Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX
Heme b is an iron-containing co-factor in hemoproteins. Heme b concentrations are low (<1 pmol L -1 ) in iron limited phytoplankton in cultures and in the field. Here, we determined heme b in marine particulate material (>0.7 μm) from the North Atlantic Ocean (GEOVIDE cruise – GEOTRACES sectio...
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ftfrontimediafig:oai:figshare.com:article/8858783 2023-05-15T16:52:09+02:00 Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX Evangelia Louropoulou Martha Gledhill Thomas J. Browning Dhwani K. Desai Jan-Lukas Menzel Barraqueta Manon Tonnard Géraldine Sarthou Hélène Planquette Andrew R. Bowie Ruth A. Schmitz Julie LaRoche Eric P. Achterberg 2019-07-11T13:26:13Z https://doi.org/10.3389/fmicb.2019.01566.s004 https://figshare.com/articles/Table_1_Regulation_of_the_Phytoplankton_Heme_b_Iron_Pool_During_the_North_Atlantic_Spring_Bloom_DOCX/8858783 unknown doi:10.3389/fmicb.2019.01566.s004 https://figshare.com/articles/Table_1_Regulation_of_the_Phytoplankton_Heme_b_Iron_Pool_During_the_North_Atlantic_Spring_Bloom_DOCX/8858783 CC BY 4.0 CC-BY Microbiology Microbial Genetics Microbial Ecology Mycology heme b North Atlantic phytoplankton diatoms iron limitation GEOTRACES GEOVIDE Dataset 2019 ftfrontimediafig https://doi.org/10.3389/fmicb.2019.01566.s004 2019-07-17T23:05:35Z Heme b is an iron-containing co-factor in hemoproteins. Heme b concentrations are low (<1 pmol L -1 ) in iron limited phytoplankton in cultures and in the field. Here, we determined heme b in marine particulate material (>0.7 μm) from the North Atlantic Ocean (GEOVIDE cruise – GEOTRACES section GA01), which spanned several biogeochemical regimes. We examined the relationship between heme b abundance and the microbial community composition, and its utility for mapping iron limited phytoplankton. Heme b concentrations ranged from 0.16 to 5.1 pmol L -1 (median = 2.0 pmol L -1 , n = 62) in the surface mixed layer (SML) along the cruise track, driven mainly by variability in biomass. However, in the Irminger Basin, the lowest heme b levels (SML: median = 0.53 pmol L -1 , n = 12) were observed, whilst the biomass was highest (particulate organic carbon, median = 14.2 μmol L -1 , n = 25; chlorophyll a: median = 2.0 nmol L -1 , n = 23) pointing to regulatory mechanisms of the heme b pool for growth conservation. Dissolved iron (DFe) was not depleted (SML: median = 0.38 nmol L -1 , n = 11) in the Irminger Basin, but large diatoms (Rhizosolenia sp.) dominated. Hence, heme b depletion and regulation is likely to occur during bloom progression when phytoplankton class-dependent absolute iron requirements exceed the available ambient concentration of DFe. Furthermore, high heme b concentrations found in the Iceland Basin and Labrador Sea (median = 3.4 pmol L -1 , n = 20), despite having similar DFe concentrations to the Irminger Basin, were attributed to an earlier growth phase of the extant phytoplankton populations. Thus, heme b provides a snapshot of the cellular activity in situ and could both be used as indicator of iron limitation and contribute to understanding phytoplankton adaptation mechanisms to changing iron supplies. Dataset Iceland Labrador Sea North Atlantic Frontiers: Figshare Irminger Basin ENVELOPE(-36.000,-36.000,61.000,61.000) |
institution |
Open Polar |
collection |
Frontiers: Figshare |
op_collection_id |
ftfrontimediafig |
language |
unknown |
topic |
Microbiology Microbial Genetics Microbial Ecology Mycology heme b North Atlantic phytoplankton diatoms iron limitation GEOTRACES GEOVIDE |
spellingShingle |
Microbiology Microbial Genetics Microbial Ecology Mycology heme b North Atlantic phytoplankton diatoms iron limitation GEOTRACES GEOVIDE Evangelia Louropoulou Martha Gledhill Thomas J. Browning Dhwani K. Desai Jan-Lukas Menzel Barraqueta Manon Tonnard Géraldine Sarthou Hélène Planquette Andrew R. Bowie Ruth A. Schmitz Julie LaRoche Eric P. Achterberg Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX |
