Register      Login
Australian Journal of Botany Australian Journal of Botany Society
Southern hemisphere botanical ecosystems

Articles citing this paper

A Conceptual Model for Integrative Studies of Epiphytes: Nitrogen Utilisation, a Case Study

D. M. Bergstrom and C. E. Tweedie
46(2) pp.273 - 280


17 articles found in Crossref database.

Epiphytic bryophytes growing on Laurus azorica (Seub.) Franco in three laurel forest areas in Tenerife (Canary Islands)
González-Mancebo Juana M, Romaguera Francisco, Losada-Lima Ana, Suárez Andrés
Acta Oecologica. 2004 25(3). p.159
Stoichiometric and isotopic flexibility: facultative epiphytes exploit rock and bark interchangeably
Wu Yi, Liu Wen-Yao, Lu Hua-Zheng, Li Su, Shen You-Xin, Liu Wei-Guo, Song Liang
Environmental and Experimental Botany. 2020 179 p.104208
The influence of life form on carbon and nitrogen relationships in tropical rainforest ferns
Watkins James E., Rundel Philip W., Cardelús Catherine L.
Oecologia. 2007 153(2).
Declining foliar and litter δ15N diverge from soil, epiphyte and input δ15N along a 120 000 yr temperate rainforest chronosequence
Menge Duncan N. L., Troy Baisden W., Richardson Sarah J., Peltzer Duane A., Barbour Margaret M.
New Phytologist. 2011 190(4). p.941
Size-related intraspecific variability in physiological traits of vascular epiphytes and its importance for plant physiological ecology
Zotz Gerhard
Perspectives in Plant Ecology, Evolution and Systematics. 2000 3(1). p.19
One large tree crown can be defined as a local hotspot for plant species diversity in a forest ecosystem: a case study in temperate old-growth forest
Azuma Wakana A., Komada Natsuki, Ogawa Yuya, Ishii Hiroaki, Nakanishi Akira, Noguchi Yuiko, Kanzaki Mamoru
Plant Ecology. 2022 223(1). p.99
Moss and vascular epiphyte distributions over host tree and elevation gradients in Australian subtropical rainforest
Sanger Jennifer C., Kirkpatrick James B.
Australian Journal of Botany. 2015 63(8). p.696
Stable isotopic composition of carbon and nitrogen and nitrogen content in vascular epiphytes along an altitudinal transect*
Hietz P., Wanek W., Popp M.
Plant, Cell & Environment. 1999 22(11). p.1435
Ecological niches of epiphyllous bryophytes along Afrotropical elevation gradient
Doležal Jiří, Korznikov Kirill, Altman Jan, Fibich Pavel, Řeháková Klára, Lltonga Elias Ndive, Majeský Luboš, Dančák Martin
Oikos. 2023 2023(5).
Bole epiphytic bryophytes onLithocarpus xylocarpus(Kurz) Markgr. in the Ailao Mountains, SW China
Song Liang, Liu Wen‐yao, Ma Wen‐zhang, Tan Zheng‐hong
Ecological Research. 2011 26(2). p.351
A protocol for sampling vascular epiphyte richness and abundance
Wolf Jan H. D., Gradstein S. Robbert, Nadkarni Nalini M.
Journal of Tropical Ecology. 2009 25(2). p.107
Growth in epiphytic bromeliads: response to the relative supply of phosphorus and nitrogen
Zotz G., Asshoff R.
Plant Biology. 2010 12(1). p.108
Importance of Arboreal Cyanolichen Abundance to Nitrogen Cycling in Sub-Boreal Spruce and Fir Forests of Central British Columbia, Canada
Kobylinski Ania, Fredeen Arthur
Forests. 2015 6(12). p.2588
Natural 15N abundance of epiphytes depends on the position within the forest canopy: source signals and isotope fractionation
Wania R., Hietz P., Wanek W.
Plant, Cell & Environment. 2002 25(4). p.581
Size‐Dependent Variation of Carbon and Nitrogen Isotope Abundances in Epiphytic Bromeliads
Hietz P., Wanek W.
Plant Biology. 2003 5(2). p.137
Host Specificity of Epiphytic Bryophyte Communities of a Laurel Forest on Tenerife (Canary Islands, Spain)
González-Mancebo Juana Maria, Losada-Lima Ana, McAlister Suzanne
The Bryologist. 2003 106(3). p.383
Distribution, abundance and biomass of epiphyte‐lianoid communities in a New Zealand lowland Nothofagus‐podocarp temperate rain forest: tropical comparisons
Hofstede Robert G. M., Dickinson Katharine J. M., Mark Alan F.
Journal of Biogeography. 2001 28(8). p.1033

Committee on Publication Ethics


Abstract Export Citation Get Permission