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The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste

BACKGROUND: Most of our understanding on the social behavior and genomics of bees and other social insects is centered on the Western honey bee, Apis mellifera. The genus Apis, however, is a highly derived branch comprising less than a dozen species, four of which genomically characterized. In contr...

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Autores principales: de Paula Freitas, Flávia C., Lourenço, Anete P., Nunes, Francis M. F., Paschoal, Alexandre R., Abreu, Fabiano C. P., Barbin, Fábio O., Bataglia, Luana, Cardoso-Júnior, Carlos A. M., Cervoni, Mário S., Silva, Saura R., Dalarmi, Fernanda, Del Lama, Marco A., Depintor, Thiago S., Ferreira, Kátia M., Gória, Paula S., Jaskot, Michael C., Lago, Denyse C., Luna-Lucena, Danielle, Moda, Livia M., Nascimento, Leonardo, Pedrino, Matheus, Oliveira, Franciene Rabiço, Sanches, Fernanda C., Santos, Douglas E., Santos, Carolina G., Vieira, Joseana, Barchuk, Angel R., Hartfelder, Klaus, Simões, Zilá L. P., Bitondi, Márcia M. G., Pinheiro, Daniel G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7268684/
https://www.ncbi.nlm.nih.gov/pubmed/32493270
http://dx.doi.org/10.1186/s12864-020-06784-8
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author de Paula Freitas, Flávia C.
Lourenço, Anete P.
Nunes, Francis M. F.
Paschoal, Alexandre R.
Abreu, Fabiano C. P.
Barbin, Fábio O.
Bataglia, Luana
Cardoso-Júnior, Carlos A. M.
Cervoni, Mário S.
Silva, Saura R.
Dalarmi, Fernanda
Del Lama, Marco A.
Depintor, Thiago S.
Ferreira, Kátia M.
Gória, Paula S.
Jaskot, Michael C.
Lago, Denyse C.
Luna-Lucena, Danielle
Moda, Livia M.
Nascimento, Leonardo
Pedrino, Matheus
Oliveira, Franciene Rabiço
Sanches, Fernanda C.
Santos, Douglas E.
Santos, Carolina G.
Vieira, Joseana
Barchuk, Angel R.
Hartfelder, Klaus
Simões, Zilá L. P.
Bitondi, Márcia M. G.
Pinheiro, Daniel G.
author_facet de Paula Freitas, Flávia C.
Lourenço, Anete P.
Nunes, Francis M. F.
Paschoal, Alexandre R.
Abreu, Fabiano C. P.
Barbin, Fábio O.
Bataglia, Luana
Cardoso-Júnior, Carlos A. M.
Cervoni, Mário S.
Silva, Saura R.
Dalarmi, Fernanda
Del Lama, Marco A.
Depintor, Thiago S.
Ferreira, Kátia M.
Gória, Paula S.
Jaskot, Michael C.
Lago, Denyse C.
Luna-Lucena, Danielle
Moda, Livia M.
Nascimento, Leonardo
Pedrino, Matheus
Oliveira, Franciene Rabiço
Sanches, Fernanda C.
Santos, Douglas E.
Santos, Carolina G.
Vieira, Joseana
Barchuk, Angel R.
Hartfelder, Klaus
Simões, Zilá L. P.
Bitondi, Márcia M. G.
Pinheiro, Daniel G.
author_sort de Paula Freitas, Flávia C.
collection PubMed
description BACKGROUND: Most of our understanding on the social behavior and genomics of bees and other social insects is centered on the Western honey bee, Apis mellifera. The genus Apis, however, is a highly derived branch comprising less than a dozen species, four of which genomically characterized. In contrast, for the equally highly eusocial, yet taxonomically and biologically more diverse Meliponini, a full genome sequence was so far available for a single Melipona species only. We present here the genome sequence of Frieseomelitta varia, a stingless bee that has, as a peculiarity, a completely sterile worker caste. RESULTS: The assembly of 243,974,526 high quality Illumina reads resulted in a predicted assembled genome size of 275 Mb composed of 2173 scaffolds. A BUSCO analysis for the 10,526 predicted genes showed that these represent 96.6% of the expected hymenopteran orthologs. We also predicted 169,371 repetitive genomic components, 2083 putative transposable elements, and 1946 genes for non-coding RNAs, largely long non-coding RNAs. The mitochondrial genome comprises 15,144 bp, encoding 13 proteins, 22 tRNAs and 2 rRNAs. We observed considerable rearrangement in the mitochondrial gene order compared to other bees. For an in-depth analysis of genes related to social biology, we manually checked the annotations for 533 automatically predicted gene models, including 127 genes related to reproductive processes, 104 to development, and 174 immunity-related genes. We also performed specific searches for genes containing transcription factor domains and genes related to neurogenesis and chemosensory communication. CONCLUSIONS: The total genome size for F. varia is similar to the sequenced genomes of other bees. Using specific prediction methods, we identified a large number of repetitive genome components and long non-coding RNAs, which could provide the molecular basis for gene regulatory plasticity, including worker reproduction. The remarkable reshuffling in gene order in the mitochondrial genome suggests that stingless bees may be a hotspot for mtDNA evolution. Hence, while being just the second stingless bee genome sequenced, we expect that subsequent targeting of a selected set of species from this diverse clade of highly eusocial bees will reveal relevant evolutionary signals and trends related to eusociality in these important pollinators.
