Endolithic chlorophyll d-containing phototrophs
Cyanobacteria in the genus Acaryochloris are the only known oxyphototrophs that have exchanged chlorophyll a (Chl a ) with Chl d as their primary photopigment, facilitating oxygenic photosynthesis with near infrared (NIR) light. Yet their ecology and natural habitats are largely unknown. We used hyp...
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Published in | The ISME Journal Vol. 5; no. 6; pp. 1072 - 1076 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
01.06.2011
Oxford University Press Nature Publishing Group |
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Abstract | Cyanobacteria in the genus
Acaryochloris
are the only known oxyphototrophs that have exchanged chlorophyll
a
(Chl
a
) with Chl
d
as their primary photopigment, facilitating oxygenic photosynthesis with near infrared (NIR) light. Yet their ecology and natural habitats are largely unknown. We used hyperspectral and variable chlorophyll fluorescence imaging, scanning electron microscopy, photopigment analysis and DNA sequencing to show that
Acaryochloris
-like cyanobacteria thrive underneath crustose coralline algae in a widespread endolithic habitat on coral reefs. This finding suggests an important role of Chl
d
-containing cyanobacteria in a range of hitherto unexplored endolithic habitats, where NIR light-driven oxygenic photosynthesis may be significant. |
---|---|
AbstractList | Cyanobacteria in the genus Acaryochloris are the only known oxyphototrophs that have exchanged chlorophyll a (Chl a) with Chl d as their primary photopigment, facilitating oxygenic photosynthesis with near infrared (NIR) light. Yet their ecology and natural habitats are largely unknown. We used hyperspectral and variable chlorophyll fluorescence imaging, scanning electron microscopy, photopigment analysis and DNA sequencing to show that Acaryochloris-like cyanobacteria thrive underneath crustose coralline algae in a widespread endolithic habitat on coral reefs. This finding suggests an important role of Chl d-containing cyanobacteria in a range of hitherto unexplored endolithic habitats, where NIR light-driven oxygenic photosynthesis may be significant. Cyanobacteria in the genus Acaryochloris are the only known oxyphototrophs that have exchanged chlorophyll a (Chl a ) with Chl d as their primary photopigment, facilitating oxygenic photosynthesis with near infrared (NIR) light. Yet their ecology and natural habitats are largely unknown. We used hyperspectral and variable chlorophyll fluorescence imaging, scanning electron microscopy, photopigment analysis and DNA sequencing to show that Acaryochloris -like cyanobacteria thrive underneath crustose coralline algae in a widespread endolithic habitat on coral reefs. This finding suggests an important role of Chl d -containing cyanobacteria in a range of hitherto unexplored endolithic habitats, where NIR light-driven oxygenic photosynthesis may be significant. Cyanobacteria in the genus Acaryochloris are the only known oxyphototrophs that have exchanged chlorophyll a (Chl a) with Chl d as their primary photopigment, facilitating oxygenic photosynthesis with near infrared (NIR) light. Yet their ecology and natural habitats are largely unknown. We used hyperspectral and variable chlorophyll fluorescence imaging, scanning electron microscopy, photopigment analysis and DNA sequencing to show that Acaryochloris-like cyanobacteria thrive underneath crustose coralline algae in a widespread endolithic habitat on coral reefs. This finding suggests an important role of Chl d-containing cyanobacteria in a range of hitherto unexplored endolithic habitats, where NIR light-driven oxygenic photosynthesis may be significant.Cyanobacteria in the genus Acaryochloris are the only known oxyphototrophs that have exchanged chlorophyll a (Chl a) with Chl d as their primary photopigment, facilitating oxygenic photosynthesis with near infrared (NIR) light. Yet their ecology and natural habitats are largely unknown. We used hyperspectral and variable chlorophyll fluorescence imaging, scanning electron microscopy, photopigment analysis and DNA sequencing to show that Acaryochloris-like cyanobacteria thrive underneath crustose coralline algae in a widespread endolithic habitat on coral reefs. This finding suggests an important role of Chl d-containing cyanobacteria in a range of hitherto unexplored endolithic habitats, where NIR light-driven oxygenic photosynthesis may be significant. |
Author | Norman, Anders Kühl, Michael Sørensen, Søren J Larkum, Anthony WD Behrendt, Lars Chen, Min Trampe, Erik Qvortrup, Klaus Ralph, Peter |
Author_xml | – sequence: 1 givenname: Lars surname: Behrendt fullname: Behrendt, Lars organization: Department of Biology, Marine Biological Laboratory, University of Copenhagen, Department of Biology, Section for Microbiology, University of Copenhagen – sequence: 2 givenname: Anthony WD surname: Larkum fullname: Larkum, Anthony WD organization: School of Biological Sciences, University of Sydney, Plant Functional Biology and Climate Change Cluster, University of Technology Sydney – sequence: 3 givenname: Anders surname: Norman fullname: Norman, Anders organization: Department of Biology, Section for Microbiology, University of Copenhagen – sequence: 4 givenname: Klaus surname: Qvortrup fullname: Qvortrup, Klaus organization: Department of Biomedical Sciences, University of Copenhagen – sequence: 5 givenname: Min surname: Chen fullname: Chen, Min organization: School of Biological Sciences, University of Sydney – sequence: 6 givenname: Peter surname: Ralph fullname: Ralph, Peter organization: Plant Functional Biology and Climate Change Cluster, University of Technology Sydney – sequence: 7 givenname: Søren J surname: Sørensen fullname: Sørensen, Søren J organization: Department of Biology, Section for Microbiology, University of Copenhagen – sequence: 8 givenname: Erik surname: Trampe fullname: Trampe, Erik organization: Department of Biology, Marine Biological Laboratory, University of Copenhagen – sequence: 9 givenname: Michael surname: Kühl fullname: Kühl, Michael email: mkuhl@bio.ku.dk organization: Department of Biology, Marine Biological Laboratory, University of Copenhagen, Plant Functional Biology and Climate Change Cluster, University of Technology Sydney |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/21160540$$D View this record in MEDLINE/PubMed |
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Snippet | Cyanobacteria in the genus
Acaryochloris
are the only known oxyphototrophs that have exchanged chlorophyll
a
(Chl
a
) with Chl
d
as their primary photopigment,... Cyanobacteria in the genus Acaryochloris are the only known oxyphototrophs that have exchanged chlorophyll a (Chl a) with Chl d as their primary photopigment,... |
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SubjectTerms | 631/158/2446/837 631/326/2565/855 Algae Animals Anthozoa - microbiology Biomedical and Life Sciences Chlorophyll Chlorophyll - analysis Coral Reefs Cyanobacteria Cyanobacteria - genetics Cyanobacteria - isolation & purification Cyanobacteria - metabolism Cyanobacteria - ultrastructure Deoxyribonucleic acid DNA Ecology Ecosystem Evolutionary Biology Fluorescence Habitats Life Sciences Light Microbial Ecology Microbial Genetics and Genomics Microbiology Photosynthesis Rhodophyta - chemistry Rhodophyta - metabolism Short Communication |
Title | Endolithic chlorophyll d-containing phototrophs |
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