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A New System for Comparative Functional Genomics of Saccharomyces Yeasts

Whole-genome sequencing, particularly in fungi, has progressed at a tremendous rate. More difficult, however, is experimental testing of the inferences about gene function that can be drawn from comparative sequence analysis alone. We present a genome-wide functional characterization of a sequenced...

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Autores principales: Caudy, Amy A., Guan, Yuanfang, Jia, Yue, Hansen, Christina, DeSevo, Chris, Hayes, Alicia P., Agee, Joy, Alvarez-Dominguez, Juan R., Arellano, Hugo, Barrett, Daniel, Bauerle, Cynthia, Bisaria, Namita, Bradley, Patrick H., Breunig, J. Scott, Bush, Erin, Cappel, David, Capra, Emily, Chen, Walter, Clore, John, Combs, Peter A., Doucette, Christopher, Demuren, Olukunle, Fellowes, Peter, Freeman, Sam, Frenkel, Evgeni, Gadala-Maria, Daniel, Gawande, Richa, Glass, David, Grossberg, Samuel, Gupta, Anita, Hammonds-Odie, Latanya, Hoisos, Aaron, Hsi, Jenny, Hsu, Yu-Han Huang, Inukai, Sachi, Karczewski, Konrad J., Ke, Xiaobo, Kojima, Mina, Leachman, Samuel, Lieber, Danny, Liebowitz, Anna, Liu, Julia, Liu, Yufei, Martin, Trevor, Mena, Jose, Mendoza, Rosa, Myhrvold, Cameron, Millian, Christian, Pfau, Sarah, Raj, Sandeep, Rich, Matt, Rokicki, Joe, Rounds, William, Salazar, Michael, Salesi, Matthew, Sharma, Rajani, Silverman, Sanford, Singer, Cara, Sinha, Sandhya, Staller, Max, Stern, Philip, Tang, Hanlin, Weeks, Sharon, Weidmann, Maxwell, Wolf, Ashley, Young, Carmen, Yuan, Jie, Crutchfield, Christopher, McClean, Megan, Murphy, Coleen T., Llinás, Manuel, Botstein, David, Troyanskaya, Olga G., Dunham, Maitreya J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3761308/
https://www.ncbi.nlm.nih.gov/pubmed/23852385
http://dx.doi.org/10.1534/genetics.113.152918
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author Caudy, Amy A.
Guan, Yuanfang
Jia, Yue
Hansen, Christina
DeSevo, Chris
Hayes, Alicia P.
Agee, Joy
Alvarez-Dominguez, Juan R.
Arellano, Hugo
Barrett, Daniel
Bauerle, Cynthia
Bisaria, Namita
Bradley, Patrick H.
Breunig, J. Scott
Bush, Erin
Cappel, David
Capra, Emily
Chen, Walter
Clore, John
Combs, Peter A.
Doucette, Christopher
Demuren, Olukunle
Fellowes, Peter
Freeman, Sam
Frenkel, Evgeni
Gadala-Maria, Daniel
Gawande, Richa
Glass, David
Grossberg, Samuel
Gupta, Anita
Hammonds-Odie, Latanya
Hoisos, Aaron
Hsi, Jenny
Hsu, Yu-Han Huang
Inukai, Sachi
Karczewski, Konrad J.
Ke, Xiaobo
Kojima, Mina
Leachman, Samuel
Lieber, Danny
Liebowitz, Anna
Liu, Julia
Liu, Yufei
Martin, Trevor
Mena, Jose
Mendoza, Rosa
Myhrvold, Cameron
Millian, Christian
Pfau, Sarah
Raj, Sandeep
Rich, Matt
Rokicki, Joe
Rounds, William
Salazar, Michael
Salesi, Matthew
Sharma, Rajani
Silverman, Sanford
Singer, Cara
Sinha, Sandhya
Staller, Max
Stern, Philip
Tang, Hanlin
Weeks, Sharon
Weidmann, Maxwell
Wolf, Ashley
Young, Carmen
Yuan, Jie
Crutchfield, Christopher
McClean, Megan
Murphy, Coleen T.
Llinás, Manuel
Botstein, David
Troyanskaya, Olga G.
Dunham, Maitreya J.
author_facet Caudy, Amy A.
Guan, Yuanfang
Jia, Yue
Hansen, Christina
DeSevo, Chris
Hayes, Alicia P.
Agee, Joy
Alvarez-Dominguez, Juan R.
Arellano, Hugo
Barrett, Daniel
Bauerle, Cynthia
Bisaria, Namita
Bradley, Patrick H.
