Reference genome for the Mojave poppy bee (Perdita meconis), a specialist pollinator of conservation concern

Author:

Schweizer Rena M12ORCID,Meidt Colleen G13,Benavides Ligia R1,Wilson Joseph S4,Griswold Terry L1,Sim Sheina B5ORCID,Geib Scott M5,Branstetter Michael G1ORCID

Affiliation:

1. U.S. Department of Agriculture, Agricultural Research Service (USDA-ARS), Pollinating Insects Research Unit , Utah State University, Logan, UT 84322, USA

2. Division of Biological Sciences, University of Montana, Missoula , MT, USA

3. Department of Biology, Utah State University, Logan , UT, USA

4. Department of Biology, Utah State University - Tooele, Tooele , UT, USA

5. U.S. Department of Agriculture, Agricultural Research Service, U.S. Pacific Basin Agricultural Research Center , Tropical Pest Genetics and Molecular Biology Research Unit, Hilo, HI 96720, USA

Abstract

Abstract The Mojave poppy bee, Perdita meconis Griswold (Hymenoptera: Anthophila: Andrenidae), is a species of conservation concern that is restricted to the eastern Mojave Desert of North America. It is a specialist pollinator of two poppy genera, Arctomecon and Argemone (Papaveraceae), and is being considered for listing under the US Endangered Species Act along with one of its pollinator hosts, the Las Vegas bearpoppy (Arctomecon californica). Here, we present a near chromosome-level genome of the Mojave poppy bee to provide a genomic resource that will aid conservation efforts and future research. We isolated DNA from a single, small (<7 mm), male specimen collected using non-ideal preservation methods then performed whole-genome sequencing using PacBio HiFi technology. After quality and contaminant filtering, the final draft genome assembly is 327 Mb, with an N50 length of 17.5 Mb. Annotated repetitive elements compose 37.3% of the genome, although a large proportion (24.87%) of those are unclassified repeats. Additionally, we annotated 18,245 protein-coding genes and 19,433 transcripts. This genome represents one of only a few genomes from the large bee family Andrenidae and one of only a few genomes for pollinator specialists. We highlight both the potential of this genome as a resource for future research, and how high-quality genomes generated from small, non-ideal (in terms of preservation) specimens could facilitate biodiversity genomics.

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,Biotechnology

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