학술논문

Genome Assembly and Population Sequencing Reveal Three Populations and Signatures of Insecticide Resistance of Tuta absoluta in Latin America
Document Type
article
Source
Genome Biology and Evolution. 15(4)
Subject
Vaccine Related
Human Genome
Genetics
Prevention
Infection
Animals
Moths
Insecticide Resistance
Latin America
Sequence Analysis
DNA
Africa
Larva
invasion biology
population history
insecticide resistance
Tuta absoluta
tomato
Phthorimaea absoluta
Phthorimaea absoluta
Tuta absoluta
Biochemistry and Cell Biology
Evolutionary Biology
Developmental Biology
Language
Abstract
Tuta absoluta is one of the largest threats to tomato agriculture worldwide. Native to South America, it has rapidly spread throughout Europe, Africa, and Asia over the past two decades. To understand how T. absoluta has been so successful and to improve containment strategies, high-quality genomic resources and an understanding of population history are critical. Here, we describe a highly contiguous annotated genome assembly, as well as a genome-wide population analysis of samples collected across Latin America. The new genome assembly has an L50 of 17 with only 132 contigs. Based on hundreds of thousands of single nucleotide polymorphisms, we detect three major population clusters in Latin America with some evidence of admixture along the Andes Mountain range. Based on coalescent simulations, we find these clusters diverged from each other tens of thousands of generations ago prior to domestication of tomatoes. We further identify several genomic loci with patterns consistent with positive selection and that are related to insecticide resistance, immunity, and metabolism. This data will further future research toward genetic control strategies and inform future containment policies.