Literature DB >> 26619197

Wood phenology, not carbon input, controls the interannual variability of wood growth in a temperate oak forest.

Nicolas Delpierre1, Daniel Berveiller1, Elena Granda1, Eric Dufrêne1.   

Abstract

Although the analysis of flux data has increased our understanding of the interannual variability of carbon inputs into forest ecosystems, we still know little about the determinants of wood growth. Here, we aimed to identify which drivers control the interannual variability of wood growth in a mesic temperate deciduous forest. We analysed a 9-yr time series of carbon fluxes and aboveground wood growth (AWG), reconstructed at a weekly time-scale through the combination of dendrometer and wood density data. Carbon inputs and AWG anomalies appeared to be uncorrelated from the seasonal to interannual scales. More than 90% of the interannual variability of AWG was explained by a combination of the growth intensity during a first 'critical period' of the wood growing season, occurring close to the seasonal maximum, and the timing of the first summer growth halt. Both atmospheric and soil water stress exerted a strong control on the interannual variability of AWG at the study site, despite its mesic conditions, whilst not affecting carbon inputs. Carbon sink activity, not carbon inputs, determined the interannual variations in wood growth at the study site. Our results provide a functional understanding of the dependence of radial growth on precipitation observed in dendrological studies.
© 2015 The Authors. New Phytologist © 2015 New Phytologist Trust.

Entities:  

Keywords:  Quercus petraea (sessile oak); gross primary productivity (GPP); interannual variability; sink limitation; water stress; wood growth

Mesh:

Substances:

Year:  2015        PMID: 26619197     DOI: 10.1111/nph.13771

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  7 in total

1.  Resource manipulation through experimental defoliation has legacy effects on allocation to reproductive and vegetative organs in Quercus ilex.

Authors:  Iris Le Roncé; Maude Toïgo; Elia Dardevet; Samuel Venner; Jean-Marc Limousin; Isabelle Chuine
Journal:  Ann Bot       Date:  2020-11-24       Impact factor: 4.357

2.  Warm springs alter timing but not total growth of temperate deciduous trees.

Authors:  Cameron Dow; Albert Y Kim; Loïc D'Orangeville; Erika B Gonzalez-Akre; Ryan Helcoski; Valentine Herrmann; Grant L Harley; Justin T Maxwell; Ian R McGregor; William J McShea; Sean M McMahon; Neil Pederson; Alan J Tepley; Kristina J Anderson-Teixeira
Journal:  Nature       Date:  2022-08-10       Impact factor: 69.504

3.  Number of growth days and not length of the growth period determines radial stem growth of temperate trees.

Authors:  Sophia Etzold; Frank Sterck; Arun K Bose; Sabine Braun; Nina Buchmann; Werner Eugster; Arthur Gessler; Ansgar Kahmen; Richard L Peters; Yann Vitasse; Lorenz Walthert; Kasia Ziemińska; Roman Zweifel
Journal:  Ecol Lett       Date:  2021-12-09       Impact factor: 11.274

4.  Contrasting Carbon Allocation Strategies of Ring-Porous and Diffuse-Porous Species Converge Toward Similar Growth Responses to Drought.

Authors:  Valentina Buttó; Mathilde Millan; Sergio Rossi; Sylvain Delagrange
Journal:  Front Plant Sci       Date:  2021-12-16       Impact factor: 5.753

5.  The 2018 European heatwave led to stem dehydration but not to consistent growth reductions in forests.

Authors:  Roberto L Salomón; Richard L Peters; Roman Zweifel; Ute G W Sass-Klaassen; Annemiek I Stegehuis; Marko Smiljanic; Rafael Poyatos; Flurin Babst; Emil Cienciala; Patrick Fonti; Bas J W Lerink; Marcus Lindner; Jordi Martinez-Vilalta; Maurizio Mencuccini; Gert-Jan Nabuurs; Ernst van der Maaten; Georg von Arx; Andreas Bär; Linar Akhmetzyanov; Daniel Balanzategui; Michal Bellan; Jörg Bendix; Daniel Berveiller; Miroslav Blaženec; Vojtěch Čada; Vinicio Carraro; Sébastien Cecchini; Tommy Chan; Marco Conedera; Nicolas Delpierre; Sylvain Delzon; Ľubica Ditmarová; Jiri Dolezal; Eric Dufrêne; Johannes Edvardsson; Stefan Ehekircher; Alicia Forner; Jan Frouz; Andrea Ganthaler; Vladimír Gryc; Aylin Güney; Ingo Heinrich; Rainer Hentschel; Pavel Janda; Marek Ježík; Hans-Peter Kahle; Simon Knüsel; Jan Krejza; Łukasz Kuberski; Jiří Kučera; François Lebourgeois; Martin Mikoláš; Radim Matula; Stefan Mayr; Walter Oberhuber; Nikolaus Obojes; Bruce Osborne; Teemu Paljakka; Roman Plichta; Inken Rabbel; Cyrille B K Rathgeber; Yann Salmon; Matthew Saunders; Tobias Scharnweber; Zuzana Sitková; Dominik Florian Stangler; Krzysztof Stereńczak; Marko Stojanović; Katarína Střelcová; Jan Světlík; Miroslav Svoboda; Brian Tobin; Volodymyr Trotsiuk; Josef Urban; Fernando Valladares; Hanuš Vavrčík; Monika Vejpustková; Lorenz Walthert; Martin Wilmking; Ewa Zin; Junliang Zou; Kathy Steppe
Journal:  Nat Commun       Date:  2022-01-10       Impact factor: 14.919

6.  Alpine shrub growth follows bimodal seasonal patterns across biomes - unexpected environmental controls.

Authors:  Svenja Dobbert; Eike Corina Albrecht; Roland Pape; Jörg Löffler
Journal:  Commun Biol       Date:  2022-08-06

7.  Inter-annual and inter-species tree growth explained by phenology of xylogenesis.

Authors:  Yizhao Chen; Tim Rademacher; Patrick Fonti; Annemarie H Eckes-Shephard; James M LeMoine; Marina V Fonti; Andrew D Richardson; Andrew D Friend
Journal:  New Phytol       Date:  2022-05-26       Impact factor: 10.323

  7 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.