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  5. Thermal dependence of seagrass ecosystem metabolism in the Red Sea

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Article
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2019

Thermal dependence of seagrass ecosystem metabolism in the Red Sea

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en
2019
Vol 614
Vol. 614
DOI: 10.3354/meps12912

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Carlos M. Duarte
Carlos M. Duarte

King Abdullah University of Science and Technology

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Celina Burkholz
Carlos M. Duarte
Neus Garcías-Bonet

Abstract

MEPS Marine Ecology Progress Series Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsTheme Sections MEPS 614:79-90 (2019) - DOI: https://doi.org/10.3354/meps12912 Thermal dependence of seagrass ecosystem metabolism in the Red Sea Celina Burkholz, Carlos M. Duarte, Neus Garcias-Bonet* Red Sea Research Center, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia *Corresponding author: neus.garciasbonet@kaust.edu.sa ABSTRACT: The Red Sea is one of the warmest seas with shallow seagrass ecosystems exposed to extreme temperatures, in excess of 35°C, during the summer months. Seagrass meadows are net autotrophic ecosystems, but respiration increases faster than primary production with temperature. This may lead to a shift from an autotrophic to a heterotrophic system at the highest temperatures. Although tropical seagrasses are adapted to high temperatures, the metabolic rates of Red Sea seagrasses have not yet been reported. Here we assessed the community metabolism of 2 seagrass ecosystems, an Enhalus acoroides monospecific meadow and a Cymodocea serrulata and Halodule uninervis mixed meadow, located in the central Red Sea. We measured in situ net community production (NCP), community respiration (R), gross primary production (GPP), activation energy and community production-irradiance curves along their natural temperature gradient over 1 yr by measuring diel fluctuations in dissolved oxygen. The results were species-specific; while the monospecific meadow was autotrophic throughout the year (annual weighted average NCP: 64.63 ± 11.89 mmol O2 m-2 d-1, GPP:R ratio: 1.42 ± 0.06), the mixed meadow was heterotrophic during the summer months (annual weighted average NCP: -4.15 ± 9.39 mmol O2 m-2 d-1, GPP:R: 1.04 ± 0.05). In both seagrass meadows, R and GPP increased with increasing temperature, but differences in activation energies indicated that the mixed meadow is more sensitive to increasing seawater temperatures. These findings suggest contrasting responses in tropical seagrass species to rising temperature, pointing out the potential vulnerability of seagrasses to ocean warming in the Red Sea. KEY WORDS: Seagrass ecosystems · Community metabolism · Thermal dependence · Activation energy · PI curves · Red Sea Full text in pdf format Supplementary material PreviousNextCite this article as: Burkholz C, Duarte CM, Garcias-Bonet N (2019) Thermal dependence of seagrass ecosystem metabolism in the Red Sea. Mar Ecol Prog Ser 614:79-90. https://doi.org/10.3354/meps12912 Export citation RSS - Facebook - Tweet - linkedIn Cited by Published in MEPS Vol. 614. Online publication date: April 04, 2019 Print ISSN: 0171-8630; Online ISSN: 1616-1599 Copyright © 2019 Inter-Research.

How to cite this publication

Celina Burkholz, Carlos M. Duarte, Neus Garcías-Bonet (2019). Thermal dependence of seagrass ecosystem metabolism in the Red Sea. , 614, DOI: https://doi.org/10.3354/meps12912.

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Publication Details

Type

Article

Year

2019

Authors

3

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.3354/meps12912

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