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Microbial Ecology

Leucoagaricus gongylophorus Produces Diverse Enzymes for the Degradation of Recalcitrant Plant Polymers in Leaf-Cutter Ant Fungus Gardens

Frank O. Aylward, Kristin E. Burnum-Johnson, Susannah G. Tringe, Clotilde Teiling, Daniel M. Tremmel, Joseph A. Moeller, Jarrod J. Scott, Kerrie W. Barry, Paul D. Piehowski, Carrie D. Nicora, Stephanie A. Malfatti, Matthew E. Monroe, Samuel O. Purvine, Lynne A. Goodwin, Richard D. Smith, George M. Weinstock, Nicole M. Gerardo, Garret Suen, Mary S. Lipton, Cameron R. Currie
Frank O. Aylward
aDepartment of Bacteriology, University of Wisconsin—Madison, Madison, Wisconsin, USA
bDepartment of Energy Great Lakes Bioenergy Research Center, University of Wisconsin—Madison, Madison, Wisconsin, USA
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Kristin E. Burnum-Johnson
cBiological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA
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Susannah G. Tringe
eDepartment of Energy Joint Genome Institute, Walnut Creek, California, USA
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Clotilde Teiling
gRoche Diagnostics, Indianapolis, Indiana, USA
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Daniel M. Tremmel
aDepartment of Bacteriology, University of Wisconsin—Madison, Madison, Wisconsin, USA
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Joseph A. Moeller
aDepartment of Bacteriology, University of Wisconsin—Madison, Madison, Wisconsin, USA
bDepartment of Energy Great Lakes Bioenergy Research Center, University of Wisconsin—Madison, Madison, Wisconsin, USA
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Jarrod J. Scott
aDepartment of Bacteriology, University of Wisconsin—Madison, Madison, Wisconsin, USA
bDepartment of Energy Great Lakes Bioenergy Research Center, University of Wisconsin—Madison, Madison, Wisconsin, USA
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Kerrie W. Barry
eDepartment of Energy Joint Genome Institute, Walnut Creek, California, USA
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Paul D. Piehowski
cBiological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA
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Carrie D. Nicora
cBiological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA
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Stephanie A. Malfatti
eDepartment of Energy Joint Genome Institute, Walnut Creek, California, USA
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Matthew E. Monroe
cBiological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA
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Samuel O. Purvine
cBiological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA
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Lynne A. Goodwin
eDepartment of Energy Joint Genome Institute, Walnut Creek, California, USA
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Richard D. Smith
cBiological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA
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George M. Weinstock
hThe Genome Center, Washington University School of Medicine, St. Louis, Missouri, USA
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Nicole M. Gerardo
fDepartment of Biology, Emory University, Atlanta, Georgia, USA
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Garret Suen
aDepartment of Bacteriology, University of Wisconsin—Madison, Madison, Wisconsin, USA
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Mary S. Lipton
cBiological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA
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Cameron R. Currie
aDepartment of Bacteriology, University of Wisconsin—Madison, Madison, Wisconsin, USA
bDepartment of Energy Great Lakes Bioenergy Research Center, University of Wisconsin—Madison, Madison, Wisconsin, USA
dSmithsonian Tropical Research Institute, Balboa, Ancon, Panama
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DOI: 10.1128/AEM.03833-12
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ABSTRACT

Plants represent a large reservoir of organic carbon comprised primarily of recalcitrant polymers that most metazoans are unable to deconstruct. Many herbivores gain access to nutrients in this material indirectly by associating with microbial symbionts, and leaf-cutter ants are a paradigmatic example. These ants use fresh foliar biomass as manure to cultivate gardens composed primarily of Leucoagaricus gongylophorus, a basidiomycetous fungus that produces specialized hyphal swellings that serve as a food source for the host ant colony. Although leaf-cutter ants are conspicuous herbivores that contribute substantially to carbon turnover in Neotropical ecosystems, the process through which plant biomass is degraded in their fungus gardens is not well understood. Here we present the first draft genome of L. gongylophorus, and, using genomic and metaproteomic tools, we investigate its role in lignocellulose degradation in the gardens of both Atta cephalotes and Acromyrmex echinatior leaf-cutter ants. We show that L. gongylophorus produces a diversity of lignocellulases in ant gardens and is likely the primary driver of plant biomass degradation in these ecosystems. We also show that this fungus produces distinct sets of lignocellulases throughout the different stages of biomass degradation, including numerous cellulases and laccases that likely play an important role in lignocellulose degradation. Our study provides a detailed analysis of plant biomass degradation in leaf-cutter ant fungus gardens and insight into the enzymes underlying the symbiosis between these dominant herbivores and their obligate fungal cultivar.

FOOTNOTES

    • Received 12 December 2012.
    • Accepted 31 March 2013.
    • Accepted manuscript posted online 12 April 2013.
  • Supplemental material for this article may be found at http://dx.doi.org/10.1128/AEM.03833-12.

  • Copyright � 2013, American Society for Microbiology. All Rights Reserved.
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Leucoagaricus gongylophorus Produces Diverse Enzymes for the Degradation of Recalcitrant Plant Polymers in Leaf-Cutter Ant Fungus Gardens
Frank O. Aylward, Kristin E. Burnum-Johnson, Susannah G. Tringe, Clotilde Teiling, Daniel M. Tremmel, Joseph A. Moeller, Jarrod J. Scott, Kerrie W. Barry, Paul D. Piehowski, Carrie D. Nicora, Stephanie A. Malfatti, Matthew E. Monroe, Samuel O. Purvine, Lynne A. Goodwin, Richard D. Smith, George M. Weinstock, Nicole M. Gerardo, Garret Suen, Mary S. Lipton, Cameron R. Currie
Applied and Environmental Microbiology May 2013, 79 (12) 3770-3778; DOI: 10.1128/AEM.03833-12

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Leucoagaricus gongylophorus Produces Diverse Enzymes for the Degradation of Recalcitrant Plant Polymers in Leaf-Cutter Ant Fungus Gardens
Frank O. Aylward, Kristin E. Burnum-Johnson, Susannah G. Tringe, Clotilde Teiling, Daniel M. Tremmel, Joseph A. Moeller, Jarrod J. Scott, Kerrie W. Barry, Paul D. Piehowski, Carrie D. Nicora, Stephanie A. Malfatti, Matthew E. Monroe, Samuel O. Purvine, Lynne A. Goodwin, Richard D. Smith, George M. Weinstock, Nicole M. Gerardo, Garret Suen, Mary S. Lipton, Cameron R. Currie
Applied and Environmental Microbiology May 2013, 79 (12) 3770-3778; DOI: 10.1128/AEM.03833-12
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