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Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe

Maize was introduced into opposite sides of Eurasia 500 years ago, in Western Europe and in Asia. This caused two host‐shifts in the phytophagous genus Ostrinia; O. nubilalis (the European corn borer; ECB) and O. furnacalis (the Asian corn borer; ACB) are now major pests of maize worldwide. They ori...

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Autores principales: Calcagno, Vincent, Mitoyen, Clémentine, Audiot, Philippe, Ponsard, Sergine, Gao, Gui‐Zhen, Lu, Zhao‐Zhi, Wang, Zhen‐Ying, He, Kang‐Lai, Bourguet, Denis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680425/
https://www.ncbi.nlm.nih.gov/pubmed/29151879
http://dx.doi.org/10.1111/eva.12481
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author Calcagno, Vincent
Mitoyen, Clémentine
Audiot, Philippe
Ponsard, Sergine
Gao, Gui‐Zhen
Lu, Zhao‐Zhi
Wang, Zhen‐Ying
He, Kang‐Lai
Bourguet, Denis
author_facet Calcagno, Vincent
Mitoyen, Clémentine
Audiot, Philippe
Ponsard, Sergine
Gao, Gui‐Zhen
Lu, Zhao‐Zhi
Wang, Zhen‐Ying
He, Kang‐Lai
Bourguet, Denis
author_sort Calcagno, Vincent
collection PubMed
description Maize was introduced into opposite sides of Eurasia 500 years ago, in Western Europe and in Asia. This caused two host‐shifts in the phytophagous genus Ostrinia; O. nubilalis (the European corn borer; ECB) and O. furnacalis (the Asian corn borer; ACB) are now major pests of maize worldwide. They originated independently from Dicot‐feeding ancestors, similar to O. scapulalis (the Adzuki bean borer; ABB). Unlike other host‐plants, maize is yearly harvested, and harvesting practices impose severe mortality on larvae found above the cut‐off line. Positive geotaxis in the ECB has been proposed as a behavioural adaptation to harvesting practices, allowing larvae to move below the cut‐off line and thus escape harvest mortality. Here, we test whether the same behavioural adaptation evolved independently in Europe and in Asia. We sampled eight genetically differentiated ECB, ACB and ABB populations in France and China and monitored geotaxis through the entire larval development in artificial stacks mimicking maize stems. We find that all ECB and ACB populations show a similar tendency to move down during the latest larval stages, a behaviour not observed in any European or Asian ABB population. The behaviour is robustly expressed regardless of larval density, development mode or environmental conditions. Our results indicate that maize introduction triggered parallel behavioural adaptations in Europe and Asia, harvest selection presumably being the main driver.
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spelling pubmed-56804252017-11-17 Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe Calcagno, Vincent Mitoyen, Clémentine Audiot, Philippe Ponsard, Sergine Gao, Gui‐Zhen Lu, Zhao‐Zhi Wang, Zhen‐Ying He, Kang‐Lai Bourguet, Denis Evol Appl Original Articles Maize was introduced into opposite sides of Eurasia 500 years ago, in Western Europe and in Asia. This caused two host‐shifts in the phytophagous genus Ostrinia; O. nubilalis (the European corn borer; ECB) and O. furnacalis (the Asian corn borer; ACB) are now major pests of maize worldwide. They originated independently from Dicot‐feeding ancestors, similar to O. scapulalis (the Adzuki bean borer; ABB). Unlike other host‐plants, maize is yearly harvested, and harvesting practices impose severe mortality on larvae found above the cut‐off line. Positive geotaxis in the ECB has been proposed as a behavioural adaptation to harvesting practices, allowing larvae to move below the cut‐off line and thus escape harvest mortality. Here, we test whether the same behavioural adaptation evolved independently in Europe and in Asia. We sampled eight genetically differentiated ECB, ACB and ABB populations in France and China and monitored geotaxis through the entire larval development in artificial stacks mimicking maize stems. We find that all ECB and ACB populations show a similar tendency to move down during the latest larval stages, a behaviour not observed in any European or Asian ABB population. The behaviour is robustly expressed regardless of larval density, development mode or environmental conditions. Our results indicate that maize introduction triggered parallel behavioural adaptations in Europe and Asia, harvest selection presumably being the main driver. John Wiley and Sons Inc. 2017-06-17 /pmc/articles/PMC5680425/ /pubmed/29151879 http://dx.doi.org/10.1111/eva.12481 Text en © 2017 The Authors. Evolutionary Applications published by John Wiley & Sons Ltd This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Calcagno, Vincent
Mitoyen, Clémentine
Audiot, Philippe
Ponsard, Sergine
Gao, Gui‐Zhen
Lu, Zhao‐Zhi
Wang, Zhen‐Ying
He, Kang‐Lai
Bourguet, Denis
Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe
title Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe
title_full Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe
title_fullStr Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe
title_full_unstemmed Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe
title_short Parallel evolution of behaviour during independent host‐shifts following maize introduction into Asia and Europe
title_sort parallel evolution of behaviour during independent host‐shifts following maize introduction into asia and europe
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680425/
https://www.ncbi.nlm.nih.gov/pubmed/29151879
http://dx.doi.org/10.1111/eva.12481
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