacent matrix represent extremes of different environmental conditions and should shed light on the changing allocation of plant resources across strong and abrupt resource gradients. Here I use collated life history trait data from 840 taxa found within typical insular inselber...

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Main Author: John T. Hunter
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:International Journal of Ecology
Online Access:http://dx.doi.org/10.1155/2016/6417913
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spelling doaj-dec0044b5652440c82ff821002d7b67e2020-11-25T00:56:27ZengHindawi LimitedInternational Journal of Ecology1687-97081687-97162016-01-01201610.1155/2016/64179136417913Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix FlorasJohn T. Hunter0School of Environmental and Rural Science, University of New England, Armidale, AustraliaInselbergs and the adjacent matrix represent extremes of different environmental conditions and should shed light on the changing allocation of plant resources across strong and abrupt resource gradients. Here I use collated life history trait data from 840 taxa found within typical insular inselberg and adjacent matrix floras from the New England Batholith region of eastern Australia. These species were sorted into guilds of specificity to the inselberg environment. Scored traits include life form, plant height, leaf area, fruit size, seed size, mono- or polycarpy, underground storage organs, regenerative/clonality, and flowering phenology. With reduced water and nutrient resources, typical of inselbergs, allocation of plant resources to vegetative reproduction and storage organs is a disadvantage. Plants restricted to inselbergs were shorter, usually polycarpic shrubs, with smaller leaves, fruits, and seeds. Flowering time was found to be earlier and reduced in length; diaspores often have dormancy and are dispersed locally in comparison to the matrix. The results show that with limited resources the creation of underground storage organs or vegetative reproduction becomes unviable on habitats characterised by shallow soil. Inselberg taxa of the study region are likely to be under greater threat than the matrix due to anthropogenic climate change.http://dx.doi.org/10.1155/2016/6417913
collection DOAJ
language English
format Article
sources DOAJ
author John T. Hunter
spellingShingle John T. Hunter
Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix Floras
International Journal of Ecology
author_facet John T. Hunter
author_sort John T. Hunter
title Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix Floras
title_short Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix Floras
title_full Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix Floras
title_fullStr Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix Floras
title_full_unstemmed Differences in Functional Trait Distribution between Inselberg and Adjacent Matrix Floras
title_sort differences in functional trait distribution between inselberg and adjacent matrix floras
publisher Hindawi Limited
series International Journal of Ecology
issn 1687-9708
1687-9716
publishDate 2016-01-01
description Inselbergs and the adjacent matrix represent extremes of different environmental conditions and should shed light on the changing allocation of plant resources across strong and abrupt resource gradients. Here I use collated life history trait data from 840 taxa found within typical insular inselberg and adjacent matrix floras from the New England Batholith region of eastern Australia. These species were sorted into guilds of specificity to the inselberg environment. Scored traits include life form, plant height, leaf area, fruit size, seed size, mono- or polycarpy, underground storage organs, regenerative/clonality, and flowering phenology. With reduced water and nutrient resources, typical of inselbergs, allocation of plant resources to vegetative reproduction and storage organs is a disadvantage. Plants restricted to inselbergs were shorter, usually polycarpic shrubs, with smaller leaves, fruits, and seeds. Flowering time was found to be earlier and reduced in length; diaspores often have dormancy and are dispersed locally in comparison to the matrix. The results show that with limited resources the creation of underground storage organs or vegetative reproduction becomes unviable on habitats characterised by shallow soil. Inselberg taxa of the study region are likely to be under greater threat than the matrix due to anthropogenic climate change.
url http://dx.doi.org/10.1155/2016/6417913
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