Is there hybridization between 2 species of the same genus in sympatry?—The genetic relationships between Anoplophora glabripennis, Anoplophora chinensis, and putative hybrids

Author:

Qin Haiwen1ORCID,Xu Huachao2,Capron Arnaud3,Porth Ilga4,Cui Mingming4,Keena Melody A.5,Deng Xiaofang6,Shi Juan1,Hamelin Richard C.3

Affiliation:

1. Sino‐French Joint Laboratory for Invasive Forest Pests in Eurasia, Department of Forest Beijing Forestry University Beijing China

2. College of Forestry and Biotechnology Zhejiang A&F University Hangzhou China

3. Department of Forest and Conservation Sciences The University of British Columbia Vancouver Canada

4. Department of Wood and Forest Sciences Laval University Quebec Canada

5. Department of Agriculture Northern Research Station, USDA Forest Service Hamden Connecticut USA

6. Changchun Landscape Plant Conservation Station, Bureau of Forestry and Landscaping of Changchun Changchun China

Abstract

AbstractAnoplophora glabripennis (Asian longhorn beetle, ALB) and Anoplophora chinensis (Citrus longhorn beetle, CLB) are native forest pests in China; they have become important international quarantine pests. They are found using the same Salix aureo‐pendula host tree of Cixi, Zhejiang province, China. On this host tree, we collected additional beetles that appeared to be morphologically intermediate between ALB and CLB. By using a stereoscope, we observed that there were several bumps on the base of the elytra, which was inconsistent with ALB, which typically has a smooth elytral base, but was more like CLB, which has numerous short tubercles on the elytral base. Given their sympatry and intermediate morphology, we hypothesized that these may represent ALB × CLB hybrids. We studied the genomic profiles for 46 samples (ALB, CLB, and putative hybrids) using genotyping‐by‐sequencing (GBS) providing a reduced representation of the entire genome. Employing principal component analyses on the 163 GBS‐derived single nucleotide polymorphism data, we found putative hybrids tightly clustered with ALB, but genetically distinct from the CLB individuals. Therefore, our initial hybrid hypothesis was not supported by genomic data. Further, while mating experiments between adult ALB and CLB were successful in 4 separate years (2017, 2018, 2020, and 2021), and oviposition behavior was observed, no progeny was produced. Having employed population genomic analysis and biological hybridization experiments, we conclude that the putative hybrids represent newly discovered morphological variants within ALB. Our approach further confirmed the advantage of genome‐wide information for Anoplophora species assignment in certain ambiguous classification cases.

Funder

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Publisher

Wiley

Subject

Insect Science,General Biochemistry, Genetics and Molecular Biology,Agronomy and Crop Science,Ecology, Evolution, Behavior and Systematics

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