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Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits

Bumblebees are a diverse group of globally important pollinators in natural ecosystems and for agricultural food production. With both eusocial and solitary life-cycle phases, and some social parasite species, they are especially interesting models to understand social evolution, behavior, and ecolo...

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Autores principales: Sun, Cheng, Huang, Jiaxing, Wang, Yun, Zhao, Xiaomeng, Su, Long, Thomas, Gregg W C, Zhao, Mengya, Zhang, Xingtan, Jungreis, Irwin, Kellis, Manolis, Vicario, Saverio, Sharakhov, Igor V, Bondarenko, Semen M, Hasselmann, Martin, Kim, Chang N, Paten, Benedict, Penso-Dolfin, Luca, Wang, Li, Chang, Yuxiao, Gao, Qiang, Ma, Ling, Ma, Lina, Zhang, Zhang, Zhang, Hongbo, Zhang, Huahao, Ruzzante, Livio, Robertson, Hugh M, Zhu, Yihui, Liu, Yanjie, Yang, Huipeng, Ding, Lele, Wang, Quangui, Ma, Dongna, Xu, Weilin, Liang, Cheng, Itgen, Michael W, Mee, Lauren, Cao, Gang, Zhang, Ze, Sadd, Ben M, Hahn, Matthew W, Schaack, Sarah, Barribeau, Seth M, Williams, Paul H, Waterhouse, Robert M, Mueller, Rachel Lockridge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7826183/
https://www.ncbi.nlm.nih.gov/pubmed/32946576
http://dx.doi.org/10.1093/molbev/msaa240
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author Sun, Cheng
Huang, Jiaxing
Wang, Yun
Zhao, Xiaomeng
Su, Long
Thomas, Gregg W C
Zhao, Mengya
Zhang, Xingtan
Jungreis, Irwin
Kellis, Manolis
Vicario, Saverio
Sharakhov, Igor V
Bondarenko, Semen M
Hasselmann, Martin
Kim, Chang N
Paten, Benedict
Penso-Dolfin, Luca
Wang, Li
Chang, Yuxiao
Gao, Qiang
Ma, Ling
Ma, Lina
Zhang, Zhang
Zhang, Hongbo
Zhang, Huahao
Ruzzante, Livio
Robertson, Hugh M
Zhu, Yihui
Liu, Yanjie
Yang, Huipeng
Ding, Lele
Wang, Quangui
Ma, Dongna
Xu, Weilin
Liang, Cheng
Itgen, Michael W
Mee, Lauren
Cao, Gang
Zhang, Ze
Sadd, Ben M
Hahn, Matthew W
Schaack, Sarah
Barribeau, Seth M
Williams, Paul H
Waterhouse, Robert M
Mueller, Rachel Lockridge
author_facet Sun, Cheng
Huang, Jiaxing
Wang, Yun
Zhao, Xiaomeng
Su, Long
Thomas, Gregg W C
Zhao, Mengya
Zhang, Xingtan
Jungreis, Irwin
Kellis, Manolis
Vicario, Saverio
Sharakhov, Igor V
Bondarenko, Semen M
Hasselmann, Martin
Kim, Chang N
Paten, Benedict
Penso-Dolfin, Luca
Wang, Li
Chang, Yuxiao
Gao, Qiang
Ma, Ling
Ma, Lina
Zhang, Zhang
Zhang, Hongbo
Zhang, Huahao
Ruzzante, Livio
Robertson, Hugh M
Zhu, Yihui
Liu, Yanjie
Yang, Huipeng
Ding, Lele
Wang, Quangui
Ma, Dongna
Xu, Weilin
Liang, Cheng
Itgen, Michael W
Mee, Lauren
Cao, Gang
Zhang, Ze
Sadd, Ben M
Hahn, Matthew W
Schaack, Sarah
Barribeau, Seth M
Williams, Paul H
Waterhouse, Robert M
Mueller, Rachel Lockridge
author_sort Sun, Cheng
collection PubMed
description Bumblebees are a diverse group of globally important pollinators in natural ecosystems and for agricultural food production. With both eusocial and solitary life-cycle phases, and some social parasite species, they are especially interesting models to understand social evolution, behavior, and ecology. Reports of many species in decline point to pathogen transmission, habitat loss, pesticide usage, and global climate change, as interconnected causes. These threats to bumblebee diversity make our reliance on a handful of well-studied species for agricultural pollination particularly precarious. To broadly sample bumblebee genomic and phenotypic diversity, we de novo sequenced and assembled the genomes of 17 species, representing all 15 subgenera, producing the first genus-wide quantification of genetic and genomic variation potentially underlying key ecological and behavioral traits. The species phylogeny resolves subgenera relationships, whereas incomplete lineage sorting likely drives high levels of gene tree discordance. Five chromosome-level assemblies show a stable 18-chromosome karyotype, with major rearrangements creating 25 chromosomes in social parasites. Differential transposable element activity drives changes in genome sizes, with putative domestications of repetitive sequences influencing gene coding and regulatory potential. Dynamically evolving gene families and signatures of positive selection point to genus-wide variation in processes linked to foraging, diet and metabolism, immunity and detoxification, as well as adaptations for life at high altitudes. Our study reveals how bumblebee genes and genomes have evolved across the Bombus phylogeny and identifies variations potentially linked to key ecological and behavioral traits of these important pollinators.
