Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern China

To determine population genomic structure through high-throughput sequencing techniques has revolutionized research on non-model organisms. The coconut leaf beetle, <i>Brontispa longissima</i> (Gestro), is a widely distributed pest in Southern China. Here, we used restriction site-associ...

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Main Authors: Zhiming Chen, Guihua Wang, Min Li, Zhengqiang Peng, Habib Ali, Lina Xu, Geoff M. Gurr, Youming Hou
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:Insects
Subjects:
Online Access:https://www.mdpi.com/2075-4450/11/4/230
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spelling doaj-99f8e1e9a4aa4b589f6a30a7db1795002020-11-25T02:33:00ZengMDPI AGInsects2075-44502020-04-011123023010.3390/insects11040230Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern ChinaZhiming Chen0Guihua Wang1Min Li2Zhengqiang Peng3Habib Ali4Lina Xu5Geoff M. Gurr6Youming Hou7State Key Laboratory of Ecological Pest Control of Fujian-Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaState Key Laboratory of Ecological Pest Control of Fujian-Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaTechnology Center of Fuzhou Customs District, Fuzhou 350000, ChinaEnvironment and Plant Protection Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, ChinaState Key Laboratory of Ecological Pest Control of Fujian-Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaState Key Laboratory of Ecological Pest Control of Fujian-Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaState Key Laboratory of Ecological Pest Control of Fujian-Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaState Key Laboratory of Ecological Pest Control of Fujian-Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou 350002, ChinaTo determine population genomic structure through high-throughput sequencing techniques has revolutionized research on non-model organisms. The coconut leaf beetle, <i>Brontispa longissima</i> (Gestro), is a widely distributed pest in Southern China. Here, we used restriction site-associated DNA (RAD) genotyping to assess the invasion pathway by detecting and estimating the degree of genetic differentiation among 51 <i>B. longissima</i> accessions collected from Southern China. A total of 10,127 SNPs were obtained, the screened single nucleotide polymorphism (SNP) information was used to construct the phylogenetic tree, <i>F</i>ST analysis, principal component analysis, and population structure analysis. Genetic structure analysis was used to infer the population structure; the result showed that all accessions were divided into Hainan population and non-Hainan population. The Hainan population remained stable, only the Sansha population differentiated, and the non-Hainan populations have gradually differentiated into smaller sub-populations. We concluded that there are two sources of invasion of <i>B. longissima</i> into mainland China: Taiwan and Hainan. With the increase of the invasion time, the Hainan population was relatively stable, and the Taiwan population was differentiated into three sub-populations. Based on the unrooted phylogenetic tree, we infer that Taiwan and Hainan are the two invasive base points. The Taiwan population invaded Fujian, Guangdong, and Guangxi, while the Hainan population invaded Yunnan and Sansha. Our results provide strong evidence for the utility of RAD sequencing (RAD-seq) in population genetics studies, and our generated SNP resource could provide a valuable tool for population genomics studies of <i>B. longissima</i> in the future.https://www.mdpi.com/2075-4450/11/4/230<i>Brontispa longissima</i>restriction site-associated DNA sequencingSNPspopulation structure
collection DOAJ
language English
format Article
sources DOAJ
author Zhiming Chen
Guihua Wang
Min Li
Zhengqiang Peng
Habib Ali
Lina Xu
Geoff M. Gurr
Youming Hou
spellingShingle Zhiming Chen
Guihua Wang
Min Li
Zhengqiang Peng
Habib Ali
Lina Xu
Geoff M. Gurr
Youming Hou
Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern China
Insects
<i>Brontispa longissima</i>
restriction site-associated DNA sequencing
SNPs
population structure
author_facet Zhiming Chen
Guihua Wang
Min Li
Zhengqiang Peng
Habib Ali
Lina Xu
Geoff M. Gurr
Youming Hou
author_sort Zhiming Chen
title Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern China
title_short Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern China
title_full Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern China
title_fullStr Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern China
title_full_unstemmed Development of Single Nucleotide Polymorphism (SNP) Markers for Analysis of Population Structure and Invasion Pathway in the Coconut Leaf Beetle <i>Brontispa longissima</i> (Gestro) Using Restriction Site-Associated DNA (RAD) Genotyping in Southern China
title_sort development of single nucleotide polymorphism (snp) markers for analysis of population structure and invasion pathway in the coconut leaf beetle <i>brontispa longissima</i> (gestro) using restriction site-associated dna (rad) genotyping in southern china
publisher MDPI AG
series Insects
issn 2075-4450
publishDate 2020-04-01
description To determine population genomic structure through high-throughput sequencing techniques has revolutionized research on non-model organisms. The coconut leaf beetle, <i>Brontispa longissima</i> (Gestro), is a widely distributed pest in Southern China. Here, we used restriction site-associated DNA (RAD) genotyping to assess the invasion pathway by detecting and estimating the degree of genetic differentiation among 51 <i>B. longissima</i> accessions collected from Southern China. A total of 10,127 SNPs were obtained, the screened single nucleotide polymorphism (SNP) information was used to construct the phylogenetic tree, <i>F</i>ST analysis, principal component analysis, and population structure analysis. Genetic structure analysis was used to infer the population structure; the result showed that all accessions were divided into Hainan population and non-Hainan population. The Hainan population remained stable, only the Sansha population differentiated, and the non-Hainan populations have gradually differentiated into smaller sub-populations. We concluded that there are two sources of invasion of <i>B. longissima</i> into mainland China: Taiwan and Hainan. With the increase of the invasion time, the Hainan population was relatively stable, and the Taiwan population was differentiated into three sub-populations. Based on the unrooted phylogenetic tree, we infer that Taiwan and Hainan are the two invasive base points. The Taiwan population invaded Fujian, Guangdong, and Guangxi, while the Hainan population invaded Yunnan and Sansha. Our results provide strong evidence for the utility of RAD sequencing (RAD-seq) in population genetics studies, and our generated SNP resource could provide a valuable tool for population genomics studies of <i>B. longissima</i> in the future.
topic <i>Brontispa longissima</i>
restriction site-associated DNA sequencing
SNPs
population structure
url https://www.mdpi.com/2075-4450/11/4/230
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