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The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle
Leaf-cutter ants are one of the most important herbivorous insects in the Neotropics, harvesting vast quantities of fresh leaf material. The ants use leaves to cultivate a fungus that serves as the colony's primary food source. This obligate ant-fungus mutualism is one of the few occurrences of...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2011
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3037820/ https://www.ncbi.nlm.nih.gov/pubmed/21347285 http://dx.doi.org/10.1371/journal.pgen.1002007 |
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author | Suen, Garret Teiling, Clotilde Li, Lewyn Holt, Carson Abouheif, Ehab Bornberg-Bauer, Erich Bouffard, Pascal Caldera, Eric J. Cash, Elizabeth Cavanaugh, Amy Denas, Olgert Elhaik, Eran Favé, Marie-Julie Gadau, Jürgen Gibson, Joshua D. Graur, Dan Grubbs, Kirk J. Hagen, Darren E. Harkins, Timothy T. Helmkampf, Martin Hu, Hao Johnson, Brian R. Kim, Jay Marsh, Sarah E. Moeller, Joseph A. Muñoz-Torres, Mónica C. Murphy, Marguerite C. Naughton, Meredith C. Nigam, Surabhi Overson, Rick Rajakumar, Rajendhran Reese, Justin T. Scott, Jarrod J. Smith, Chris R. Tao, Shu Tsutsui, Neil D. Viljakainen, Lumi Wissler, Lothar Yandell, Mark D. Zimmer, Fabian Taylor, James Slater, Steven C. Clifton, Sandra W. Warren, Wesley C. Elsik, Christine G. Smith, Christopher D. Weinstock, George M. Gerardo, Nicole M. Currie, Cameron R. |
author_facet | Suen, Garret Teiling, Clotilde Li, Lewyn Holt, Carson Abouheif, Ehab Bornberg-Bauer, Erich Bouffard, Pascal Caldera, Eric J. Cash, Elizabeth Cavanaugh, Amy Denas, Olgert Elhaik, Eran Favé, Marie-Julie Gadau, Jürgen Gibson, Joshua D. Graur, Dan Grubbs, Kirk J. Hagen, Darren E. Harkins, Timothy T. Helmkampf, Martin Hu, Hao Johnson, Brian R. Kim, Jay Marsh, Sarah E. Moeller, Joseph A. Muñoz-Torres, Mónica C. Murphy, Marguerite C. Naughton, Meredith C. Nigam, Surabhi Overson, Rick Rajakumar, Rajendhran Reese, Justin T. Scott, Jarrod J. Smith, Chris R. Tao, Shu Tsutsui, Neil D. Viljakainen, Lumi Wissler, Lothar Yandell, Mark D. Zimmer, Fabian Taylor, James Slater, Steven C. Clifton, Sandra W. Warren, Wesley C. Elsik, Christine G. Smith, Christopher D. Weinstock, George M. Gerardo, Nicole M. Currie, Cameron R. |
author_sort | Suen, Garret |
collection | PubMed |
description | Leaf-cutter ants are one of the most important herbivorous insects in the Neotropics, harvesting vast quantities of fresh leaf material. The ants use leaves to cultivate a fungus that serves as the colony's primary food source. This obligate ant-fungus mutualism is one of the few occurrences of farming by non-humans and likely facilitated the formation of their massive colonies. Mature leaf-cutter ant colonies contain millions of workers ranging in size from small garden tenders to large soldiers, resulting in one of the most complex polymorphic caste systems within ants. To begin uncovering the genomic underpinnings of this system, we sequenced the genome of Atta cephalotes using 454 pyrosequencing. One prediction from this ant's lifestyle is that it has undergone genetic modifications that reflect its obligate dependence on the fungus for nutrients. Analysis of this genome sequence is consistent with this hypothesis, as we find evidence for reductions in genes related to nutrient acquisition. These include extensive reductions in serine proteases (which are likely unnecessary because proteolysis is not a primary mechanism used to process nutrients obtained from the fungus), a loss of genes involved in arginine biosynthesis (suggesting that this amino acid is obtained from the fungus), and the absence of a hexamerin (which sequesters amino acids during larval development in other insects). Following recent reports of genome sequences from other insects that engage in symbioses with beneficial microbes, the A. cephalotes genome provides new insights into the symbiotic lifestyle of this ant and advances our understanding of host–microbe symbioses. |
format | Text |