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spelling pubmed-78261832021-01-27 Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits Sun, Cheng Huang, Jiaxing Wang, Yun Zhao, Xiaomeng Su, Long Thomas, Gregg W C Zhao, Mengya Zhang, Xingtan Jungreis, Irwin Kellis, Manolis Vicario, Saverio Sharakhov, Igor V Bondarenko, Semen M Hasselmann, Martin Kim, Chang N Paten, Benedict Penso-Dolfin, Luca Wang, Li Chang, Yuxiao Gao, Qiang Ma, Ling Ma, Lina Zhang, Zhang Zhang, Hongbo Zhang, Huahao Ruzzante, Livio Robertson, Hugh M Zhu, Yihui Liu, Yanjie Yang, Huipeng Ding, Lele Wang, Quangui Ma, Dongna Xu, Weilin Liang, Cheng Itgen, Michael W Mee, Lauren Cao, Gang Zhang, Ze Sadd, Ben M Hahn, Matthew W Schaack, Sarah Barribeau, Seth M Williams, Paul H Waterhouse, Robert M Mueller, Rachel Lockridge Mol Biol Evol Discoveries Bumblebees are a diverse group of globally important pollinators in natural ecosystems and for agricultural food production. With both eusocial and solitary life-cycle phases, and some social parasite species, they are especially interesting models to understand social evolution, behavior, and ecology. Reports of many species in decline point to pathogen transmission, habitat loss, pesticide usage, and global climate change, as interconnected causes. These threats to bumblebee diversity make our reliance on a handful of well-studied species for agricultural pollination particularly precarious. To broadly sample bumblebee genomic and phenotypic diversity, we de novo sequenced and assembled the genomes of 17 species, representing all 15 subgenera, producing the first genus-wide quantification of genetic and genomic variation potentially underlying key ecological and behavioral traits. The species phylogeny resolves subgenera relationships, whereas incomplete lineage sorting likely drives high levels of gene tree discordance. Five chromosome-level assemblies show a stable 18-chromosome karyotype, with major rearrangements creating 25 chromosomes in social parasites. Differential transposable element activity drives changes in genome sizes, with putative domestications of repetitive sequences influencing gene coding and regulatory potential. Dynamically evolving gene families and signatures of positive selection point to genus-wide variation in processes linked to foraging, diet and metabolism, immunity and detoxification, as well as adaptations for life at high altitudes. Our study reveals how bumblebee genes and genomes have evolved across the Bombus phylogeny and identifies variations potentially linked to key ecological and behavioral traits of these important pollinators. Oxford University Press 2020-09-18 /pmc/articles/PMC7826183/ /pubmed/32946576 http://dx.doi.org/10.1093/molbev/msaa240 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Discoveries
Sun, Cheng
Huang, Jiaxing
Wang, Yun
Zhao, Xiaomeng
Su, Long
Thomas, Gregg W C
Zhao, Mengya
Zhang, Xingtan
Jungreis, Irwin
Kellis, Manolis
Vicario, Saverio
Sharakhov, Igor V
Bondarenko, Semen M
Hasselmann, Martin
Kim, Chang N
Paten, Benedict
Penso-Dolfin, Luca
Wang, Li
Chang, Yuxiao
Gao, Qiang
Ma, Ling
Ma, Lina
Zhang, Zhang
Zhang, Hongbo
Zhang, Huahao
Ruzzante, Livio
Robertson, Hugh M
Zhu, Yihui
Liu, Yanjie
Yang, Huipeng
Ding, Lele
Wang, Quangui
Ma, Dongna
Xu, Weilin
Liang, Cheng
Itgen, Michael W
Mee, Lauren
Cao, Gang
Zhang, Ze
Sadd, Ben M
Hahn, Matthew W
Schaack, Sarah
Barribeau, Seth M
Williams, Paul H
Waterhouse, Robert M
Mueller, Rachel Lockridge
Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits
title Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits
title_full Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits
title_fullStr Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits
title_full_unstemmed Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits
title_short Genus-Wide Characterization of Bumblebee Genomes Provides Insights into Their Evolution and Variation in Ecological and Behavioral Traits
title_sort genus-wide characterization of bumblebee genomes provides insights into their evolution and variation in ecological and behavioral traits
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7826183/
https://www.ncbi.nlm.nih.gov/pubmed/32946576
http://dx.doi.org/10.1093/molbev/msaa240
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