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PMID: 25581061 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Global variability in leaf respiration in relation to climate, plant functional types and leaf traits.

The New phytologist ·Vol. 206 ·No. 2 ·2015-04-00 ·Pages 614-36

Atkin OK, Bloomfield KJ, Reich PB, Tjoelker MG, Asner GP, Bonal D, Bönisch G, Bradford MG, Cernusak LA, Cosio EG, Creek D, Crous KY, Domingues TF, Dukes JS, Egerton JJ, Evans JR, Farquhar GD, Fyllas NM, Gauthier PP, Gloor E, Gimeno TE, Griffin KL, Guerrieri R, Heskel MA, Huntingford C, Ishida FY, Kattge J, Lambers H, Liddell MJ, Lloyd J, Lusk CH, Martin RE, Maksimov AP, Maximov TC, Malhi Y, Medlyn BE, Meir P, Mercado LM, Mirotchnick N, Ng D, Niinemets Ü, O'Sullivan OS, Phillips OL, Poorter L, Poot P, Prentice IC, Salinas N, Rowland LM, Ryan MG, Sitch S, Slot M, Smith NG, Turnbull MH, VanderWel MC, Valladares F, Veneklaas EJ, Weerasinghe LK, Wirth C, Wright IJ, Wythers KR, Xiang J, Xiang S, Zaragoza-Castells J

Abstract

Leaf dark respiration (Rdark ) is an important yet poorly quantified component of the global carbon cycle. Given this, we analyzed a new global database of Rdark and associated leaf traits. Data for 899 species were compiled from 100 sites (from the Arctic to the tropics). Several woody and nonwoody plant functional types (PFTs) were represented. Mixed-effects models were used to disentangle sources of variation in Rdark . Area-based Rdark at the prevailing average daily growth temperature (T) of each site increased only twofold from the Arctic to the tropics, despite a 20°C increase in growing T (8-28°C). By contrast, Rdark at a standard T (25°C, Rdark (25) ) was threefold higher in the Arctic than in the tropics, and twofold higher at arid than at mesic sites. Species and PFTs at cold sites exhibited higher Rdark (25) at a given photosynthetic capacity (Vcmax (25) ) or leaf nitrogen concentration ([N]) than species at warmer sites. Rdark (25) values at any given Vcmax (25) or [N] were higher in herbs than in woody plants. The results highlight variation in Rdark among species and across global gradients in T and aridity. In addition to their ecological significance, the results provide a framework for improving representation of Rdark in terrestrial biosphere models (TBMs) and associated land-surface components of Earth system models (ESMs).

Keywords
acclimation aridity climate models leaf nitrogen (N) photosynthesis plant functional types (PFTs) respiration temperature
MeSH Terms
Acclimatization Carbon Cycle Carbon Dioxide/metabolism Cell Respiration Climate Models, Theoretical Nitrogen/metabolism Phenotype Photosynthesis Plant Leaves/metabolism,radiation effects Plants/metabolism,radiation effects Temperature
Chemicals
Carbon Dioxide Nitrogen
Authors & Affiliations
63 authors, click to expand affiliations / ORCID
Atkin Owen K
ARC Centre of Excellence in Plant Energy Biology, Research School of Biology, The Australian National University, Building 134, Canberra, ACT, 0200, Australia; Division of Plant Sciences, Research School of Biology, The Australian National University, Building 46, Canberra, ACT, 0200, Australia.
Bloomfield Keith J
Reich Peter B
Tjoelker Mark G
Asner Gregory P
Bonal Damien
Bönisch Gerhard
Bradford Matt G
Cernusak Lucas A
Cosio Eric G
Creek Danielle
Crous Kristine Y
Domingues Tomas F
Dukes Jeffrey S
Egerton John J G
Evans John R
Farquhar Graham D
Fyllas Nikolaos M
Gauthier Paul P G
Gloor Emanuel
Gimeno Teresa E
Griffin Kevin L
Guerrieri Rossella
Heskel Mary A
Huntingford Chris
Ishida Françoise Yoko
Kattge Jens
Lambers Hans
Liddell Michael J
Lloyd Jon
Lusk Christopher H
Martin Roberta E
Maksimov Ayal P
Maximov Trofim C
Malhi Yadvinder
Medlyn Belinda E
Meir Patrick
Mercado Lina M
Mirotchnick Nicholas
Ng Desmond
Niinemets Ülo
O'Sullivan Odhran S
Phillips Oliver L
Poorter Lourens
Poot Pieter
Prentice I Colin
Salinas Norma
Rowland Lucy M
Ryan Michael G
Sitch Stephen
Slot Martijn
Smith Nicholas G
Turnbull Matthew H
VanderWel Mark C
Valladares Fernando
Veneklaas Erik J
Weerasinghe Lasantha K
Wirth Christian
Wright Ian J
Wythers Kirk R
Xiang Jen
Xiang Shuang
Zaragoza-Castells Joana
Article Info
Journal
The New phytologist
Abbr.
New Phytol
ISSN
1469-8137
Published
2015-04-00
Epub
2015-00-08
Pages
614-36
Language
English
Region
England
NLM ID
9882884
Subset
IM
Corrections
CommentIn
ErratumIn
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