Wireworm (Coleoptera: Elateridae) genomic analysis reveals putative cryptic species, population structure, and adaptation to pest control

金针虫(鞘翅目:蝽科)基因组分析揭示了假定的隐蔽物种、种群结构和对害虫控制的适应性

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作者:Kimberly R Andrews, Alida Gerritsen, Arash Rashed, David W Crowder, Silvia I Rondon, Willem G van Herk, Robert Vernon, Kevin W Wanner, Cathy M Wilson, Daniel D New, Matthew W Fagnan, Paul A Hohenlohe, Samuel S Hunter

Abstract

The larvae of click beetles (Coleoptera: Elateridae), known as "wireworms," are agricultural pests that pose a substantial economic threat worldwide. We produced one of the first wireworm genome assemblies (Limonius californicus), and investigated population structure and phylogenetic relationships of three species (L. californicus, L. infuscatus, L. canus) across the northwest US and southwest Canada using genome-wide markers (RADseq) and genome skimming. We found two species (L. californicus and L. infuscatus) are comprised of multiple genetically distinct groups that diverged in the Pleistocene but have no known distinguishing morphological characters, and therefore could be considered cryptic species complexes. We also found within-species population structure across relatively short geographic distances. Genome scans for selection provided preliminary evidence for signatures of adaptation associated with different pesticide treatments in an agricultural field trial for L. canus. We demonstrate that genomic tools can be a strong asset in developing effective wireworm control strategies.

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