Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment.
The values represent the means ± SD (n = 3). Different letters indicate significant differences between treatments (p < 0.05).
Main Authors: | , , , |
---|---|
Format: | Dataset |
Language: | unknown |
Published: |
2021
|
Subjects: | |
Online Access: | https://doi.org/10.1371/journal.pone.0260649.t004 |
id |
ftsmithonian:oai:figshare.com:article/17160374 |
---|---|
record_format |
openpolar |
spelling |
ftsmithonian:oai:figshare.com:article/17160374 2023-05-15T18:24:57+02:00 Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment. Anna Pagnone (11824679) Florian Koch (6508592) Franziska Pausch (7387982) Scarlett Trimborn (487685) 2021-12-10T18:29:15Z https://doi.org/10.1371/journal.pone.0260649.t004 unknown https://figshare.com/articles/dataset/Connectivity_P_cellular_concentration_of_functional_PSII_reaction_centers_RCII_light_utilization_efficiency_at_low_irradiance_maximum_cellular_electron_transport_rate_cETR_sub_max_sub_and_minimum_saturating_irradiance_I_sub_k_sub_of_i_P_i_i/17160374 doi:10.1371/journal.pone.0260649.t004 CC BY 4.0 CC-BY Molecular Biology Evolutionary Biology Ecology Developmental Biology Marine Biology Cancer Infectious Diseases Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified thicker silica shells particulate organic carbon negative effect caused increased dust deposition form prominent blooms 290 &# 956 div >< p > thus contributing lower atmospheric pco 290 μatm pco interglacial climatic conditions 190 &# 956 nitzschia subcurvata </ interglacial ocean conditions southern ocean diatom low fe availability favored poc production higher fe availability southern ocean interglacial conditions subcurvata </ p </ low pco higher pco interglacial times known higher degree different pco glacial ocean glacial conditions fe input fe deficiency fe addition similar rates results show primary production poc production influences growth flourished better diatom grew diatom could combined effects Dataset 2021 ftsmithonian https://doi.org/10.1371/journal.pone.0260649.t004 2021-12-19T19:41:58Z The values represent the means ± SD (n = 3). Different letters indicate significant differences between treatments (p < 0.05). Dataset Southern Ocean Unknown Southern Ocean |
institution |
Open Polar |
collection |
Unknown |
op_collection_id |
ftsmithonian |
language |
unknown |
topic |
Molecular Biology Evolutionary Biology Ecology Developmental Biology Marine Biology Cancer Infectious Diseases Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified thicker silica shells particulate organic carbon negative effect caused increased dust deposition form prominent blooms 290 &# 956 div >< p > thus contributing lower atmospheric pco 290 μatm pco interglacial climatic conditions 190 &# 956 nitzschia subcurvata </ interglacial ocean conditions southern ocean diatom low fe availability favored poc production higher fe availability southern ocean interglacial conditions subcurvata </ p </ low pco higher pco interglacial times known higher degree different pco glacial ocean glacial conditions fe input fe deficiency fe addition similar rates results show primary production poc production influences growth flourished better diatom grew diatom could combined effects |
spellingShingle |
Molecular Biology Evolutionary Biology Ecology Developmental Biology Marine Biology Cancer Infectious Diseases Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified thicker silica shells particulate organic carbon negative effect caused increased dust deposition form prominent blooms 290 &# 956 div >< p > thus contributing lower atmospheric pco 290 μatm pco interglacial climatic conditions 190 &# 956 nitzschia subcurvata </ interglacial ocean conditions southern ocean diatom low fe availability favored poc production higher fe availability southern ocean interglacial conditions subcurvata </ p </ low pco higher pco interglacial times known higher degree different pco glacial ocean glacial conditions fe input fe deficiency fe addition similar rates results show primary production poc production influences growth flourished better diatom grew diatom could combined effects Anna Pagnone (11824679) Florian Koch (6508592) Franziska Pausch (7387982) Scarlett Trimborn (487685) Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment. |
topic_facet |
Molecular Biology Evolutionary Biology Ecology Developmental Biology Marine Biology Cancer Infectious Diseases Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified thicker silica shells particulate organic carbon negative effect caused increased dust deposition form prominent blooms 290 &# 956 div >< p > thus contributing lower atmospheric pco 290 μatm pco interglacial climatic conditions 190 &# 956 nitzschia subcurvata </ interglacial ocean conditions southern ocean diatom low fe availability favored poc production higher fe availability southern ocean interglacial conditions subcurvata </ p </ low pco higher pco interglacial times known higher degree different pco glacial ocean glacial conditions fe input fe deficiency fe addition similar rates results show primary production poc production influences growth flourished better diatom grew diatom could combined effects |
description |
The values represent the means ± SD (n = 3). Different letters indicate significant differences between treatments (p < 0.05). |
format |
Dataset |
author |
Anna Pagnone (11824679) Florian Koch (6508592) Franziska Pausch (7387982) Scarlett Trimborn (487685) |
author_facet |
Anna Pagnone (11824679) Florian Koch (6508592) Franziska Pausch (7387982) Scarlett Trimborn (487685) |
author_sort |
Anna Pagnone (11824679) |
title |
Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment. |
title_short |
Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment. |
title_full |
Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment. |
title_fullStr |
Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment. |
title_full_unstemmed |
Connectivity (P), cellular concentration of functional PSII reaction centers (RCII), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cETR max ) and minimum saturating irradiance (I k ,) of P . subcurvata in the four treatments ( +Fe 190 , Control 190 , +Fe 290 and Control 290 ) at the end of the experiment. |
title_sort |
connectivity (p), cellular concentration of functional psii reaction centers (rcii), light utilization efficiency at low irradiance (α), maximum cellular electron transport rate (cetr max ) and minimum saturating irradiance (i k ,) of p . subcurvata in the four treatments ( +fe 190 , control 190 , +fe 290 and control 290 ) at the end of the experiment. |
publishDate |
2021 |
url |
https://doi.org/10.1371/journal.pone.0260649.t004 |
geographic |
Southern Ocean |
geographic_facet |
Southern Ocean |
genre |
Southern Ocean |
genre_facet |
Southern Ocean |
op_relation |
https://figshare.com/articles/dataset/Connectivity_P_cellular_concentration_of_functional_PSII_reaction_centers_RCII_light_utilization_efficiency_at_low_irradiance_maximum_cellular_electron_transport_rate_cETR_sub_max_sub_and_minimum_saturating_irradiance_I_sub_k_sub_of_i_P_i_i/17160374 doi:10.1371/journal.pone.0260649.t004 |
op_rights |
CC BY 4.0 |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.1371/journal.pone.0260649.t004 |
_version_ |
1766206002363891712 |