Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performance

Abstract Forest biodiversity is likely maintained by a complex suite of interacting drivers that vary in importance across both space and time. Contributing factors include disturbance, interannual variation in abiotic variables, and biotic neighborhood effects. To probe ongoing uncertainties and po...

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出版年:Ecology and Evolution
主要な著者: Benjamin S. Ramage, Daniel J. Johnson, David M. Chan
フォーマット: 論文
言語:英語
出版事項: Wiley 2023-08-01
主題:
オンライン・アクセス:https://doi.org/10.1002/ece3.10413
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author Benjamin S. Ramage
Daniel J. Johnson
David M. Chan
author_facet Benjamin S. Ramage
Daniel J. Johnson
David M. Chan
author_sort Benjamin S. Ramage
collection DOAJ
container_title Ecology and Evolution
description Abstract Forest biodiversity is likely maintained by a complex suite of interacting drivers that vary in importance across both space and time. Contributing factors include disturbance, interannual variation in abiotic variables, and biotic neighborhood effects. To probe ongoing uncertainties and potential interactions, we investigated tree seedling performance in a temperate mid‐Atlantic forest ecosystem. We planted seedlings of five native tree species in mapped study plots, half of which were subjected to disturbance, and then monitored seedling survival, height growth, and foliar condition. The final year of data collection encompassed a drought, enabling comparison between intervals varying in water availability. Seedling performance was analyzed as a function of canopy cover and biotic neighborhood (conspecific and heterospecific abundance), including interactions, with separate generalized linear mixed models fit for each interval. All species exhibited: (a) pronounced declines in height growth during the drought year, (b) detrimental effects of adult conspecifics, and (c) beneficial effects of canopy openness. However, despite these consistencies, there was considerable variation across species in terms of the relevant predictors for each response variable in each interval. Our results suggest that drought may strengthen or reveal conspecific inhibition in some instances while weakening it or obscuring it in others, and that some forms of conspecific inhibition may manifest only under particular canopy conditions (although given the inconsistency of our findings, we are not convinced that conspecific inhibition is critical for diversity maintenance in our study system). Overall, our work reveals a complex forest ecosystem that appears simultaneously and interactively governed by biotic neighborhood structure (e.g., conspecific and/or heterospecific abundance), local habitat conditions (e.g., canopy cover), and interannual variability (e.g., drought).
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spelling doaj-art-c0d60ff995ca4d52bdb43ef17c1a86cf2025-08-20T00:02:50ZengWileyEcology and Evolution2045-77582023-08-01138n/an/a10.1002/ece3.10413Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performanceBenjamin S. Ramage0Daniel J. Johnson1David M. Chan2Biology Department Randolph‐Macon College Ashland Virginia USASchool of Forest, Fisheries, & Geomatics sciences University of Florida Gainesville Florida USADepartment of Mathematics and Applied Mathematics Virginia Commonwealth University Richmond Virginia USAAbstract Forest biodiversity is likely maintained by a complex suite of interacting drivers that vary in importance across both space and time. Contributing factors include disturbance, interannual variation in abiotic variables, and biotic neighborhood effects. To probe ongoing uncertainties and potential interactions, we investigated tree seedling performance in a temperate mid‐Atlantic forest ecosystem. We planted seedlings of five native tree species in mapped study plots, half of which were subjected to disturbance, and then monitored seedling survival, height growth, and foliar condition. The final year of data collection encompassed a drought, enabling comparison between intervals varying in water availability. Seedling performance was analyzed as a function of canopy cover and biotic neighborhood (conspecific and heterospecific abundance), including interactions, with separate generalized linear mixed models fit for each interval. All species exhibited: (a) pronounced declines in height growth during the drought year, (b) detrimental effects of adult conspecifics, and (c) beneficial effects of canopy openness. However, despite these consistencies, there was considerable variation across species in terms of the relevant predictors for each response variable in each interval. Our results suggest that drought may strengthen or reveal conspecific inhibition in some instances while weakening it or obscuring it in others, and that some forms of conspecific inhibition may manifest only under particular canopy conditions (although given the inconsistency of our findings, we are not convinced that conspecific inhibition is critical for diversity maintenance in our study system). Overall, our work reveals a complex forest ecosystem that appears simultaneously and interactively governed by biotic neighborhood structure (e.g., conspecific and/or heterospecific abundance), local habitat conditions (e.g., canopy cover), and interannual variability (e.g., drought).https://doi.org/10.1002/ece3.10413conspecific inhibitionconspecific negative density dependenceforest biodiversityinterannual variationtree species coexistence
spellingShingle Benjamin S. Ramage
Daniel J. Johnson
David M. Chan
Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performance
conspecific inhibition
conspecific negative density dependence
forest biodiversity
interannual variation
tree species coexistence
title Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performance
title_full Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performance
title_fullStr Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performance
title_full_unstemmed Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performance
title_short Effects of drought, disturbance, and biotic neighborhood on experimental tree seedling performance
title_sort effects of drought disturbance and biotic neighborhood on experimental tree seedling performance
topic conspecific inhibition
conspecific negative density dependence
forest biodiversity
interannual variation
tree species coexistence
url https://doi.org/10.1002/ece3.10413
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AT danieljjohnson effectsofdroughtdisturbanceandbioticneighborhoodonexperimentaltreeseedlingperformance
AT davidmchan effectsofdroughtdisturbanceandbioticneighborhoodonexperimentaltreeseedlingperformance