Cargando…

The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers

Knowledge of plant architecture allows retrospective study of plant development, hence provides powerful tools, through modelling and simulation, to link this development with environmental constraints, and then predict its response to global change. The present study aims to determine some of the m...

Descripción completa

Detalles Bibliográficos
Autores principales: Buissart, Fabien, Vennetier, Michel, Delagrange, Sylvain, Girard, François, Caraglio, Yves, Sabatier, Sylvie-Annabel, Munson, Alison D, Nicolini, Eric-André
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6101484/
https://www.ncbi.nlm.nih.gov/pubmed/30151094
http://dx.doi.org/10.1093/aobpla/ply045
_version_ 1783349027098591232
author Buissart, Fabien
Vennetier, Michel
Delagrange, Sylvain
Girard, François
Caraglio, Yves
Sabatier, Sylvie-Annabel
Munson, Alison D
Nicolini, Eric-André
author_facet Buissart, Fabien
Vennetier, Michel
Delagrange, Sylvain
Girard, François
Caraglio, Yves
Sabatier, Sylvie-Annabel
Munson, Alison D
Nicolini, Eric-André
author_sort Buissart, Fabien
collection PubMed
description Knowledge of plant architecture allows retrospective study of plant development, hence provides powerful tools, through modelling and simulation, to link this development with environmental constraints, and then predict its response to global change. The present study aims to determine some of the main endogenous and exogenous variables driving the architectural development of three North American conifers. We measured architectural traits retrospectively on the trunk, branches and twigs of whole tree crowns for each species: annual shoot length (ASL), needle length, branching patterns and reproduction organs (male and female). We fitted a partial least square (PLS) regression to explain each architectural trait with respect to topological, ontogenic and climatic variables. Results showed a significant weight of these three groups of variables for previous and current year, corresponding, respectively, to organogenesis and elongation. Topological and ontogenic variables had the greatest weight in models. Particularly, all architectural traits were strongly correlated with ASL. We highlighted a negative architectural response of two species to higher than average temperatures, whereas the third one took advantage of these higher temperatures to some degree. Tree architectural development weekly but significantly improved with higher precipitation. Our study underlines the strong weight of topology and ontogeny in tree growth patterns at twig and branch scales. The correlation between ASL and other tree architectural traits should be integrated into architectural development models. Climate variables are secondary in importance at the twig scale. However, interannual climate variations influence all axis categories and branching orders and therefore significantly impact crown development as a whole. This latter impact may increase with climate change, especially as climate affects architectural traits over at least 2 years, through organogenesis and elongation.
format Online
Article
Text
id pubmed-6101484
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-61014842018-08-27 The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers Buissart, Fabien Vennetier, Michel Delagrange, Sylvain Girard, François Caraglio, Yves Sabatier, Sylvie-Annabel Munson, Alison D Nicolini, Eric-André AoB Plants Research Articles Knowledge of plant architecture allows retrospective study of plant development, hence provides powerful tools, through modelling and simulation, to link this development with environmental constraints, and then predict its response to global change. The present study aims to determine some of the main endogenous and exogenous variables driving the architectural development of three North American conifers. We measured architectural traits retrospectively on the trunk, branches and twigs of whole tree crowns for each species: annual shoot length (ASL), needle length, branching patterns and reproduction organs (male and female). We fitted a partial least square (PLS) regression to explain each architectural trait with respect to topological, ontogenic and climatic variables. Results showed a significant weight of these three groups of variables for previous and current year, corresponding, respectively, to organogenesis and elongation. Topological and ontogenic variables had the greatest weight in models. Particularly, all architectural traits were strongly correlated with ASL. We highlighted a negative architectural response of two species to higher than average temperatures, whereas the third one took advantage of these higher temperatures to some degree. Tree architectural development weekly but significantly improved with higher precipitation. Our study underlines the strong weight of topology and ontogeny in tree growth patterns at twig and branch scales. The correlation between ASL and other tree architectural traits should be integrated into architectural development models. Climate variables are secondary in importance at the twig scale. However, interannual climate variations influence all axis categories and branching orders and therefore significantly impact crown development as a whole. This latter impact may increase with climate change, especially as climate affects architectural traits over at least 2 years, through organogenesis and elongation. Oxford University Press 2018-07-31 /pmc/articles/PMC6101484/ /pubmed/30151094 http://dx.doi.org/10.1093/aobpla/ply045 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of the Annals of Botany Company. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Buissart, Fabien
Vennetier, Michel
Delagrange, Sylvain
Girard, François
Caraglio, Yves
Sabatier, Sylvie-Annabel
Munson, Alison D
Nicolini, Eric-André
The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers
title The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers
title_full The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers
title_fullStr The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers
title_full_unstemmed The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers
title_short The relative weight of ontogeny, topology and climate in the architectural development of three North American conifers
title_sort relative weight of ontogeny, topology and climate in the architectural development of three north american conifers
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6101484/
https://www.ncbi.nlm.nih.gov/pubmed/30151094
http://dx.doi.org/10.1093/aobpla/ply045
work_keys_str_mv AT buissartfabien therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT vennetiermichel therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT delagrangesylvain therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT girardfrancois therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT caraglioyves therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT sabatiersylvieannabel therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT munsonalisond therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT nicoliniericandre therelativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT buissartfabien relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT vennetiermichel relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT delagrangesylvain relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT girardfrancois relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT caraglioyves relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT sabatiersylvieannabel relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT munsonalisond relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers
AT nicoliniericandre relativeweightofontogenytopologyandclimateinthearchitecturaldevelopmentofthreenorthamericanconifers