Fine-scale variation in topography and seasonality determine radial growth of an endangered tree in Brazilian Atlantic forest
AIMS: We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the endangered tropical tree Dalbergia nigra under uniform conditions of climate and irradiance, and to examine effects of seasonality on p...
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Published in | Plant and soil Vol. 403; no. 1-2; pp. 115 - 128 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Springer International Publishing
01.06.2016
Springer Springer Nature B.V |
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Abstract | AIMS: We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the endangered tropical tree Dalbergia nigra under uniform conditions of climate and irradiance, and to examine effects of seasonality on plant phenology and growth periodicity. METHODS: Dendrometer-based measurements of stem diameter change over 26 months and local measurements of soil nutrient and water availability were compared for 24 individuals of D. nigra distributed equally between summit and valley positions within a topographically heterogeneous fragment of Atlantic Forest in southeastern Brazil. RESULTS: Soil water and nutrient availability, and cumulative radial growth, were greater for trees in valley than summit positions. Monthly diameter increment was seasonal and positively related to monthly rainfall. D. nigra was seasonal in all phenophases, regardless of topographic position, and there were no differences in the frequency, timing or intensity of phenophases among topographic positions. CONCLUSIONS: We conclude that low soil nutrient and/or moisture availability reduce radial growth of D. nigra individuals growing in summit positions, while trees growing in valleys exhibit faster annual growth. Vegetative phenology is unaffected by fine-scale variation in topography. |
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AbstractList | Aims We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the endangered tropical tree Dalbergia nigra under uniform conditions of climate and irradiance, and to examine effects of seasonality on plant phenology and growth periodicity. Methods Dendrometer-based measurements of stem diameter change over 26 months and local measurements of soil nutrient and water availability were compared for 24 individuals of D. nigra distributed equally between summit and valley positions within a topographically heterogeneous fragment of Atlantic Forest in southeastern Brazil. Results Soil water and nutrient availability, and cumulative radial growth, were greater for trees in valley than summit positions. Monthly diameter increment was seasonal and positively related to monthly rainfall. D. nigra was seasonal in all phenophases, regardless of topographic position, and there were no differences in the frequency, timing or intensity of phenophases among topographic positions. Conclusions We conclude that low soil nutrient and/or moisture availability reduce radial growth of D. nigra individuals growing in summit positions, while trees growing in valleys exhibit faster annual growth. Vegetative phenology is unaffected by fine-scale variation in topography. Aims We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the endangered tropical tree Dalbergia nigra under uniform conditions of climate and irradiance, and to examine effects of seasonality on plant phenology and growth periodicity. Methods Dendrometer-based measurements of stem diameter change over 26 months and local measurements of soil nutrient and water availability were compared for 24 individuals of D. nigra distributed equally between summit and valley positions within a topographically heterogeneous fragment of Atlantic Forest in southeastern Brazil. Results Soil water and nutrient availability, and cumulative radial growth, were greater for trees in valley than summit positions. Monthly diameter increment was seasonal and positively related to monthly rainfall. D. nigra was seasonal in all phenophases, regardless of topographic position, and there were no differences in the frequency, timing or intensity of phenophases among topographic positions. Conclusions We conclude that low soil nutrient and/or moisture availability reduce radial growth of D. nigra individuals growing in summit positions, while trees growing in valleys exhibit faster annual growth. Vegetative phenology is unaffected by fine-scale variation in topography. We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the endangered tropical tree Dalbergia nigra under uniform conditions of climate and irradiance, and to examine effects of seasonality on plant phenology and growth periodicity. Dendrometer-based measurements of stem diameter change over 26 months and local measurements of soil nutrient and water availability were compared for 24 individuals of D. nigra distributed equally between summit and valley positions within a topographically heterogeneous fragment of Atlantic Forest in southeastern Brazil. Soil water and nutrient availability, and cumulative radial growth, were greater for trees in valley than summit positions. Monthly diameter increment was seasonal and positively related to monthly rainfall. D. nigra was seasonal in all phenophases, regardless of topographic position, and there were no differences in the frequency, timing or intensity of phenophases among topographic positions. We conclude that low soil nutrient and/or moisture availability reduce radial