Influence of voltine ecotype and geographic distance on genetic and haplotype variation in the Asian corn borer
Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause initiation and duration in Ostrinia furnacalis may influence adult mating generation number (voltinism) across different local environments. The...
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Published in | Ecology and evolution Vol. 11; no. 15; pp. 10244 - 10257 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Bognor Regis
John Wiley & Sons, Inc
01.08.2021
John Wiley and Sons Inc Wiley |
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Abstract | Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause initiation and duration in Ostrinia furnacalis may influence adult mating generation number (voltinism) across different local environments. The degree to which voltine ecotype, geographic distance, or other ecological factors influence O. furnacalis population genetic structure remains uncertain. Genetic differentiation was estimated between voltine ecotypes collected from 8 locations. Mitochondrial haplotypes were significantly different between historically allopatric univoltine and bivoltine locations, but confounded by a strong correlation with geographic distance. In contrast, single nucleotide polymorphism (SNP) genotypes show low but significant levels of variation and a lack of influence of geographic distance between allopatric voltine locations. Regardless, 11 of 257 SNP loci were predicted to be under selection, suggesting population genetic homogenization except at loci proximal to factors putatively under selection. These findings provide evidence of haplotype divergent voltine ecotypes that may be maintained in allopatric and sympatric areas despite relatively high rates of nuclear gene flow, yet influence of voltinism on maintenance of observed haplotype divergence remains unresolved.
The Asian corn borer (ACB) is a major pest insect of cultivated maize throughout China, including Jilin Province where ecotypes of this species differ in voltine traits. The distribution of significant mitochondrial haplotype and nuclear genetic variation among sample locations suggests geography and voltinism are factors influencing contemporary ACB genetic structure in Jilin Province. |
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AbstractList | Abstract
Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause initiation and duration in
Ostrinia furnacalis
may influence adult mating generation number (voltinism) across different local environments. The degree to which voltine ecotype, geographic distance, or other ecological factors influence
O. furnacalis
population genetic structure remains uncertain. Genetic differentiation was estimated between voltine ecotypes collected from 8 locations. Mitochondrial haplotypes were significantly different between historically allopatric univoltine and bivoltine locations, but confounded by a strong correlation with geographic distance. In contrast, single nucleotide polymorphism (SNP) genotypes show low but significant levels of variation and a lack of influence of geographic distance between allopatric voltine locations. Regardless, 11 of 257 SNP loci were predicted to be under selection, suggesting population genetic homogenization except at loci proximal to factors putatively under selection. These findings provide evidence of haplotype divergent voltine ecotypes that may be maintained in allopatric and sympatric areas despite relatively high rates of nuclear gene flow, yet influence of voltinism on maintenance of observed haplotype divergence remains unresolved. Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause initiation and duration in Ostrinia furnacalis may influence adult mating generation number (voltinism) across different local environments. The degree to which voltine ecotype, geographic distance, or other ecological factors influence O. furnacalis population genetic structure remains uncertain. Genetic differentiation was estimated between voltine ecotypes collected from 8 locations. Mitochondrial haplotypes were significantly different between historically allopatric univoltine and bivoltine locations, but confounded by a strong correlation with geographic distance. In contrast, single nucleotide polymorphism (SNP) genotypes show low but significant levels of variation and a lack of influence of geographic distance between allopatric voltine locations. Regardless, 11 of 257 SNP loci were predicted to be under selection, suggesting population genetic homogenization except at loci proximal to factors putatively under selection. These findings provide evidence of haplotype divergent voltine ecotypes that may be maintained in allopatric and sympatric areas despite relatively high rates of nuclear gene flow, yet influence of voltinism on maintenance of observed haplotype divergence remains unresolved. The Asian corn borer (ACB) is a major pest insect of cultivated maize throughout China, including Jilin Province where ecotypes of this species differ in voltine traits. The distribution of significant mitochondrial haplotype and nuclear genetic variation among sample locations suggests geography and voltinism are factors influencing contemporary ACB genetic structure in Jilin Province. Abstract Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause initiation and duration in Ostrinia furnacalis may influence adult mating generation number (voltinism) across different local environments. The degree to which voltine ecotype, geographic distance, or other ecological factors influence O. furnacalis population genetic structure remains uncertain. Genetic differentiation was estimated between voltine ecotypes collected from 8 locations. Mitochondrial haplotypes were significantly different between historically allopatric univoltine and bivoltine locations, but confounded by a strong correlation with geographic distance. In contrast, single nucleotide polymorphism (SNP) genotypes show low but significant levels of variation and a lack of influence of geographic distance between allopatric voltine locations. Regardless, 11 of 257 SNP loci were predicted to be under selection, suggesting population genetic homogenization except at loci proximal to factors putatively under selection. These findings provide evidence of haplotype divergent voltine ecotypes that may be maintained in allopatric and sympatric areas despite relatively high rates of nuclear gene flow, yet influence of voltinism on maintenance of observed haplotype divergence remains unresolved. Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause initiation and duration in Ostrinia furnacalis may influence adult mating generation number (voltinism) across different local environments. The degree to which voltine ecotype, geographic distance, or other ecological factors influence O. furnacalis population genetic structure remains uncertain. Genetic differentiation was estimated between voltine ecotypes collected from 8 locations. Mitochondrial haplotypes were significantly different between historically allopatric univoltine and bivoltine locations, but confounded by a strong correlation with geographic distance. In contrast, single nucleotide polymorphism (SNP) genotypes show low but significant levels of variation and a lack of influence of geographic distance between allopatric voltine locations. Regardless, 11 of 257 SNP loci were predicted to be under selection, suggesting population genetic homogenization except at loci proximal to factors putatively under selection. These findings provide evidence of haplotype divergent voltine ecotypes that may be maintained in allopatric and sympatric areas despite relatively high rates of nuclear gene flow, yet influence of voltinism on maintenance of observed haplotype divergence remains unresolved. Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause initiation and duration in Ostrinia furnacalis may influence adult mating generation number (voltinism) across different local environments. The degree to which voltine ecotype, geographic distance, or other ecological factors influence O. furnacalis population genetic structure remains uncertain. Genetic differentiation was estimated between voltine ecotypes collected from 8 locations. Mitochondrial haplotypes were significantly different between historically allopatric univoltine and bivoltine locations, but confounded by a strong correlation with geographic distance. In contrast, single nucleotide polymorphism (SNP) genotypes show low but significant levels of variation and a lack of influence of geographic distance between allopatric voltine locations. Regardless, 11 of 257 SNP loci were predicted to be under selection, suggesting population genetic homogenization except at loci proximal to factors putatively under selection. These findings provide evidence of haplotype divergent voltine ecotypes that may be maintained in allopatric and sympatric areas despite relatively high rates of nuclear gene flow, yet influence of voltinism on maintenance of observed haplotype divergence remains unresolved. The Asian corn borer (ACB) is a major pest insect of cultivated maize throughout China, including Jilin Province where ecotypes of this species differ in voltine traits. The distribution of significant mitochondrial haplotype and nuclear genetic variation among sample locations suggests geography and voltinism are factors influencing contemporary ACB genetic structure in Jilin Province. |
Author | Kim, Kyung Seok Li, Qiyun Coates, Brad Steven Wang, Yangzhou Wang, Zhen‐Ying Zhang, Yunyue |
AuthorAffiliation | 1 Northeast Agricultural Research Center of China Jilin Academy of Agricultural Sciences Changchun China 3 Institute of Plant Protection Chinese Academy of Agricultural Sciences Beijing China 2 Natural Resource Ecology and Management Iowa State University Ames IA USA 4 Corn Insects and Crop Genetics Research Unit USDA ARS Ames IA USA |
AuthorAffiliation_xml | – name: 1 Northeast Agricultural Research Center of China Jilin Academy of Agricultural Sciences Changchun China – name: 4 Corn Insects and Crop Genetics Research Unit USDA ARS Ames IA USA – name: 2 Natural Resource Ecology and Management Iowa State University Ames IA USA – name: 3 Institute of Plant Protection Chinese Academy of Agricultural Sciences Beijing China |
Author_xml | – sequence: 1 givenname: Yangzhou surname: Wang fullname: Wang, Yangzhou organization: Jilin Academy of Agricultural Sciences – sequence: 2 givenname: Kyung Seok surname: Kim fullname: Kim, Kyung Seok organization: Iowa State University – sequence: 3 givenname: Qiyun surname: Li fullname: Li, Qiyun organization: Jilin Academy of Agricultural Sciences – sequence: 4 givenname: Yunyue surname: Zhang fullname: Zhang, Yunyue organization: Jilin Academy of Agricultural Sciences – sequence: 5 givenname: Zhen‐Ying surname: Wang fullname: Wang, Zhen‐Ying organization: Chinese Academy of Agricultural Sciences – sequence: 6 givenname: Brad Steven orcidid: 0000-0001-8908-1529 surname: Coates fullname: Coates, Brad Steven email: brad.coates@usda.gov organization: USDA ARS |
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Snippet | Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval diapause... Abstract Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval... Abstract Diapause is an adaptive dormancy strategy by which arthropods endure extended periods of adverse climatic conditions. Seasonal variation in larval... |
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SubjectTerms | Arthropods Chromosomes Circadian rhythm Climatic conditions Cytochrome Diapause Divergence divergent phenotypic selection Dormancy ecological adaptation Ecological effects Ecotypes Environmental conditions Gene flow Gene polymorphism Genes Genetic diversity Genetic structure Genotypes Haplotypes Loci Mitochondria Nucleotides Original Research Polymorphism Population Population genetics Quantitative genetics Seasonal variations Single-nucleotide polymorphism Sympatric populations Voltinism |
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Title | Influence of voltine ecotype and geographic distance on genetic and haplotype variation in the Asian corn borer |
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