Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand.

The 12th Biennial Symposium on Microbial Ecology (ISME-12), Cairns, Australia. August 17-22, 2008.

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Main Author: Phillips, Wayne
Other Authors: Mahidol University International College. Science Division.
Format: Proceeding Book
Language:English
Published: 2015
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/35034
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Institution: Mahidol University
Language: English
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spelling th-mahidol.350342023-04-12T15:27:19Z Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand. Phillips, Wayne Mahidol University International College. Science Division. Porites lobata Chlorophyll a fluorescence Rapid light curves The 12th Biennial Symposium on Microbial Ecology (ISME-12), Cairns, Australia. August 17-22, 2008. The north, south, east and west facing sides of a Porites lobata colony, at a depth of 4.5m, experience differing intensities of light relative to each other and to the top, upward facing surface of the coral which is at a depth of 2m. Photosynthetic response to irradiance was measured as rapid light curves (RLCs) using the underwater Diving-PAM fluorometer (Walz Gmbh, Germany). Measurements were carried out at 1000hrs, 1300hrs and 1600hrs over a three day period. Photochemical efficiency of photosystem 2 at ambient light intensity (Fq′/Fm′), maximum relative rate of electron transport (rETRmax), the initial slope of the RLC (α) and the minimum saturating irradiance (Ek) were derived from RLCs. The top surface of the coral showed the lowest values of Fq′/Fm′ (eg 0.49 on day 1 at 1300hrs) with the north-facing side showing highest values (eg 0.69 on day 1 and 2 at 1300hrs). Although Fq′/Fm′ showed consistent decreases according to orientation and time of day, with lower values at 1300hrs compared to 1000hrs and 1600hrs, rETRmax, α and Ek showed less consistent variation with time or orientation. The top surface of the coral was investigated further by measuring the same parameters every hour from 0700 – 1800hrs over a 2 day period. Values ranged from a maximum 0.59 at 0700hrs to a minimum 0.35 at 1200hrs. Values recovered in the late afternoon, indicating dynamic photoinhibition. This will have implications for corals exposed to warmer waters because of climate change. 2015-06-17T10:49:05Z 2018-11-20T02:05:44Z 2015-06-17T10:49:05Z 2018-11-20T02:05:44Z 2015 2008 Proceeding Book https://repository.li.mahidol.ac.th/handle/123456789/35034 eng Mahidol University
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
language English
topic Porites lobata
Chlorophyll a fluorescence
Rapid light curves
spellingShingle Porites lobata
Chlorophyll a fluorescence
Rapid light curves
Phillips, Wayne
Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand.
description The 12th Biennial Symposium on Microbial Ecology (ISME-12), Cairns, Australia. August 17-22, 2008.
author2 Mahidol University International College. Science Division.
author_facet Mahidol University International College. Science Division.
Phillips, Wayne
format Proceeding Book
author Phillips, Wayne
author_sort Phillips, Wayne
title Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand.
title_short Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand.
title_full Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand.
title_fullStr Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand.
title_full_unstemmed Dynamic photoinhibition of photosynthesis of a large porites lobata colony, Samae San, Thailand.
title_sort dynamic photoinhibition of photosynthesis of a large porites lobata colony, samae san, thailand.
publishDate 2015
url https://repository.li.mahidol.ac.th/handle/123456789/35034
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