The effect of sun and shade on the leaves of four coastal tree species.

Mimusops caffra, Euclea netetensis, Olea woodiana and Peddiea africana are tree species associated with different successional stages in a coastal dune forest. Saplings of these tree species were established in four different light intensities. These were full sun, 40% shade, 70% shade and 90% shade...

Full description

Bibliographic Details
Main Author: Kemp, Lynley Claire.
Other Authors: Pammenter, Norman W.
Language:en
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10413/5898
id ndltd-netd.ac.za-oai-union.ndltd.org-ukzn-oai-http---researchspace.ukzn.ac.za-10413-5898
record_format oai_dc
spelling ndltd-netd.ac.za-oai-union.ndltd.org-ukzn-oai-http---researchspace.ukzn.ac.za-10413-58982014-02-08T03:48:56ZThe effect of sun and shade on the leaves of four coastal tree species.Kemp, Lynley Claire.Theses--Botany.Coastal ecology.Plants--Effect of light on.Growth (Plants)Plant succession.Mimusops caffra, Euclea netetensis, Olea woodiana and Peddiea africana are tree species associated with different successional stages in a coastal dune forest. Saplings of these tree species were established in four different light intensities. These were full sun, 40% shade, 70% shade and 90% shade. The hypothesis proposed that the species from different successional stages are preadapted for a particular light environment and are disadvantaged in other light environments. Growth, morphological, biochemical and physiological aspects of the four species in the four light environments were determined. Growth rates showed no consistent pattern with respect to light intensity. However, most species, irrespective of their successional status, had the best growth response in either 40% or 70% shade treatments. All the species showed typical sun and shade responses for morphological, anatomical and some biochemical characteristics. Photosynthetic responses were complex and showed no relationship between the successional status of the species and the light conditions in which they were grown. There appears to be very little relationship between the growth responses, the measured biochemical and morphological aspects, assimilation rates and the successional status of the species. Light intensity is therefore not the sole driving force of forest succession but one of the many factors that contribute to the overall process.Thesis - (M.Sc.)-University of Natal, Durban, 1992.Pammenter, Norman W.2012-07-17T10:43:29Z2012-07-17T10:43:29Z19921992Thesishttp://hdl.handle.net/10413/5898en
collection NDLTD
language en
sources NDLTD
topic Theses--Botany.
Coastal ecology.
Plants--Effect of light on.
Growth (Plants)
Plant succession.
spellingShingle Theses--Botany.
Coastal ecology.
Plants--Effect of light on.
Growth (Plants)
Plant succession.
Kemp, Lynley Claire.
The effect of sun and shade on the leaves of four coastal tree species.
description Mimusops caffra, Euclea netetensis, Olea woodiana and Peddiea africana are tree species associated with different successional stages in a coastal dune forest. Saplings of these tree species were established in four different light intensities. These were full sun, 40% shade, 70% shade and 90% shade. The hypothesis proposed that the species from different successional stages are preadapted for a particular light environment and are disadvantaged in other light environments. Growth, morphological, biochemical and physiological aspects of the four species in the four light environments were determined. Growth rates showed no consistent pattern with respect to light intensity. However, most species, irrespective of their successional status, had the best growth response in either 40% or 70% shade treatments. All the species showed typical sun and shade responses for morphological, anatomical and some biochemical characteristics. Photosynthetic responses were complex and showed no relationship between the successional status of the species and the light conditions in which they were grown. There appears to be very little relationship between the growth responses, the measured biochemical and morphological aspects, assimilation rates and the successional status of the species. Light intensity is therefore not the sole driving force of forest succession but one of the many factors that contribute to the overall process. === Thesis - (M.Sc.)-University of Natal, Durban, 1992.
author2 Pammenter, Norman W.
author_facet Pammenter, Norman W.
Kemp, Lynley Claire.
author Kemp, Lynley Claire.
author_sort Kemp, Lynley Claire.
title The effect of sun and shade on the leaves of four coastal tree species.
title_short The effect of sun and shade on the leaves of four coastal tree species.
title_full The effect of sun and shade on the leaves of four coastal tree species.
title_fullStr The effect of sun and shade on the leaves of four coastal tree species.
title_full_unstemmed The effect of sun and shade on the leaves of four coastal tree species.
title_sort effect of sun and shade on the leaves of four coastal tree species.
publishDate 2012
url http://hdl.handle.net/10413/5898
work_keys_str_mv AT kemplynleyclaire theeffectofsunandshadeontheleavesoffourcoastaltreespecies
AT kemplynleyclaire effectofsunandshadeontheleavesoffourcoastaltreespecies
_version_ 1716635662685306880