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KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome

BACKGROUND: Contemporary coral reef research has firmly established that a genomic approach is urgently needed to better understand the effects of anthropogenic environmental stress and global climate change on coral holobiont interactions. Here we present KEGG orthology-based annotation of the comp...

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Autores principales: Dunlap, Walter C, Starcevic, Antonio, Baranasic, Damir, Diminic, Janko, Zucko, Jurica, Gacesa, Ranko, van Oppen, Madeleine JH, Hranueli, Daslav, Cullum, John, Long, Paul F
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3750612/
https://www.ncbi.nlm.nih.gov/pubmed/23889801
http://dx.doi.org/10.1186/1471-2164-14-509
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author Dunlap, Walter C
Starcevic, Antonio
Baranasic, Damir
Diminic, Janko
Zucko, Jurica
Gacesa, Ranko
van Oppen, Madeleine JH
Hranueli, Daslav
Cullum, John
Long, Paul F
author_facet Dunlap, Walter C
Starcevic, Antonio
Baranasic, Damir
Diminic, Janko
Zucko, Jurica
Gacesa, Ranko
van Oppen, Madeleine JH
Hranueli, Daslav
Cullum, John
Long, Paul F
author_sort Dunlap, Walter C
collection PubMed
description BACKGROUND: Contemporary coral reef research has firmly established that a genomic approach is urgently needed to better understand the effects of anthropogenic environmental stress and global climate change on coral holobiont interactions. Here we present KEGG orthology-based annotation of the complete genome sequence of the scleractinian coral Acropora digitifera and provide the first comprehensive view of the genome of a reef-building coral by applying advanced bioinformatics. DESCRIPTION: Sequences from the KEGG database of protein function were used to construct hidden Markov models. These models were used to search the predicted proteome of A. digitifera to establish complete genomic annotation. The annotated dataset is published in ZoophyteBase, an open access format with different options for searching the data. A particularly useful feature is the ability to use a Google-like search engine that links query words to protein attributes. We present features of the annotation that underpin the molecular structure of key processes of coral physiology that include (1) regulatory proteins of symbiosis, (2) planula and early developmental proteins, (3) neural messengers, receptors and sensory proteins, (4) calcification and Ca(2+)-signalling proteins, (5) plant-derived proteins, (6) proteins of nitrogen metabolism, (7) DNA repair proteins, (8) stress response proteins, (9) antioxidant and redox-protective proteins, (10) proteins of cellular apoptosis, (11) microbial symbioses and pathogenicity proteins, (12) proteins of viral pathogenicity, (13) toxins and venom, (14) proteins of the chemical defensome and (15) coral epigenetics. CONCLUSIONS: We advocate that providing annotation in an open-access searchable database available to the public domain will give an unprecedented foundation to interrogate the fundamental molecular structure and interactions of coral symbiosis and allow critical questions to be addressed at the genomic level based on combined aspects of evolutionary, developmental, metabolic, and environmental perspectives.
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spelling pubmed-37506122013-08-24 KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome Dunlap, Walter C Starcevic, Antonio Baranasic, Damir Diminic, Janko Zucko, Jurica Gacesa, Ranko van Oppen, Madeleine JH Hranueli, Daslav Cullum, John Long, Paul F BMC Genomics Database BACKGROUND: Contemporary coral reef research has firmly established that a genomic approach is urgently needed to better understand the effects of anthropogenic environmental stress and global climate change on coral holobiont interactions. Here we present KEGG orthology-based annotation of the complete genome sequence of the scleractinian coral Acropora digitifera and provide the first comprehensive view of the genome of a reef-building coral by applying advanced bioinformatics. DESCRIPTION: Sequences from the KEGG database of protein function were used to construct hidden Markov models. These models were used to search the predicted proteome of A. digitifera to establish complete genomic annotation. The annotated dataset is published in ZoophyteBase, an open access format with different options for searching the data. A particularly useful feature is the ability to use a Google-like search engine that links query words to protein attributes. We present features of the annotation that underpin the molecular structure of key processes of coral physiology that include (1) regulatory proteins of symbiosis, (2) planula and early developmental proteins, (3) neural messengers, receptors and sensory proteins, (4) calcification and Ca(2+)-signalling proteins, (5) plant-derived proteins, (6) proteins of nitrogen metabolism, (7) DNA repair proteins, (8) stress response proteins, (9) antioxidant and redox-protective proteins, (10) proteins of cellular apoptosis, (11) microbial symbioses and pathogenicity proteins, (12) proteins of viral pathogenicity, (13) toxins and venom, (14) proteins of the chemical defensome and (15) coral epigenetics. CONCLUSIONS: We advocate that providing annotation in an open-access searchable database available to the public domain will give an unprecedented foundation to interrogate the fundamental molecular structure and interactions of coral symbiosis and allow critical questions to be addressed at the genomic level based on combined aspects of evolutionary, developmental, metabolic, and environmental perspectives. BioMed Central 2013-07-26 /pmc/articles/PMC3750612/ /pubmed/23889801 http://dx.doi.org/10.1186/1471-2164-14-509 Text en Copyright © 2013 Dunlap et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Database
Dunlap, Walter C
Starcevic, Antonio
Baranasic, Damir
Diminic, Janko
Zucko, Jurica
Gacesa, Ranko
van Oppen, Madeleine JH
Hranueli, Daslav
Cullum, John
Long, Paul F
KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome
title KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome
title_full KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome
title_fullStr KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome
title_full_unstemmed KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome
title_short KEGG orthology-based annotation of the predicted proteome of Acropora digitifera: ZoophyteBase - an open access and searchable database of a coral genome
title_sort kegg orthology-based annotation of the predicted proteome of acropora digitifera: zoophytebase - an open access and searchable database of a coral genome
topic Database
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3750612/
https://www.ncbi.nlm.nih.gov/pubmed/23889801
http://dx.doi.org/10.1186/1471-2164-14-509
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