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The persistence of carbon in the African forest understory

Title: The persistence of carbon in the African forest understory
Authors: Hubau, Wannes; De Mil, Tom; Van Den Bulcke, Jan; Phillips, Oliver O.L.; Angoboy Ilondea, B.; Van Acker, Joris; Sullivan, M.J.P.; Nsenga, L.; Toirambe, B.; Couralet, C.; Banin, Lindsay F.; Begne, Serge K.; Baker, Timothy R.; Bourland, Nils; Chezeaux, E.; Clark, C.J.; Collins, M.; Comiskey, J.A.; Cuni-Sanchez, A.; Deklerck, Victor; Dierickx, S.; Doucet, Jean-Louis; Ewango, C.E.N.; Feldpausch, T.R.; Gilpin, M.; Gonmadje, Christelle Flore; Hall, J.S.; Harris, D.J.; Hardy, Olivier J.; Kamdem, M.-N.D.; Kasongo Yakusu, Emmanuel; Lopez-Gonzalez, G; Makana, J.-R.; Malhi, Yadvinder; Mbayu, F.M.; Moore, S.; Mukinzi, J.; Pickavance, G.; Poulsen, J.R.; Reitsma, Jan; Rousseau, M.; Sonke, Bonaventure; Sunderland, T.; Taedoumg, Hermann; Talbot, J.; Tshibamba Mukendi, John; Umunay, P.M.; Vleminckx, Jason; White, L.J.T.; Zemagho, Lise L.A.; Lewis, Simon S.L.; Beeckman, Hans
Source: Nature Plants, 5 (2
Publication Year: 2019
Collection: DI-fusion : dépôt institutionnel de l'Université libre de Bruxelles (ULB)
Subject Terms: Biologie
Description: Quantifying carbon dynamics in forests is critical for understanding their role in long-term climate regulation 1–4 .Yet little is known about tree longevity in tropical forests 3,5–8 ,a factor that is vital for estimating carbon persistence 3,4 .Here we calculate mean carbon age (the period that carbon is fixed in trees 7 ) in different strata of African tropical forests using (1) growth-ring records with a unique timestamp accurately demarcating 66 years of growth in one site and (2) measurements of diameter increments from the African Tropical Rainforest Observation Network (23 sites). We find that in spite of their much smaller size, in understory trees mean carbon age (74 years) is greater than in sub-canopy (54 years) and canopy (57 years) trees and similar to carbon age in emergent trees (66 years). The remarkable carbon longevity in the understory results from slow and aperiodic growth as an adaptation to limited resource availability 9–11 .Our analysis also reveals that while the understory represents a small share (11%) of the carbon stock 12,13 ,it contributes disproportionally to the forest carbon sink (20%). We conclude that accounting for the diversity of carbon age and carbon sequestration among different forest strata is critical for effective conservation management 14–16 and for accurate modelling of carbon cycling 4 .© 2019, The Author(s), under exclusive licence to Springer Nature Limited. ; SCOPUS: le.j ; info:eu-repo/semantics/published
Document Type: article in journal/newspaper
File Description: 2 full-text file(s): application/pdf | application/pdf
Language: English
ISBN: 978-85-06-04866-5; 85-06-04866-4
Relation: uri/info:pmid/30664730; uri/info:scp/85060486642; local/https://www.scopus.com/inward/record.uri?eid; https://dipot.ulb.ac.be/dspace/bitstream/2013/289026/5/Hubau_DeMil_2019NaturePlants_postprint.pdf; https://dipot.ulb.ac.be/dspace/bitstream/2013/289026/4/Hubau_DeMil_2019NaturePlants.pdf
Availability: https://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/289026; https://dipot.ulb.ac.be/dspace/bitstream/2013/289026/5/Hubau_DeMil_2019NaturePlants_postprint.pdf; https://dipot.ulb.ac.be/dspace/bitstream/2013/289026/4/Hubau_DeMil_2019NaturePlants.pdf
Accession Number: edsbas.404C68CD
Database: BASE