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spelling pubmed-72686842020-06-08 The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste de Paula Freitas, Flávia C. Lourenço, Anete P. Nunes, Francis M. F. Paschoal, Alexandre R. Abreu, Fabiano C. P. Barbin, Fábio O. Bataglia, Luana Cardoso-Júnior, Carlos A. M. Cervoni, Mário S. Silva, Saura R. Dalarmi, Fernanda Del Lama, Marco A. Depintor, Thiago S. Ferreira, Kátia M. Gória, Paula S. Jaskot, Michael C. Lago, Denyse C. Luna-Lucena, Danielle Moda, Livia M. Nascimento, Leonardo Pedrino, Matheus Oliveira, Franciene Rabiço Sanches, Fernanda C. Santos, Douglas E. Santos, Carolina G. Vieira, Joseana Barchuk, Angel R. Hartfelder, Klaus Simões, Zilá L. P. Bitondi, Márcia M. G. Pinheiro, Daniel G. BMC Genomics Research Article BACKGROUND: Most of our understanding on the social behavior and genomics of bees and other social insects is centered on the Western honey bee, Apis mellifera. The genus Apis, however, is a highly derived branch comprising less than a dozen species, four of which genomically characterized. In contrast, for the equally highly eusocial, yet taxonomically and biologically more diverse Meliponini, a full genome sequence was so far available for a single Melipona species only. We present here the genome sequence of Frieseomelitta varia, a stingless bee that has, as a peculiarity, a completely sterile worker caste. RESULTS: The assembly of 243,974,526 high quality Illumina reads resulted in a predicted assembled genome size of 275 Mb composed of 2173 scaffolds. A BUSCO analysis for the 10,526 predicted genes showed that these represent 96.6% of the expected hymenopteran orthologs. We also predicted 169,371 repetitive genomic components, 2083 putative transposable elements, and 1946 genes for non-coding RNAs, largely long non-coding RNAs. The mitochondrial genome comprises 15,144 bp, encoding 13 proteins, 22 tRNAs and 2 rRNAs. We observed considerable rearrangement in the mitochondrial gene order compared to other bees. For an in-depth analysis of genes related to social biology, we manually checked the annotations for 533 automatically predicted gene models, including 127 genes related to reproductive processes, 104 to development, and 174 immunity-related genes. We also performed specific searches for genes containing transcription factor domains and genes related to neurogenesis and chemosensory communication. CONCLUSIONS: The total genome size for F. varia is similar to the sequenced genomes of other bees. Using specific prediction methods, we identified a large number of repetitive genome components and long non-coding RNAs, which could provide the molecular basis for gene regulatory plasticity, including worker reproduction. The remarkable reshuffling in gene order in the mitochondrial genome suggests that stingless bees may be a hotspot for mtDNA evolution. Hence, while being just the second stingless bee genome sequenced, we expect that subsequent targeting of a selected set of species from this diverse clade of highly eusocial bees will reveal relevant evolutionary signals and trends related to eusociality in these important pollinators. BioMed Central 2020-06-03 /pmc/articles/PMC7268684/ /pubmed/32493270 http://dx.doi.org/10.1186/s12864-020-06784-8 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research Article
de Paula Freitas, Flávia C.
Lourenço, Anete P.
Nunes, Francis M. F.
Paschoal, Alexandre R.
Abreu, Fabiano C. P.
Barbin, Fábio O.
Bataglia, Luana
Cardoso-Júnior, Carlos A. M.
Cervoni, Mário S.
Silva, Saura R.
Dalarmi, Fernanda
Del Lama, Marco A.
Depintor, Thiago S.
Ferreira, Kátia M.
Gória, Paula S.
Jaskot, Michael C.
Lago, Denyse C.
Luna-Lucena, Danielle
Moda, Livia M.
Nascimento, Leonardo
Pedrino, Matheus
Oliveira, Franciene Rabiço
Sanches, Fernanda C.
Santos, Douglas E.
Santos, Carolina G.
Vieira, Joseana
Barchuk, Angel R.
Hartfelder, Klaus
Simões, Zilá L. P.
Bitondi, Márcia M. G.
Pinheiro, Daniel G.
The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste
title The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste
title_full The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste
title_fullStr The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste
title_full_unstemmed The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste
title_short The nuclear and mitochondrial genomes of Frieseomelitta varia – a highly eusocial stingless bee (Meliponini) with a permanently sterile worker caste
title_sort nuclear and mitochondrial genomes of frieseomelitta varia – a highly eusocial stingless bee (meliponini) with a permanently sterile worker caste
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7268684/
https://www.ncbi.nlm.nih.gov/pubmed/32493270
http://dx.doi.org/10.1186/s12864-020-06784-8
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