topic_facet |
Microbiology Microbial Genetics Microbial Ecology Mycology heme b North Atlantic phytoplankton diatoms iron limitation GEOTRACES GEOVIDE |
description |
Heme b is an iron-containing co-factor in hemoproteins. Heme b concentrations are low (<1 pmol L -1 ) in iron limited phytoplankton in cultures and in the field. Here, we determined heme b in marine particulate material (>0.7 μm) from the North Atlantic Ocean (GEOVIDE cruise – GEOTRACES section GA01), which spanned several biogeochemical regimes. We examined the relationship between heme b abundance and the microbial community composition, and its utility for mapping iron limited phytoplankton. Heme b concentrations ranged from 0.16 to 5.1 pmol L -1 (median = 2.0 pmol L -1 , n = 62) in the surface mixed layer (SML) along the cruise track, driven mainly by variability in biomass. However, in the Irminger Basin, the lowest heme b levels (SML: median = 0.53 pmol L -1 , n = 12) were observed, whilst the biomass was highest (particulate organic carbon, median = 14.2 μmol L -1 , n = 25; chlorophyll a: median = 2.0 nmol L -1 , n = 23) pointing to regulatory mechanisms of the heme b pool for growth conservation. Dissolved iron (DFe) was not depleted (SML: median = 0.38 nmol L -1 , n = 11) in the Irminger Basin, but large diatoms (Rhizosolenia sp.) dominated. Hence, heme b depletion and regulation is likely to occur during bloom progression when phytoplankton class-dependent absolute iron requirements exceed the available ambient concentration of DFe. Furthermore, high heme b concentrations found in the Iceland Basin and Labrador Sea (median = 3.4 pmol L -1 , n = 20), despite having similar DFe concentrations to the Irminger Basin, were attributed to an earlier growth phase of the extant phytoplankton populations. Thus, heme b provides a snapshot of the cellular activity in situ and could both be used as indicator of iron limitation and contribute to understanding phytoplankton adaptation mechanisms to changing iron supplies. |
format |
Dataset |
author |
Evangelia Louropoulou Martha Gledhill Thomas J. Browning Dhwani K. Desai Jan-Lukas Menzel Barraqueta Manon Tonnard Géraldine Sarthou Hélène Planquette Andrew R. Bowie Ruth A. Schmitz Julie LaRoche Eric P. Achterberg |
author_facet |
Evangelia Louropoulou Martha Gledhill Thomas J. Browning Dhwani K. Desai Jan-Lukas Menzel Barraqueta Manon Tonnard Géraldine Sarthou Hélène Planquette Andrew R. Bowie Ruth A. Schmitz Julie LaRoche Eric P. Achterberg |
author_sort |
Evangelia Louropoulou |
title |
Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX |
title_short |
Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX |
title_full |
Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX |
title_fullStr |
Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX |
title_full_unstemmed |
Table_1_Regulation of the Phytoplankton Heme b Iron Pool During the North Atlantic Spring Bloom.DOCX |
title_sort |
table_1_regulation of the phytoplankton heme b iron pool during the north atlantic spring bloom.docx |
publishDate |
2019 |
url |
https://doi.org/10.3389/fmicb.2019.01566.s004 https://figshare.com/articles/Table_1_Regulation_of_the_Phytoplankton_Heme_b_Iron_Pool_During_the_North_Atlantic_Spring_Bloom_DOCX/8858783 |
long_lat |
ENVELOPE(-36.000,-36.000,61.000,61.000) |
geographic |
Irminger Basin |
geographic_facet |
Irminger Basin |
genre |
Iceland Labrador Sea North Atlantic |
genre_facet |
Iceland Labrador Sea North Atlantic |
op_relation |
doi:10.3389/fmicb.2019.01566.s004 https://figshare.com/articles/Table_1_Regulation_of_the_Phytoplankton_Heme_b_Iron_Pool_During_the_North_Atlantic_Spring_Bloom_DOCX/8858783 |
op_rights |
CC BY 4.0 |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.3389/fmicb.2019.01566.s004 |
_version_ |
1766042305967423488 |