A novel diagnostic gene region for distinguishing between two pest fruit flies: Bactrocera tryoni (Froggatt) and Bactrocera neohumeralis (Hardy) (Diptera: Tephritidae)

Author:

Starkie Melissa L.1ORCID,Fowler Elizabeth V.1,Piper Alexander M.2,Zhu Xiaocheng3,Wyatt Pauline1,Gopurenko David3,Krosch Matt N.4,Strutt Francesca1,Armstrong Karen F.56,Patrick Hamish5,Schutze Mark K.1,Blacket Mark J.2

Affiliation:

1. Department of Agriculture and Fisheries Biosecurity Brisbane Queensland Australia

2. Agriculture Victoria, AgriBio Bundoora Victoria Australia

3. Department of Primary Industries Wagga Wagga Agricultural Institute Wagga Wagga New South Wales Australia

4. Forensic Services Group, Queensland Police Service Brisbane Queensland Australia

5. Department of Pest‐management and Conservation Lincoln University Lincoln New Zealand

6. Better Border Biosecurity (B3, B3nz.org.nz) Lincoln New Zealand

Abstract

AbstractBactrocera tryoni and Bactrocera neohumeralis are morphologically similar sibling pest fruit fly species that possess different biological attributes, geographic distributions, and host ranges. The need to differentiate between the two species is critical for accurate pest status assessment, management, biosecurity, and maintenance of reference colonies. While morphologically similar, adults may be separated based on subtle characters; however, some characters exhibit intraspecific variability, creating overlap between the two species. Additionally, there is currently no single molecular marker or rapid diagnostic assay that can reliably distinguish between B. neohumeralis and B. tryoni; therefore, ambiguous samples remain undiagnosed. Here we report the first molecular marker that can consistently distinguish between B. tryoni and B. neohumeralis. Our diagnostic region consists of two adjacent single nucleotide polymorphisms (SNPs) within the pangolin (pan) gene region. We confirmed the genotypes of each species are consistent across their distributional range, then developed a tetra‐primer amplification refractory mutation system (ARMS) PCR assay for rapid diagnosis of the species. The assay utilizes four primers in multiplex, with two outer universal primers, and two internal primers: one designed to target two adjacent SNPs (AA) present in B. tryoni and the other targeting adjacent SNPs present in B. neohumeralis (GG). The assay accurately discriminates between the two species, but their SNP genotypes are shared with other nontarget tephritid fruit fly species. Therefore, this assay is most suited to adult diagnostics where species confirmation is necessary in determining ambiguous surveillance trap catches; maintaining pure colony lines; and in Sterile Insect Technique management responses.

Funder

Tertiary Education Commission

Department of Agriculture, Fisheries and Forestry, Australian Government

Publisher

Wiley

Subject

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

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