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Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm

The cotton bollworm, Helicoverpa armigera, is set to become the most economically devastating crop pest in the world, threatening food security and biosafety as its range expands across the globe. Key to understanding the eco-evolutionary dynamics of H. armigera, and thus its management, is an under...

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Autores principales: Jin, Minghui, North, Henry L., Peng, Yan, Liu, Hangwei, Liu, Bo, Pan, Ruiqing, Zhou, Yan, Zheng, Weigang, Liu, Kaiyu, Yang, Bo, Zhang, Lei, Xu, Qi, Elfekih, Samia, Valencia-Montoya, Wendy A., Walsh, Tom, Cui, Peng, Zhou, Yongfeng, Wilson, Kenneth, Jiggins, Chris, Wu, Kongming, Xiao, Yutao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10300404/
https://www.ncbi.nlm.nih.gov/pubmed/37388193
http://dx.doi.org/10.1016/j.xinn.2023.100454
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author Jin, Minghui
North, Henry L.
Peng, Yan
Liu, Hangwei
Liu, Bo
Pan, Ruiqing
Zhou, Yan
Zheng, Weigang
Liu, Kaiyu
Yang, Bo
Zhang, Lei
Xu, Qi
Elfekih, Samia
Valencia-Montoya, Wendy A.
Walsh, Tom
Cui, Peng
Zhou, Yongfeng
Wilson, Kenneth
Jiggins, Chris
Wu, Kongming
Xiao, Yutao
author_facet Jin, Minghui
North, Henry L.
Peng, Yan
Liu, Hangwei
Liu, Bo
Pan, Ruiqing
Zhou, Yan
Zheng, Weigang
Liu, Kaiyu
Yang, Bo
Zhang, Lei
Xu, Qi
Elfekih, Samia
Valencia-Montoya, Wendy A.
Walsh, Tom
Cui, Peng
Zhou, Yongfeng
Wilson, Kenneth
Jiggins, Chris
Wu, Kongming
Xiao, Yutao
author_sort Jin, Minghui
collection PubMed
description The cotton bollworm, Helicoverpa armigera, is set to become the most economically devastating crop pest in the world, threatening food security and biosafety as its range expands across the globe. Key to understanding the eco-evolutionary dynamics of H. armigera, and thus its management, is an understanding of population connectivity and the adaptations that allow the pest to establish in unique environments. We assembled a chromosome-scale reference genome and re-sequenced 503 individuals spanning the species range to delineate global patterns of connectivity, uncovering a previously cryptic population structure. Using a genome-wide association study (GWAS) and cell line expression of major effect loci, we show that adaptive changes in a temperature- and light-sensitive developmental pathway enable facultative diapause and that adaptation of trehalose synthesis and transport underlies cold tolerance in extreme environments. Incorporating extensive pesticide resistance monitoring, we also characterize a suite of novel pesticide and Bt resistance alleles under selection in East China. These findings offer avenues for more effective management strategies and provide insight into how insects adapt to variable climatic conditions and newly colonized environments.
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spelling pubmed-103004042023-06-29 Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm Jin, Minghui North, Henry L. Peng, Yan Liu, Hangwei Liu, Bo Pan, Ruiqing Zhou, Yan Zheng, Weigang Liu, Kaiyu Yang, Bo Zhang, Lei Xu, Qi Elfekih, Samia Valencia-Montoya, Wendy A. Walsh, Tom Cui, Peng Zhou, Yongfeng Wilson, Kenneth Jiggins, Chris Wu, Kongming Xiao, Yutao Innovation (Camb) Article The cotton bollworm, Helicoverpa armigera, is set to become the most economically devastating crop pest in the world, threatening food security and biosafety as its range expands across the globe. Key to understanding the eco-evolutionary dynamics of H. armigera, and thus its management, is an understanding of population connectivity and the adaptations that allow the pest to establish in unique environments. We assembled a chromosome-scale reference genome and re-sequenced 503 individuals spanning the species range to delineate global patterns of connectivity, uncovering a previously cryptic population structure. Using a genome-wide association study (GWAS) and cell line expression of major effect loci, we show that adaptive changes in a temperature- and light-sensitive developmental pathway enable facultative diapause and that adaptation of trehalose synthesis and transport underlies cold tolerance in extreme environments. Incorporating extensive pesticide resistance monitoring, we also characterize a suite of novel pesticide and Bt resistance alleles under selection in East China. These findings offer avenues for more effective management strategies and provide insight into how insects adapt to variable climatic conditions and newly colonized environments. Elsevier 2023-05-30 /pmc/articles/PMC10300404/ /pubmed/37388193 http://dx.doi.org/10.1016/j.xinn.2023.100454 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Jin, Minghui
North, Henry L.
Peng, Yan
Liu, Hangwei
Liu, Bo
Pan, Ruiqing
Zhou, Yan
Zheng, Weigang
Liu, Kaiyu
Yang, Bo
Zhang, Lei
Xu, Qi
Elfekih, Samia
Valencia-Montoya, Wendy A.
Walsh, Tom
Cui, Peng
Zhou, Yongfeng
Wilson, Kenneth
Jiggins, Chris
Wu, Kongming
Xiao, Yutao
Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm
title Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm
title_full Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm
title_fullStr Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm
title_full_unstemmed Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm
title_short Adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm
title_sort adaptive evolution to the natural and anthropogenic environment in a global invasive crop pest, the cotton bollworm
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10300404/
https://www.ncbi.nlm.nih.gov/pubmed/37388193
http://dx.doi.org/10.1016/j.xinn.2023.100454
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