Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability

Marine macroalgae are unevenly distributed with depth, with substitutions of the dominant species along the bathymetric gradient. Since light shows a sharp decrease with depth and is a critical factor for algal growth, we hypothesize that species dominating at a certain depth are the best adapted to...

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Main Authors: Natàlia Sant, Enric Ballesteros
Format: Article
Language:English
Published: Consejo Superior de Investigaciones Científicas 2020-03-01
Series:Scientia Marina
Subjects:
Online Access:http://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/1840
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spelling doaj-e0d24381017f4910ba20a08d642724992021-05-05T13:49:32ZengConsejo Superior de Investigaciones CientíficasScientia Marina0214-83581886-81342020-03-0184171610.3989/scimar.04995.06A1802Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variabilityNatàlia Sant0https://orcid.org/0000-0002-5660-0131Enric Ballesteros1https://orcid.org/0000-0001-5532-5337Centre d’Estudis Avançats de Blanes, CSICCentre d’Estudis Avançats de Blanes, CSICMarine macroalgae are unevenly distributed with depth, with substitutions of the dominant species along the bathymetric gradient. Since light shows a sharp decrease with depth and is a critical factor for algal growth, we hypothesize that species dominating at a certain depth are the best adapted to the light environment reaching that depth. To this end, we selected seven species of Mediterranean macroalgae distributed from 0 to 50 m depth and looked for their photosynthetic performances. Photosynthetic responses showed striking differences, with photosynthetic efficiencies increasing at increasing depths. However, neither oxygen production at high light levels nor respiration are related to depth but seem to respond to other factors such as thallus thickness or nutrient availability. Some species show high production values in agreement with their high productivity and fast growth, while others show low production values but high biomass and durability. Thus, the species that dominates at each light level seems to be the one that makes best use of the light environment to accomplish its life cycle.http://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/1840macroalgaephotosynthesisdepth gradientsefficiencylight
collection DOAJ
language English
format Article
sources DOAJ
author Natàlia Sant
Enric Ballesteros
spellingShingle Natàlia Sant
Enric Ballesteros
Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability
Scientia Marina
macroalgae
photosynthesis
depth gradients
efficiency
light
author_facet Natàlia Sant
Enric Ballesteros
author_sort Natàlia Sant
title Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability
title_short Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability
title_full Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability
title_fullStr Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability
title_full_unstemmed Photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability
title_sort photosynthetic activity of macroalgae along a bathymetric gradient: interspecific and seasonal variability
publisher Consejo Superior de Investigaciones Científicas
series Scientia Marina
issn 0214-8358
1886-8134
publishDate 2020-03-01
description Marine macroalgae are unevenly distributed with depth, with substitutions of the dominant species along the bathymetric gradient. Since light shows a sharp decrease with depth and is a critical factor for algal growth, we hypothesize that species dominating at a certain depth are the best adapted to the light environment reaching that depth. To this end, we selected seven species of Mediterranean macroalgae distributed from 0 to 50 m depth and looked for their photosynthetic performances. Photosynthetic responses showed striking differences, with photosynthetic efficiencies increasing at increasing depths. However, neither oxygen production at high light levels nor respiration are related to depth but seem to respond to other factors such as thallus thickness or nutrient availability. Some species show high production values in agreement with their high productivity and fast growth, while others show low production values but high biomass and durability. Thus, the species that dominates at each light level seems to be the one that makes best use of the light environment to accomplish its life cycle.
topic macroalgae
photosynthesis
depth gradients
efficiency
light
url http://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/1840
work_keys_str_mv AT nataliasant photosyntheticactivityofmacroalgaealongabathymetricgradientinterspecificandseasonalvariability
AT enricballesteros photosyntheticactivityofmacroalgaealongabathymetricgradientinterspecificandseasonalvariability
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