Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from Potato

Metapopulation structure generated by recurrent extinctions and recolonizations plays an important role in the evolution of species but is rarely considered in agricultural systems. In this study, generation and mechanism of metapopulation structure were investigated by microsatellite assaying 725 i...

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Main Authors: Jing-Wen Meng, Dun-Chun He, Wen Zhu, Li-Na Yang, E-Jiao Wu, Jia-Hui Xie, Li-Ping Shang, Jiasui Zhan
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-02-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/article/10.3389/fpls.2018.00198/full
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spelling doaj-6b0c0a4bfbff4848b9438427d3ad53932020-11-24T20:52:58ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2018-02-01910.3389/fpls.2018.00198285943Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from PotatoJing-Wen Meng0Dun-Chun He1Wen Zhu2Li-Na Yang3E-Jiao Wu4Jia-Hui Xie5Li-Ping Shang6Jiasui Zhan7Jiasui Zhan8Fujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaFujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaFujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaFujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaFujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaFujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaFujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaFujian Key Laboratory of Plant Virology, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, ChinaState Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou, ChinaMetapopulation structure generated by recurrent extinctions and recolonizations plays an important role in the evolution of species but is rarely considered in agricultural systems. In this study, generation and mechanism of metapopulation structure were investigated by microsatellite assaying 725 isolates of Alternaria alternata sampled from potato hosts at 16 locations across China. We found a single major cluster, no isolate-geography associations and no bottlenecks in the A. alternata isolates, suggesting a metapopulation genetic structure of the pathogen. We also found weak isolation-by-distance, lower among than within cropping region population differentiation, concordant moving directions of potato products and net gene flow and the highest gene diversity in the region with the most potato imports. These results indicate that in addition to natural dispersal, human-mediated gene flow also contributes to the generation and dynamics of the metapopulation genetic structure of A. alternata in China. Metapopulation structure increases the adaptive capacity of the plant pathogen as a result of enhanced genetic variation and reduced population fragmentation. Consequently, rigid quarantine regulations may be required to reduce population connectivity and the evolutionary potential of A. alternata and other pathogens with a similar population dynamics for a sustainable plant disease management.http://journal.frontiersin.org/article/10.3389/fpls.2018.00198/fullAlternaria alternatametapopulation genetic structureadmixtureisolation-by-distancehuman-mediated gene flowneutral evolution
collection DOAJ
language English
format Article
sources DOAJ
author Jing-Wen Meng
Dun-Chun He
Wen Zhu
Li-Na Yang
E-Jiao Wu
Jia-Hui Xie
Li-Ping Shang
Jiasui Zhan
Jiasui Zhan
spellingShingle Jing-Wen Meng
Dun-Chun He
Wen Zhu
Li-Na Yang
E-Jiao Wu
Jia-Hui Xie
Li-Ping Shang
Jiasui Zhan
Jiasui Zhan
Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from Potato
Frontiers in Plant Science
Alternaria alternata
metapopulation genetic structure
admixture
isolation-by-distance
human-mediated gene flow
neutral evolution
author_facet Jing-Wen Meng
Dun-Chun He
Wen Zhu
Li-Na Yang
E-Jiao Wu
Jia-Hui Xie
Li-Ping Shang
Jiasui Zhan
Jiasui Zhan
author_sort Jing-Wen Meng
title Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from Potato
title_short Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from Potato
title_full Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from Potato
title_fullStr Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from Potato
title_full_unstemmed Human-Mediated Gene Flow Contributes to Metapopulation Genetic Structure of the Pathogenic Fungus Alternaria alternata from Potato
title_sort human-mediated gene flow contributes to metapopulation genetic structure of the pathogenic fungus alternaria alternata from potato
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2018-02-01
description Metapopulation structure generated by recurrent extinctions and recolonizations plays an important role in the evolution of species but is rarely considered in agricultural systems. In this study, generation and mechanism of metapopulation structure were investigated by microsatellite assaying 725 isolates of Alternaria alternata sampled from potato hosts at 16 locations across China. We found a single major cluster, no isolate-geography associations and no bottlenecks in the A. alternata isolates, suggesting a metapopulation genetic structure of the pathogen. We also found weak isolation-by-distance, lower among than within cropping region population differentiation, concordant moving directions of potato products and net gene flow and the highest gene diversity in the region with the most potato imports. These results indicate that in addition to natural dispersal, human-mediated gene flow also contributes to the generation and dynamics of the metapopulation genetic structure of A. alternata in China. Metapopulation structure increases the adaptive capacity of the plant pathogen as a result of enhanced genetic variation and reduced population fragmentation. Consequently, rigid quarantine regulations may be required to reduce population connectivity and the evolutionary potential of A. alternata and other pathogens with a similar population dynamics for a sustainable plant disease management.
topic Alternaria alternata
metapopulation genetic structure
admixture
isolation-by-distance
human-mediated gene flow
neutral evolution
url http://journal.frontiersin.org/article/10.3389/fpls.2018.00198/full
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