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Title: | The genomic basis of evolutionary differentiation among honey bees |
Authors: | Bertrand Fouks Philipp Brand Hung N. Nguyen Jacob Herman Francisco Camara Daniel Ence Darren E. Hagen Katharina J. Hoff Stefanie Nachweide Lars Romoth Kimberly K.O. Walden Roderic Guigo Mario Stanke Giuseppe Narzisi Mark Yandell Hugh M. Robertson Nikolaus Koeniger Panuwan Chantawannakul Michael C. Schatz Kim C. Worley Gene E. Robinson Christine G. Elsik Olav Rueppell |
Authors: | Bertrand Fouks Philipp Brand Hung N. Nguyen Jacob Herman Francisco Camara Daniel Ence Darren E. Hagen Katharina J. Hoff Stefanie Nachweide Lars Romoth Kimberly K.O. Walden Roderic Guigo Mario Stanke Giuseppe Narzisi Mark Yandell Hugh M. Robertson Nikolaus Koeniger Panuwan Chantawannakul Michael C. Schatz Kim C. Worley Gene E. Robinson Christine G. Elsik Olav Rueppell |
Keywords: | Biochemistry, Genetics and Molecular Biology;Medicine |
Issue Date: | 1-Jul-2021 |
Abstract: | In contrast to the western honey bee, Apis mellifera, other honey bee species have been largely neglected despite their importance and diversity. The genetic basis of the evolutionary diversification of honey bees remains largely unknown. Here, we provide a genome-wide comparison of three honey bee species, each representing one of the three subgenera of honey bees, namely the dwarf (Apis florea), giant (A. dorsata), and cavity-nesting (A. mellifera) honey bees with bumblebees as an outgroup. Our analyses resolve the phylogeny of honey bees with the dwarf honey bees diverging first. We find that evolution of increased eusocial complexity in Apis proceeds via increases in the complexity of gene regulation, which is in agreement with previous studies. However, this process seems to be related to pathways other than transcriptional control. Positive selection patterns across Apis reveal a trade-off between maintaining genome stability and generating genetic diversity, with a rapidly evolving piRNA pathway leading to genomes depleted of transposable elements, and a rapidly evolving DNA repair pathway associated with high recombination rates in all Apis species. Diversification within Apis is accompanied by positive selection in several genes whose putative functions present candidate mechanisms for lineage-specific adaptations, such as migration, immunity, and nesting behavior. |
URI: | https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85109023709&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/75622 |
ISSN: | 15495469 10889051 |
Appears in Collections: | CMUL: Journal Articles |
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