id | pubmed-3037820 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-30378202011-02-23 The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle Suen, Garret Teiling, Clotilde Li, Lewyn Holt, Carson Abouheif, Ehab Bornberg-Bauer, Erich Bouffard, Pascal Caldera, Eric J. Cash, Elizabeth Cavanaugh, Amy Denas, Olgert Elhaik, Eran Favé, Marie-Julie Gadau, Jürgen Gibson, Joshua D. Graur, Dan Grubbs, Kirk J. Hagen, Darren E. Harkins, Timothy T. Helmkampf, Martin Hu, Hao Johnson, Brian R. Kim, Jay Marsh, Sarah E. Moeller, Joseph A. Muñoz-Torres, Mónica C. Murphy, Marguerite C. Naughton, Meredith C. Nigam, Surabhi Overson, Rick Rajakumar, Rajendhran Reese, Justin T. Scott, Jarrod J. Smith, Chris R. Tao, Shu Tsutsui, Neil D. Viljakainen, Lumi Wissler, Lothar Yandell, Mark D. Zimmer, Fabian Taylor, James Slater, Steven C. Clifton, Sandra W. Warren, Wesley C. Elsik, Christine G. Smith, Christopher D. Weinstock, George M. Gerardo, Nicole M. Currie, Cameron R. PLoS Genet Research Article Leaf-cutter ants are one of the most important herbivorous insects in the Neotropics, harvesting vast quantities of fresh leaf material. The ants use leaves to cultivate a fungus that serves as the colony's primary food source. This obligate ant-fungus mutualism is one of the few occurrences of farming by non-humans and likely facilitated the formation of their massive colonies. Mature leaf-cutter ant colonies contain millions of workers ranging in size from small garden tenders to large soldiers, resulting in one of the most complex polymorphic caste systems within ants. To begin uncovering the genomic underpinnings of this system, we sequenced the genome of Atta cephalotes using 454 pyrosequencing. One prediction from this ant's lifestyle is that it has undergone genetic modifications that reflect its obligate dependence on the fungus for nutrients. Analysis of this genome sequence is consistent with this hypothesis, as we find evidence for reductions in genes related to nutrient acquisition. These include extensive reductions in serine proteases (which are likely unnecessary because proteolysis is not a primary mechanism used to process nutrients obtained from the fungus), a loss of genes involved in arginine biosynthesis (suggesting that this amino acid is obtained from the fungus), and the absence of a hexamerin (which sequesters amino acids during larval development in other insects). Following recent reports of genome sequences from other insects that engage in symbioses with beneficial microbes, the A. cephalotes genome provides new insights into the symbiotic lifestyle of this ant and advances our understanding of host–microbe symbioses. Public Library of Science 2011-02-10 /pmc/articles/PMC3037820/ /pubmed/21347285 http://dx.doi.org/10.1371/journal.pgen.1002007 Text en Suen et al. 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 author and source are credited. |
spellingShingle | Research Article Suen, Garret Teiling, Clotilde Li, Lewyn Holt, Carson Abouheif, Ehab Bornberg-Bauer, Erich Bouffard, Pascal Caldera, Eric J. Cash, Elizabeth Cavanaugh, Amy Denas, Olgert Elhaik, Eran Favé, Marie-Julie Gadau, Jürgen Gibson, Joshua D. Graur, Dan Grubbs, Kirk J. Hagen, Darren E. Harkins, Timothy T. Helmkampf, Martin Hu, Hao Johnson, Brian R. Kim, Jay Marsh, Sarah E. Moeller, Joseph A. Muñoz-Torres, Mónica C. Murphy, Marguerite C. Naughton, Meredith C. Nigam, Surabhi Overson, Rick Rajakumar, Rajendhran Reese, Justin T. Scott, Jarrod J. Smith, Chris R. Tao, Shu Tsutsui, Neil D. Viljakainen, Lumi Wissler, Lothar Yandell, Mark D. Zimmer, Fabian Taylor, James Slater, Steven C. Clifton, Sandra W. Warren, Wesley C. Elsik, Christine G. Smith, Christopher D. Weinstock, George M. Gerardo, Nicole M. Currie, Cameron R. The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle |
title | The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle |
title_full | The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle |
title_fullStr | The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle |
title_full_unstemmed | The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle |
title_short | The Genome Sequence of the Leaf-Cutter Ant Atta cephalotes Reveals Insights into Its Obligate Symbiotic Lifestyle |
title_sort | genome sequence of the leaf-cutter ant atta cephalotes reveals insights into its obligate symbiotic lifestyle |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3037820/ https://www.ncbi.nlm.nih.gov/pubmed/21347285 http://dx.doi.org/10.1371/journal.pgen.1002007 |
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