Breunig, J. Scott
Bush, Erin
Cappel, David
Capra, Emily
Chen, Walter
Clore, John
Combs, Peter A.
Doucette, Christopher
Demuren, Olukunle
Fellowes, Peter
Freeman, Sam
Frenkel, Evgeni
Gadala-Maria, Daniel
Gawande, Richa
Glass, David
Grossberg, Samuel
Gupta, Anita
Hammonds-Odie, Latanya
Hoisos, Aaron
Hsi, Jenny
Hsu, Yu-Han Huang
Inukai, Sachi
Karczewski, Konrad J.
Ke, Xiaobo
Kojima, Mina
Leachman, Samuel
Lieber, Danny
Liebowitz, Anna
Liu, Julia
Liu, Yufei
Martin, Trevor
Mena, Jose
Mendoza, Rosa
Myhrvold, Cameron
Millian, Christian
Pfau, Sarah
Raj, Sandeep
Rich, Matt
Rokicki, Joe
Rounds, William
Salazar, Michael
Salesi, Matthew
Sharma, Rajani
Silverman, Sanford
Singer, Cara
Sinha, Sandhya
Staller, Max
Stern, Philip
Tang, Hanlin
Weeks, Sharon
Weidmann, Maxwell
Wolf, Ashley
Young, Carmen
Yuan, Jie
Crutchfield, Christopher
McClean, Megan
Murphy, Coleen T.
Llinás, Manuel
Botstein, David
Troyanskaya, Olga G.
Dunham, Maitreya J.
author_sort Caudy, Amy A.
collection PubMed
description Whole-genome sequencing, particularly in fungi, has progressed at a tremendous rate. More difficult, however, is experimental testing of the inferences about gene function that can be drawn from comparative sequence analysis alone. We present a genome-wide functional characterization of a sequenced but experimentally understudied budding yeast, Saccharomyces bayanus var. uvarum (henceforth referred to as S. bayanus), allowing us to map changes over the 20 million years that separate this organism from S. cerevisiae. We first created a suite of genetic tools to facilitate work in S. bayanus. Next, we measured the gene-expression response of S. bayanus to a diverse set of perturbations optimized using a computational approach to cover a diverse array of functionally relevant biological responses. The resulting data set reveals that gene-expression patterns are largely conserved, but significant changes may exist in regulatory networks such as carbohydrate utilization and meiosis. In addition to regulatory changes, our approach identified gene functions that have diverged. The functions of genes in core pathways are highly conserved, but we observed many changes in which genes are involved in osmotic stress, peroxisome biogenesis, and autophagy. A surprising number of genes specific to S. bayanus respond to oxidative stress, suggesting the organism may have evolved under different selection pressures than S. cerevisiae. This work expands the scope of genome-scale evolutionary studies from sequence-based analysis to rapid experimental characterization and could be adopted for functional mapping in any lineage of interest. Furthermore, our detailed characterization of S. bayanus provides a valuable resource for comparative functional genomics studies in yeast.
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spelling pubmed-37613082013-09-04 A New System for Comparative Functional Genomics of Saccharomyces Yeasts Caudy, Amy A. Guan, Yuanfang Jia, Yue Hansen, Christina DeSevo, Chris Hayes, Alicia P. Agee, Joy Alvarez-Dominguez, Juan R. Arellano, Hugo Barrett, Daniel Bauerle, Cynthia Bisaria, Namita Bradley, Patrick H. Breunig, J. Scott Bush, Erin Cappel, David Capra, Emily Chen, Walter Clore, John Combs, Peter A. Doucette, Christopher Demuren, Olukunle Fellowes, Peter Freeman, Sam Frenkel, Evgeni Gadala-Maria, Daniel Gawande, Richa Glass, David Grossberg, Samuel Gupta, Anita Hammonds-Odie, Latanya Hoisos, Aaron Hsi, Jenny Hsu, Yu-Han Huang Inukai, Sachi Karczewski, Konrad J. Ke, Xiaobo Kojima, Mina Leachman, Samuel Lieber, Danny Liebowitz, Anna Liu, Julia Liu, Yufei Martin, Trevor Mena, Jose Mendoza, Rosa Myhrvold, Cameron Millian, Christian Pfau, Sarah Raj, Sandeep Rich, Matt Rokicki, Joe Rounds, William Salazar, Michael Salesi, Matthew Sharma, Rajani Silverman, Sanford Singer, Cara Sinha, Sandhya Staller, Max Stern, Philip Tang, Hanlin Weeks, Sharon Weidmann, Maxwell Wolf, Ashley Young, Carmen Yuan, Jie Crutchfield, Christopher McClean, Megan Murphy, Coleen T. Llinás, Manuel Botstein, David Troyanskaya, Olga