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The complete genome sequence of Clostridium indolis DSM 755(T)

Clostridium indolis DSM 755(T) is a bacterium commonly found in soils and the feces of birds and mammals. Despite its prevalence, little is known about the ecology or physiology of this species. However, close relatives, C. saccharolyticum and C. hathewayi, have demonstrated interesting metabolic po...

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Autores principales: Biddle, Amy S., Leschine, Susan, Huntemann, Marcel, Han, James, Chen, Amy, Kyrpides, Nikos, Markowitz, Victor, Palaniappan, Krishna, Ivanova, Natalia, Mikhailova, Natalia, Ovchinnikova, Galina, Schaumberg, Andrew, Pati, Amrita, Stamatis, Dimitrios, Reddy, Tatiparthi, Lobos, Elizabeth, Goodwin, Lynne, Nordberg, Henrik P., Cantor, Michael N., Hua, Susan X., Woyke, Tanja, Blanchard, Jeffrey L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Michigan State University 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4149025/
https://www.ncbi.nlm.nih.gov/pubmed/25197485
http://dx.doi.org/10.4056/sigs.5281010
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author Biddle, Amy S.
Leschine, Susan
Huntemann, Marcel
Han, James
Chen, Amy
Kyrpides, Nikos
Markowitz, Victor
Palaniappan, Krishna
Ivanova, Natalia
Mikhailova, Natalia
Ovchinnikova, Galina
Schaumberg, Andrew
Pati, Amrita
Stamatis, Dimitrios
Reddy, Tatiparthi
Lobos, Elizabeth
Goodwin, Lynne
Nordberg, Henrik P.
Cantor, Michael N.
Hua, Susan X.
Woyke, Tanja
Blanchard, Jeffrey L.
author_facet Biddle, Amy S.
Leschine, Susan
Huntemann, Marcel
Han, James
Chen, Amy
Kyrpides, Nikos
Markowitz, Victor
Palaniappan, Krishna
Ivanova, Natalia
Mikhailova, Natalia
Ovchinnikova, Galina
Schaumberg, Andrew
Pati, Amrita
Stamatis, Dimitrios
Reddy, Tatiparthi
Lobos, Elizabeth
Goodwin, Lynne
Nordberg, Henrik P.
Cantor, Michael N.
Hua, Susan X.
Woyke, Tanja
Blanchard, Jeffrey L.
author_sort Biddle, Amy S.
collection PubMed
description Clostridium indolis DSM 755(T) is a bacterium commonly found in soils and the feces of birds and mammals. Despite its prevalence, little is known about the ecology or physiology of this species. However, close relatives, C. saccharolyticum and C. hathewayi, have demonstrated interesting metabolic potentials related to plant degradation and human health. The genome of C. indolis DSM 755(T) reveals an abundance of genes in functional groups associated with the transport and utilization of carbohydrates, as well as citrate, lactate, and aromatics. Ecologically relevant gene clusters related to nitrogen fixation and a unique type of bacterial microcompartment, the CoAT BMC, are also detected. Our genome analysis suggests hypotheses to be tested in future culture based work to better understand the physiology of this poorly described species.
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spelling pubmed-41490252014-09-05 The complete genome sequence of Clostridium indolis DSM 755(T) Biddle, Amy S. Leschine, Susan Huntemann, Marcel Han, James Chen, Amy Kyrpides, Nikos Markowitz, Victor Palaniappan, Krishna Ivanova, Natalia Mikhailova, Natalia Ovchinnikova, Galina Schaumberg, Andrew Pati, Amrita Stamatis, Dimitrios Reddy, Tatiparthi Lobos, Elizabeth Goodwin, Lynne Nordberg, Henrik P. Cantor, Michael N. Hua, Susan X. Woyke, Tanja Blanchard, Jeffrey L. Stand Genomic Sci Short Genome Reports Clostridium indolis DSM 755(T) is a bacterium commonly found in soils and the feces of birds and mammals. Despite its prevalence, little is known about the ecology or physiology of this species. However, close relatives, C. saccharolyticum and C. hathewayi, have demonstrated interesting metabolic potentials related to plant degradation and human health. The genome of C. indolis DSM 755(T) reveals an abundance of genes in functional groups associated with the transport and utilization of carbohydrates, as well as citrate, lactate, and aromatics. Ecologically relevant gene clusters related to nitrogen fixation and a unique type of bacterial microcompartment, the CoAT BMC, are also detected. Our genome analysis suggests hypotheses to be tested in future culture based work to better understand the physiology of this poorly described species. Michigan State University 2014-03-18 /pmc/articles/PMC4149025/ /pubmed/25197485 http://dx.doi.org/10.4056/sigs.5281010 Text en Copyright © retained by original authors http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Genome Reports
Biddle, Amy S.
Leschine, Susan
Huntemann, Marcel
Han, James
Chen, Amy
Kyrpides, Nikos
Markowitz, Victor
Palaniappan, Krishna
Ivanova, Natalia
Mikhailova, Natalia
Ovchinnikova, Galina
Schaumberg, Andrew
Pati, Amrita
Stamatis, Dimitrios
Reddy, Tatiparthi
Lobos, Elizabeth
Goodwin, Lynne
Nordberg, Henrik P.
Cantor, Michael N.
Hua, Susan X.
Woyke, Tanja
Blanchard, Jeffrey L.
The complete genome sequence of Clostridium indolis DSM 755(T)
title The complete genome sequence of Clostridium indolis DSM 755(T)
title_full The complete genome sequence of Clostridium indolis DSM 755(T)
title_fullStr The complete genome sequence of Clostridium indolis DSM 755(T)
title_full_unstemmed The complete genome sequence of Clostridium indolis DSM 755(T)
title_short The complete genome sequence of Clostridium indolis DSM 755(T)
title_sort complete genome sequence of clostridium indolis dsm 755(t)
topic Short Genome Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4149025/
https://www.ncbi.nlm.nih.gov/pubmed/25197485
http://dx.doi.org/10.4056/sigs.5281010
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