Bryophyte relationships with environmental and structural variables in Tasmanian old-growth mixed eucalypt forest

Abstract. The species richness and species composition of bryophytes (mosses and liverworts) was recorded at 33 sites in Tasmanian old growth mixed eucalypt forest. A total of 202 bryophyte taxa were recorded, consisting of 115 liverworts and 87 mosses. This constitutes approximately one third of th...

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Bibliographic Details
Published in:Australian Journal of Botany
Main Authors: Turner, PAM, Kirkpatrick, JB, Pharo, EJ
Format: Article in Journal/Newspaper
Language:English
Published: 2006
Subjects:
Online Access:https://eprints.utas.edu.au/1881/
https://eprints.utas.edu.au/1881/1/Turneretal_2006.pdf
https://doi.org/10.1071/BT04138
Description
Summary:Abstract. The species richness and species composition of bryophytes (mosses and liverworts) was recorded at 33 sites in Tasmanian old growth mixed eucalypt forest. A total of 202 bryophyte taxa were recorded, consisting of 115 liverworts and 87 mosses. This constitutes approximately one third of the total bryophyte flora for Tasmania. Mean liverwort species richness per site was higher than moss species richness. Latitude was found to be a positive predictor in all multiple regression models of bryophyte, moss and liverwort species richness. Mean annual temperature and rainfall of the driest month were positive predictors for bryophyte and liverwort species richness. Basal area of the treefern Dicksonia antarctica Labill.was a negative predictor of liverwort species richness. Latitude, variables relating to moisture, mean annual temperature, rainfall of the driest month and basal area of Dicksonia antarctica were the most significant components in predicting variation in bryophyte, moss and liverwort species composition. There were few relationships between the variables of canopy cover and soil nutrients and bryophyte species richness and composition. Substrate variableswere found to be important components in predicting variation in moss and bryophyte species composition.