Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway.
Comparing A) continuous darkness (DD) B) periodicity of blue light (LDB) C) periodicity of green light (LDG) D) periodicity of red light (LDR) to periodicity of white light (LDM). The scale indicates the logfold2 change and the color code indicate upregulated (blue) and downregulated (red) genes. (T...
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ftunivfreestate:oai:figshare.com:article/21711936 2023-05-15T15:32:13+02:00 Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway. Mariann Eilertsen (11502317) David W. P. Dolan (14247792) Charlotte M. Bolton (11780345) Rita Karlsen (13025421) Wayne I. L. Davies (8028890) Rolf B. Edvardsen (6913946) Tomasz Furmanek (283506) Harald Sveier (8218770) Herve Migaud (308426) Jon Vidar Helvik (8028887) 2022-12-12T18:22:53Z https://doi.org/10.1371/journal.pgen.1010529.s006 unknown https://figshare.com/articles/figure/Differentially_expressed_genes_apparent_in_the_Kyoto_Encyclopedia_of_Genes_and_Genomes_KEGG_phototransduction_pathway_/21711936 doi:10.1371/journal.pgen.1010529.s006 CC BY 4.0 CC-BY Microbiology Cell Biology Genetics Molecular Biology Neuroscience Physiology Ecology Developmental Biology Inorganic Chemistry Mental Health Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified salmo salar </ atlantic salmon (< complex photoreceptive system photoperiod </ p div >< p early developmental stages two clock genes several clock genes differing light conditions developing teleost prior circadian profile showed different light conditions constant white light constant conditions circadian profile clock genes white light light conditions constant light significantly different results showed present prior photoreceptive capacity developmental series expressed early early development light environment light condition green light many genes genes related genes associated transcriptomic response transcriptome profile study implies significantly cycling seasonal changes poorly differentiated Image Figure 2022 ftunivfreestate https://doi.org/10.1371/journal.pgen.1010529.s006 2022-12-16T00:33:55Z Comparing A) continuous darkness (DD) B) periodicity of blue light (LDB) C) periodicity of green light (LDG) D) periodicity of red light (LDR) to periodicity of white light (LDM). The scale indicates the logfold2 change and the color code indicate upregulated (blue) and downregulated (red) genes. (TIF) Still Image Atlantic salmon Salmo salar KovsieScholar Repository (University of the Free State - UFS UV) |
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Open Polar |
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KovsieScholar Repository (University of the Free State - UFS UV) |
op_collection_id |
ftunivfreestate |
language |
unknown |
topic |
Microbiology Cell Biology Genetics Molecular Biology Neuroscience Physiology Ecology Developmental Biology Inorganic Chemistry Mental Health Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified salmo salar </ atlantic salmon (< complex photoreceptive system photoperiod </ p div >< p early developmental stages two clock genes several clock genes differing light conditions developing teleost prior circadian profile showed different light conditions constant white light constant conditions circadian profile clock genes white light light conditions constant light significantly different results showed present prior photoreceptive capacity developmental series expressed early early development light environment light condition green light many genes genes related genes associated transcriptomic response transcriptome profile study implies significantly cycling seasonal changes poorly differentiated |
spellingShingle |
Microbiology Cell Biology Genetics Molecular Biology Neuroscience Physiology Ecology Developmental Biology Inorganic Chemistry Mental Health Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified salmo salar </ atlantic salmon (< complex photoreceptive system photoperiod </ p div >< p early developmental stages two clock genes several clock genes differing light conditions developing teleost prior circadian profile showed different light conditions constant white light constant conditions circadian profile clock genes white light light conditions constant light significantly different results showed present prior photoreceptive capacity developmental series expressed early early development light environment light condition green light many genes genes related genes associated transcriptomic response transcriptome profile study implies significantly cycling seasonal changes poorly differentiated Mariann Eilertsen (11502317) David W. P. Dolan (14247792) Charlotte M. Bolton (11780345) Rita Karlsen (13025421) Wayne I. L. Davies (8028890) Rolf B. Edvardsen (6913946) Tomasz Furmanek (283506) Harald Sveier (8218770) Herve Migaud (308426) Jon Vidar Helvik (8028887) Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway. |
topic_facet |
Microbiology Cell Biology Genetics Molecular Biology Neuroscience Physiology Ecology Developmental Biology Inorganic Chemistry Mental Health Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified salmo salar </ atlantic salmon (< complex photoreceptive system photoperiod </ p div >< p early developmental stages two clock genes several clock genes differing light conditions developing teleost prior circadian profile showed different light conditions constant white light constant conditions circadian profile clock genes white light light conditions constant light significantly different results showed present prior photoreceptive capacity developmental series expressed early early development light environment light condition green light many genes genes related genes associated transcriptomic response transcriptome profile study implies significantly cycling seasonal changes poorly differentiated |
description |
Comparing A) continuous darkness (DD) B) periodicity of blue light (LDB) C) periodicity of green light (LDG) D) periodicity of red light (LDR) to periodicity of white light (LDM). The scale indicates the logfold2 change and the color code indicate upregulated (blue) and downregulated (red) genes. (TIF) |
format |
Still Image |
author |
Mariann Eilertsen (11502317) David W. P. Dolan (14247792) Charlotte M. Bolton (11780345) Rita Karlsen (13025421) Wayne I. L. Davies (8028890) Rolf B. Edvardsen (6913946) Tomasz Furmanek (283506) Harald Sveier (8218770) Herve Migaud (308426) Jon Vidar Helvik (8028887) |
author_facet |
Mariann Eilertsen (11502317) David W. P. Dolan (14247792) Charlotte M. Bolton (11780345) Rita Karlsen (13025421) Wayne I. L. Davies (8028890) Rolf B. Edvardsen (6913946) Tomasz Furmanek (283506) Harald Sveier (8218770) Herve Migaud (308426) Jon Vidar Helvik (8028887) |
author_sort |
Mariann Eilertsen (11502317) |
title |
Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway. |
title_short |
Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway. |
title_full |
Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway. |
title_fullStr |
Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway. |
title_full_unstemmed |
Differentially expressed genes apparent in the Kyoto Encyclopedia of Genes and Genomes (KEGG) phototransduction pathway. |
title_sort |
differentially expressed genes apparent in the kyoto encyclopedia of genes and genomes (kegg) phototransduction pathway. |
publishDate |
2022 |
url |
https://doi.org/10.1371/journal.pgen.1010529.s006 |
genre |
Atlantic salmon Salmo salar |
genre_facet |
Atlantic salmon Salmo salar |
op_relation |
https://figshare.com/articles/figure/Differentially_expressed_genes_apparent_in_the_Kyoto_Encyclopedia_of_Genes_and_Genomes_KEGG_phototransduction_pathway_/21711936 doi:10.1371/journal.pgen.1010529.s006 |
op_rights |
CC BY 4.0 |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.1371/journal.pgen.1010529.s006 |
_version_ |
1766362724497883136 |