Cargando…
New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria)
With nearly 100,000 species, the Acercaria (lice, plant lices, thrips, bugs) including number of economically important species is one of the most successful insect lineages. However, its phylogeny and evolution of mouthparts among other issues remain debatable. Here new methods of preparation permi...
Autores principales: | , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4785345/ https://www.ncbi.nlm.nih.gov/pubmed/26961785 http://dx.doi.org/10.1038/srep23004 |
_version_ | 1782420393475178496 |
---|---|
author | Huang, Di-Ying Bechly, Günter Nel, Patricia Engel, Michael S. Prokop, Jakub Azar, Dany Cai, Chen-Yang van de Kamp, Thomas Staniczek, Arnold H. Garrouste, Romain Krogmann, Lars dos Santos Rolo, Tomy Baumbach, Tilo Ohlhoff, Rainer Shmakov, Alexey S. Bourgoin, Thierry Nel, André |
author_facet | Huang, Di-Ying Bechly, Günter Nel, Patricia Engel, Michael S. Prokop, Jakub Azar, Dany Cai, Chen-Yang van de Kamp, Thomas Staniczek, Arnold H. Garrouste, Romain Krogmann, Lars dos Santos Rolo, Tomy Baumbach, Tilo Ohlhoff, Rainer Shmakov, Alexey S. Bourgoin, Thierry Nel, André |
author_sort | Huang, Di-Ying |
collection | PubMed |
description | With nearly 100,000 species, the Acercaria (lice, plant lices, thrips, bugs) including number of economically important species is one of the most successful insect lineages. However, its phylogeny and evolution of mouthparts among other issues remain debatable. Here new methods of preparation permitted the comprehensive anatomical description of insect inclusions from mid-Cretaceous Burmese amber in astonishing detail. These “missing links” fossils, attributed to a new order Permopsocida, provide crucial evidence for reconstructing the phylogenetic relationships in the Acercaria, supporting its monophyly, and questioning the position of Psocodea as sister group of holometabolans in the most recent phylogenomic study. Permopsocida resolves as sister group of Thripida + Hemiptera and represents an evolutionary link documenting the transition from chewing to piercing mouthparts in relation to suction feeding. Identification of gut contents as angiosperm pollen documents an ecological role of Permopsocida as early pollen feeders with relatively unspecialized mouthparts. This group existed for 185 million years, but has never been diverse and was superseded by new pollenivorous pollinators during the Cretaceous co-evolution of insects and flowers. The key innovation of suction feeding with piercing mouthparts is identified as main event that triggered the huge post-Carboniferous radiation of hemipterans, and facilitated the spreading of pathogenic vectors. |
format | Online Article Text |
id | pubmed-4785345 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Nature Publishing Group |
record_format | MEDLINE/PubMed |
spelling | pubmed-47853452016-03-11 New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria) Huang, Di-Ying Bechly, Günter Nel, Patricia Engel, Michael S. Prokop, Jakub Azar, Dany Cai, Chen-Yang van de Kamp, Thomas Staniczek, Arnold H. Garrouste, Romain Krogmann, Lars dos Santos Rolo, Tomy Baumbach, Tilo Ohlhoff, Rainer Shmakov, Alexey S. Bourgoin, Thierry Nel, André Sci Rep Article With nearly 100,000 species, the Acercaria (lice, plant lices, thrips, bugs) including number of economically important species is one of the most successful insect lineages. However, its phylogeny and evolution of mouthparts among other issues remain debatable. Here new methods of preparation permitted the comprehensive anatomical description of insect inclusions from mid-Cretaceous Burmese amber in astonishing detail. These “missing links” fossils, attributed to a new order Permopsocida, provide crucial evidence for reconstructing the phylogenetic relationships in the Acercaria, supporting its monophyly, and questioning the position of Psocodea as sister group of holometabolans in the most recent phylogenomic study. Permopsocida resolves as sister group of Thripida + Hemiptera and represents an evolutionary link documenting the transition from chewing to piercing mouthparts in relation to suction feeding. Identification of gut contents as angiosperm pollen documents an ecological role of Permopsocida as early pollen feeders with relatively unspecialized mouthparts. This group existed for 185 million years, but has never been diverse and was superseded by new pollenivorous pollinators during the Cretaceous co-evolution of insects and flowers. The key innovation of suction feeding with piercing mouthparts is identified as main event that triggered the huge post-Carboniferous radiation of hemipterans, and facilitated the spreading of pathogenic vectors. Nature Publishing Group 2016-03-10 /pmc/articles/PMC4785345/ /pubmed/26961785 http://dx.doi.org/10.1038/srep23004 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ |
spellingShingle | Article Huang, Di-Ying Bechly, Günter Nel, Patricia Engel, Michael S. Prokop, Jakub Azar, Dany Cai, Chen-Yang van de Kamp, Thomas Staniczek, Arnold H. Garrouste, Romain Krogmann, Lars dos Santos Rolo, Tomy Baumbach, Tilo Ohlhoff, Rainer Shmakov, Alexey S. Bourgoin, Thierry Nel, André New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria) |
title | New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria) |
title_full | New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria) |
title_fullStr | New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria) |
title_full_unstemmed | New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria) |
title_short | New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria) |
title_sort | new fossil insect order permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (hexapoda: acercaria) |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4785345/ https://www.ncbi.nlm.nih.gov/pubmed/26961785 http://dx.doi.org/10.1038/srep23004 |
work_keys_str_mv | AT huangdiying newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT bechlygunter newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT nelpatricia newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT engelmichaels newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT prokopjakub newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT azardany newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT caichenyang newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT vandekampthomas newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT staniczekarnoldh newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT garrousteromain newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT krogmannlars newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT dossantosrolotomy newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT baumbachtilo newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT ohlhoffrainer newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT shmakovalexeys newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT bourgointhierry newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria AT nelandre newfossilinsectorderpermopsocidaelucidatesmajorradiationandevolutionofsuctionfeedinginhemimetabolousinsectshexapodaacercaria |