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  Unraveling the functional dark matter through global metagenomics

Pavlopoulos, G. A., Baltoumas, F. A., Liu, S., Selvitopi, O., Camargo, A. P., Nayfach, S., et al. (2023). Unraveling the functional dark matter through global metagenomics. Nature, 622(7983), 594-602. doi:10.1038/s41586-023-06583-7.

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https://doi.org/10.1038/s41586-023-06583-7 (Publisher version)
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OA-Status:
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 Creators:
Pavlopoulos, Georgios A.1, Author
Baltoumas, Fotis A.1, Author
Liu, Sirui1, Author
Selvitopi, Oguz1, Author
Camargo, Antonio Pedro1, Author
Nayfach, Stephen1, Author
Azad, Ariful1, Author
Roux, Simon1, Author
Call, Lee1, Author
Ivanova, Natalia N.1, Author
Chen, I. Min1, Author
Paez-Espino, David1, Author
Karatzas, Evangelos1, Author
Acinas, Silvia G.1, Author
Ahlgren, Nathan1, Author
Attwood, Graeme1, Author
Baldrian, Petr1, Author
Berry, Timothy1, Author
Bhatnagar, Jennifer M.1, Author
Bhaya, Devaki1, Author
Bidle, Kay D.1, AuthorBlanchard, Jeffrey L.1, AuthorBoyd, Eric S.1, AuthorBowen, Jennifer L.1, AuthorBowman, Jeff1, AuthorBrawley, Susan H.1, AuthorBrodie, Eoin L.1, AuthorBrune, Andreas2, Author                 Bryant, Donald A.1, AuthorBuchan, Alison1, AuthorCadillo-Quiroz, Hinsby1, AuthorCampbell, Barbara J.1, AuthorCavicchioli, Ricardo1, AuthorChuckran, Peter F.1, AuthorColeman, Maureen1, AuthorCrowe, Sean1, AuthorColman, Daniel R.1, AuthorCurrie, Cameron R.1, AuthorDangl, Jeff1, AuthorDelherbe, Nathalie1, AuthorDenef, Vincent J.1, AuthorDijkstra, Paul1, AuthorDistel, Daniel D.1, AuthorEloe-Fadrosh, Emiley1, AuthorFisher, Kirsten1, AuthorFrancis, Christopher1, AuthorGaroutte, Aaron1, AuthorGaudin, Amelie1, AuthorGerwick, Lena1, AuthorGodoy-Vitorino, Filipa1, AuthorGuerra, Peter1, AuthorGuo, Jiarong1, AuthorHabteselassie, Mussie Y.1, AuthorHallam, Steven J.1, AuthorHatzenpichler, Roland1, AuthorHentschel, Ute1, AuthorHess, Matthias1, AuthorHirsch, Ann M.1, AuthorHug, Laura A.1, AuthorHultman, Jenni1, AuthorHunt, Dana E.1, AuthorHuntemann, Marcel1, AuthorInskeep, William P.1, AuthorJames, Timothy Y.1, AuthorJansson, Janet1, AuthorJohnston, Eric R.1, AuthorKalyuzhnaya, Marina1, AuthorKelly, Charlene N.1, AuthorKelly, Robert M.1, AuthorKlassen, Jonathan L.1, AuthorNüsslein, Klaus1, AuthorKostka, Joel E.1, AuthorLindow, Steven1, AuthorLilleskov, Erik1, AuthorLynes, Mackenzie1, AuthorMackelprang, Rachel1, AuthorMartin, Francis M.1, AuthorMason, Olivia U.1, AuthorMcKay, R. Michael1, AuthorMcMahon, Katherine1, AuthorMead, David A.1, AuthorMedina, Monica1, AuthorMeredith, Laura K.1, AuthorMock, Thomas1, AuthorMohn, William W.1, AuthorMoran, Mary Ann1, AuthorMurray, Alison1, AuthorNeufeld, Josh D.1, AuthorNeumann, Rebecca1, AuthorNorton, Jeanette M.1, AuthorPartida-Martinez, Laila P.1, AuthorPietrasiak, Nicole1, AuthorPelletier, Dale1, AuthorReddy, T. B. K.1, AuthorReese, Brandi Kiel1, AuthorReichart, Nicholas J.1, AuthorReiss, Rebecca1, AuthorSaito, Mak A.1, AuthorSchachtman, Daniel P.1, AuthorSeshadri, Rekha1, AuthorShade, Ashley1, AuthorSherman, David1, AuthorSimister, Rachel1, AuthorSimon, Holly1, AuthorStegen, James1, AuthorStepanauskas, Ramunas1, AuthorSullivan, Matthew1, AuthorSumner, Dawn Y.1, AuthorTeeling, Hanno1, AuthorThamatrakoln, Kimberlee1, AuthorTreseder, Kathleen1, AuthorTringe, Susannah1, AuthorVaishampayan, Parag1, AuthorValentine, David L.1, AuthorWaldo, Nicholas B.1, AuthorWaldrop, Mark P.1, AuthorWalsh, David A.1, AuthorWard, David M.1, AuthorWilkins, Michael1, AuthorWhitman, Thea1, AuthorWoolet, Jamie1, AuthorWoyke, Tanja1, AuthorIliopoulos, Ioannis1, AuthorKonstantinidis, Konstantinos1, AuthorTiedje, James M.1, AuthorPett-Ridge, Jennifer1, AuthorBaker, David1, AuthorVisel, Axel1, AuthorOuzounis, Christos A.1, AuthorOvchinnikov, Sergey1, AuthorBuluç, Aydin1, AuthorKyrpides, Nikos C.1, AuthorConsortium, Novel Metagenome Protein Families1, Author more..
Affiliations:
1external, ou_persistent22              
2Department-Independent Research Group Insect Gut Microbiology and Symbiosis, Max Planck Institute for Terrestrial Microbiology, Max Planck Society, ou_3266271              

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 Abstract: Metagenomes encode an enormous diversity of proteins, reflecting a multiplicity of functions and activities1,2. Exploration of this vast sequence space has been limited to a comparative analysis against reference microbial genomes and protein families derived from those genomes. Here, to examine the scale of yet untapped functional diversity beyond what is currently possible through the lens of reference genomes, we develop a computational approach to generate reference-free protein families from the sequence space in metagenomes. We analyse 26,931 metagenomes and identify 1.17 billion protein sequences longer than 35 amino acids with no similarity to any sequences from 102,491 reference genomes or the Pfam database3. Using massively parallel graph-based clustering, we group these proteins into 106,198 novel sequence clusters with more than 100 members, doubling the number of protein families obtained from the reference genomes clustered using the same approach. We annotate these families on the basis of their taxonomic, habitat, geographical and gene neighbourhood distributions and, where sufficient sequence diversity is available, predict protein three-dimensional models, revealing novel structures. Overall, our results uncover an enormously diverse functional space, highlighting the importance of further exploring the microbial functional dark matter.

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Language(s): eng - English
 Dates: 2023
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: URI: https://doi.org/10.1038/s41586-023-06583-7
Other: Pavlopoulos2023
DOI: 10.1038/s41586-023-06583-7
 Degree: -

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Title: Nature
  Abbreviation : Nature
Source Genre: Journal
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Publ. Info: London : Nature Publishing Group
Pages: - Volume / Issue: 622 (7983) Sequence Number: - Start / End Page: 594 - 602 Identifier: ISSN: 0028-0836
CoNE: https://pure.mpg.de/cone/journals/resource/954925427238