Does root respiration in Australian rainforest tree seedlings acclimate to experimental warming?
- Author
- Nam Jin Noh Nam Jin Noh, Kristine Crous (UGent) , Jinquan Li, Zineb Choury, Craig V. M. Barton, Stefan K. Arndt, Peter B. Reich, Mark G. Tjoelker and Elise Pendall
- Organization
- Abstract
- Plant respiration can acclimate to changing environmental conditions and vary between species as well as biome types, although belowground respiration responses to ongoing climate warming are not well understood. Understanding the thermal acclimation capacity of root respiration (R-root) in relation to increasing temperatures is therefore critical in elucidating a key uncertainty in plant function in response to warming. However, the degree of temperature acclimation of R-root in rainforest trees and how root chemical and morphological traits are related to acclimation is unknown. Here we investigated the extent to which respiration of fine roots (<= 2 mm) of four tropical and four warm-temperate rainforest tree seedlings differed in response to warmer growth temperatures (control and +6 degrees C), including temperature sensitivity (Q(10)) and the degree of acclimation of R root. Regardless of biome type, we found no consistent pattern in the short-term temperature responses of R-root to elevated growth temperature: a significant reduction in the temperature response of R-root to +6 degrees C treatment was only observed for a tropical species, Cryptocarya mackinnoniana, whereas the other seven species had either some stimulation or no alteration. Across species, R-root was positively correlated with root tissue nitrogen concentration (mg g(-1)), while Q(10) was positively correlated with root tissue density (g cm(-3)). Warming increased root tissue density by 20.8% but did not alter root nitrogen across species. We conclude that thermal acclimation capacity of R-root to warming is species-specific and suggest that root tissue density is a useful predictor of R-root and its thermal responses in rainforest tree seedlings.
- Keywords
- POTENTIAL GROWTH-RATE, THERMAL-ACCLIMATION, LEAF RESPIRATION, FINE-ROOT, NITROGEN CONCENTRATION, PLANT RESPIRATION, DARK RESPIRATION, TEMPERATURE-ACCLIMATION, SUGAR MAPLE, PINUS-TAEDA, morphology, nitrogen, root tissue density, temperature acclimation, temperature sensitivity
Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-8763670
- MLA
- Nam Jin Noh, Nam Jin Noh, et al. “Does Root Respiration in Australian Rainforest Tree Seedlings Acclimate to Experimental Warming?” TREE PHYSIOLOGY, vol. 40, no. 9, 2020, pp. 1192–204, doi:10.1093/treephys/tpaa056.
- APA
- Nam Jin Noh, N. J. N., Crous, K., Li, J., Choury, Z., Barton, C. V. M., Arndt, S. K., … Pendall, E. (2020). Does root respiration in Australian rainforest tree seedlings acclimate to experimental warming? TREE PHYSIOLOGY, 40(9), 1192–1204. https://doi.org/10.1093/treephys/tpaa056
- Chicago author-date
- Nam Jin Noh, Nam Jin Noh, Kristine Crous, Jinquan Li, Zineb Choury, Craig V. M. Barton, Stefan K. Arndt, Peter B. Reich, Mark G. Tjoelker, and Elise Pendall. 2020. “Does Root Respiration in Australian Rainforest Tree Seedlings Acclimate to Experimental Warming?” TREE PHYSIOLOGY 40 (9): 1192–1204. https://doi.org/10.1093/treephys/tpaa056.
- Chicago author-date (all authors)
- Nam Jin Noh, Nam Jin Noh, Kristine Crous, Jinquan Li, Zineb Choury, Craig V. M. Barton, Stefan K. Arndt, Peter B. Reich, Mark G. Tjoelker, and Elise Pendall. 2020. “Does Root Respiration in Australian Rainforest Tree Seedlings Acclimate to Experimental Warming?” TREE PHYSIOLOGY 40 (9): 1192–1204. doi:10.1093/treephys/tpaa056.
- Vancouver
- 1.Nam Jin Noh NJN, Crous K, Li J, Choury Z, Barton CVM, Arndt SK, et al. Does root respiration in Australian rainforest tree seedlings acclimate to experimental warming? TREE PHYSIOLOGY. 2020;40(9):1192–204.
- IEEE
- [1]N. J. N. Nam Jin Noh et al., “Does root respiration in Australian rainforest tree seedlings acclimate to experimental warming?,” TREE PHYSIOLOGY, vol. 40, no. 9, pp. 1192–1204, 2020.
@article{8763670,
abstract = {{Plant respiration can acclimate to changing environmental conditions and vary between species as well as biome types, although belowground respiration responses to ongoing climate warming are not well understood. Understanding the thermal acclimation capacity of root respiration (R-root) in relation to increasing temperatures is therefore critical in elucidating a key uncertainty in plant function in response to warming. However, the degree of temperature acclimation of R-root in rainforest trees and how root chemical and morphological traits are related to acclimation is unknown. Here we investigated the extent to which respiration of fine roots (<= 2 mm) of four tropical and four warm-temperate rainforest tree seedlings differed in response to warmer growth temperatures (control and +6 degrees C), including temperature sensitivity (Q(10)) and the degree of acclimation of R root. Regardless of biome type, we found no consistent pattern in the short-term temperature responses of R-root to elevated growth temperature: a significant reduction in the temperature response of R-root to +6 degrees C treatment was only observed for a tropical species, Cryptocarya mackinnoniana, whereas the other seven species had either some stimulation or no alteration. Across species, R-root was positively correlated with root tissue nitrogen concentration (mg g(-1)), while Q(10) was positively correlated with root tissue density (g cm(-3)). Warming increased root tissue density by 20.8% but did not alter root nitrogen across species. We conclude that thermal acclimation capacity of R-root to warming is species-specific and suggest that root tissue density is a useful predictor of R-root and its thermal responses in rainforest tree seedlings.}},
author = {{Nam Jin Noh, Nam Jin Noh and Crous, Kristine and Li, Jinquan and Choury, Zineb and Barton, Craig V. M. and Arndt, Stefan K. and Reich, Peter B. and Tjoelker, Mark G. and Pendall, Elise}},
issn = {{0829-318X}},
journal = {{TREE PHYSIOLOGY}},
keywords = {{POTENTIAL GROWTH-RATE,THERMAL-ACCLIMATION,LEAF RESPIRATION,FINE-ROOT,NITROGEN CONCENTRATION,PLANT RESPIRATION,DARK RESPIRATION,TEMPERATURE-ACCLIMATION,SUGAR MAPLE,PINUS-TAEDA,morphology,nitrogen,root tissue density,temperature acclimation,temperature sensitivity}},
language = {{eng}},
number = {{9}},
pages = {{1192--1204}},
title = {{Does root respiration in Australian rainforest tree seedlings acclimate to experimental warming?}},
url = {{http://doi.org/10.1093/treephys/tpaa056}},
volume = {{40}},
year = {{2020}},
}
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