growth of D. nigra individuals growing in summit positions, while trees growing in valleys exhibit faster annual growth. Vegetative phenology is unaffected by fine-scale variation in topography. AIMS: We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the endangered tropical tree Dalbergia nigra under uniform conditions of climate and irradiance, and to examine effects of seasonality on plant phenology and growth periodicity. METHODS: Dendrometer-based measurements of stem diameter change over 26 months and local measurements of soil nutrient and water availability were compared for 24 individuals of D. nigra distributed equally between summit and valley positions within a topographically heterogeneous fragment of Atlantic Forest in southeastern Brazil. RESULTS: Soil water and nutrient availability, and cumulative radial growth, were greater for trees in valley than summit positions. Monthly diameter increment was seasonal and positively related to monthly rainfall. D. nigra was seasonal in all phenophases, regardless of topographic position, and there were no differences in the frequency, timing or intensity of phenophases among topographic positions. CONCLUSIONS: We conclude that low soil nutrient and/or moisture availability reduce radial growth of D. nigra individuals growing in summit positions, while trees growing in valleys exhibit faster annual growth. Vegetative phenology is unaffected by fine-scale variation in topography. Issue Title: Biodiversity hotspots Aims We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the endangered tropical tree Dalbergia nigra under uniform conditions of climate and irradiance, and to examine effects of seasonality on plant phenology and growth periodicity. Methods Dendrometer-based measurements of stem diameter change over 26 months and local measurements of soil nutrient and water availability were compared for 24 individuals of D. nigra distributed equally between summit and valley positions within a topographically heterogeneous fragment of Atlantic Forest in southeastern Brazil. Results Soil water and nutrient availability, and cumulative radial growth, were greater for trees in valley than summit positions. Monthly diameter increment was seasonal and positively related to monthly rainfall. D. nigra was seasonal in all phenophases, regardless of topographic position, and there were no differences in the frequency, timing or intensity of phenophases among topographic positions. Conclusions We conclude that low soil nutrient and/or moisture availability reduce radial growth of D. nigra individuals growing in summit positions, while trees growing in valleys exhibit faster annual growth. Vegetative phenology is unaffected by fine-scale variation in topography. |
Audience | Academic |
Author | Oliveira-Filho, Ary T. Lemos-Filho, José P. Bueno, Marcelo L. Pontara, Vanessa Garcia, Leticia E. Burslem, David F. R. P. Pennington, Toby R. |
Author_xml | – sequence: 1 givenname: Vanessa orcidid: 0000-0002-0872-2759 surname: Pontara fullname: Pontara, Vanessa email: vanessapontara@gmail.com organization: Departamento de Botânica, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais – sequence: 2 givenname: Marcelo L. surname: Bueno fullname: Bueno, Marcelo L. organization: Departamento de Botânica, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais – sequence: 3 givenname: Leticia E. surname: Garcia fullname: Garcia, Leticia E. organization: Departamento de Botânica, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais – sequence: 4 givenname: Ary T. surname: Oliveira-Filho fullname: Oliveira-Filho, Ary T. organization: Departamento de Botânica, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais – sequence: 5 givenname: Toby R. surname: Pennington fullname: Pennington, Toby R. organization: Royal Botanic Garden Edinburgh – sequence: 6 givenname: David F. R. P. surname: Burslem fullname: Burslem, David F. R. P. organization: School of Biological Sciences, University of Aberdeen – sequence: 7 givenname: José P. surname: Lemos-Filho fullname: Lemos-Filho, José P. organization: Departamento de Botânica, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais |
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Snippet | AIMS: We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals... Aims We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of... Aims We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of... Issue Title: Biodiversity hotspots Aims We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial... We use dendroecological methods to test the hypothesis that variation in topographic position is related to radial growth and phenology for individuals of the... |
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SubjectTerms | Biodiversity hot spots Biomedical and Life Sciences Brazil climate Dalbergia Dalbergia nigra Ecology Endangered & extinct species Endangered plants Endangered species forests Growth Life Sciences light intensity Moisture availability Moisture content Nutrient availability Observations periodicity Phenology Plant growth Plant Physiology Plant Sciences rain Regular Article Seasonal variations Soil fertility Soil nutrients Soil Science & Conservation Soil water Topography Trees Valleys Water availability |
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Title | Fine-scale variation in topography and seasonality determine radial growth of an endangered tree in Brazilian Atlantic forest |
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