G. Dunham, Maitreya J. Genetics Investigations Whole-genome sequencing, particularly in fungi, has progressed at a tremendous rate. More difficult, however, is experimental testing of the inferences about gene function that can be drawn from comparative sequence analysis alone. We present a genome-wide functional characterization of a sequenced but experimentally understudied budding yeast, Saccharomyces bayanus var. uvarum (henceforth referred to as S. bayanus), allowing us to map changes over the 20 million years that separate this organism from S. cerevisiae. We first created a suite of genetic tools to facilitate work in S. bayanus. Next, we measured the gene-expression response of S. bayanus to a diverse set of perturbations optimized using a computational approach to cover a diverse array of functionally relevant biological responses. The resulting data set reveals that gene-expression patterns are largely conserved, but significant changes may exist in regulatory networks such as carbohydrate utilization and meiosis. In addition to regulatory changes, our approach identified gene functions that have diverged. The functions of genes in core pathways are highly conserved, but we observed many changes in which genes are involved in osmotic stress, peroxisome biogenesis, and autophagy. A surprising number of genes specific to S. bayanus respond to oxidative stress, suggesting the organism may have evolved under different selection pressures than S. cerevisiae. This work expands the scope of genome-scale evolutionary studies from sequence-based analysis to rapid experimental characterization and could be adopted for functional mapping in any lineage of interest. Furthermore, our detailed characterization of S. bayanus provides a valuable resource for comparative functional genomics studies in yeast. Genetics Society of America 2013-09 /pmc/articles/PMC3761308/ /pubmed/23852385 http://dx.doi.org/10.1534/genetics.113.152918 Text en Copyright © 2013 by the Genetics Society of America Available freely online through the author-supported open access option.
spellingShingle Investigations
Caudy, Amy A.
Guan, Yuanfang
Jia, Yue
Hansen, Christina
DeSevo, Chris
Hayes, Alicia P.
Agee, Joy
Alvarez-Dominguez, Juan R.
Arellano, Hugo
Barrett, Daniel
Bauerle, Cynthia
Bisaria, Namita
Bradley, Patrick H.
Breunig, J. Scott
Bush, Erin
Cappel, David
Capra, Emily
Chen, Walter
Clore, John
Combs, Peter A.
Doucette, Christopher
Demuren, Olukunle
Fellowes, Peter
Freeman, Sam
Frenkel, Evgeni
Gadala-Maria, Daniel
Gawande, Richa
Glass, David
Grossberg, Samuel
Gupta, Anita
Hammonds-Odie, Latanya
Hoisos, Aaron
Hsi, Jenny
Hsu, Yu-Han Huang
Inukai, Sachi
Karczewski, Konrad J.
Ke, Xiaobo
Kojima, Mina
Leachman, Samuel
Lieber, Danny
Liebowitz, Anna
Liu, Julia
Liu, Yufei
Martin, Trevor
Mena, Jose
Mendoza, Rosa
Myhrvold, Cameron
Millian, Christian
Pfau, Sarah
Raj, Sandeep
Rich, Matt
Rokicki, Joe
Rounds, William
Salazar, Michael
Salesi, Matthew
Sharma, Rajani
Silverman, Sanford
Singer, Cara
Sinha, Sandhya
Staller, Max
Stern, Philip
Tang, Hanlin
Weeks, Sharon
Weidmann, Maxwell
Wolf, Ashley
Young, Carmen
Yuan, Jie
Crutchfield, Christopher
McClean, Megan
Murphy, Coleen T.
Llinás, Manuel
Botstein, David
Troyanskaya, Olga G.
Dunham, Maitreya J.
A New System for Comparative Functional Genomics of Saccharomyces Yeasts
title A New System for Comparative Functional Genomics of Saccharomyces Yeasts
title_full A New System for Comparative Functional Genomics of Saccharomyces Yeasts
title_fullStr A New System for Comparative Functional Genomics of Saccharomyces Yeasts
title_full_unstemmed A New System for Comparative Functional Genomics of Saccharomyces Yeasts
title_short A New System for Comparative Functional Genomics of Saccharomyces Yeasts
title_sort new system for comparative functional genomics of saccharomyces yeasts
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3761308/
https://www.ncbi.nlm.nih.gov/pubmed/23852385
http://dx.doi.org/10.1534/genetics.113.152918
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