4.6 Article

Development and verification of SNP arrays to monitor hybridization between two host-associated strains of knotweed psyllid, Aphalara itadori

Journal

BIOLOGICAL CONTROL
Volume 93, Issue -, Pages 49-55

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.biocontrol.2015.11.007

Keywords

Strains; Biological control; Japanese knotweed; Giant knotweed; Bohemian knotweed; Fallopia spp.

Funding

  1. United States Department of Agriculture (USDA) Forest Service [13-CA-11420004-049, 10-CA-11420004-255]
  2. Washington State Department of Agriculture grant [K1227]
  3. Agriculture and AgriFoods Canada research grant [1713, 1213]
  4. Robert van den Bosch Memorial Fellowship

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Three species of invasive knotweeds (Fallopia japonica, Fallopia sachalinensis, and Fallopia x bohemica) cause extensive damage to riparian and roadside habitats in North America. Currently, two strains of the psyllid Aphalara itadori are being evaluated for introduction into the United States and Canada for the biological control of these knotweeds following the introduction of A. itadori into the United Kingdom. If approved and released, hybridization between individuals from these two strains is likely and understanding whether barriers to hybridization exist could have an important impact on the sustainability of this biological control program. Here we developed two single nucleotide polymorphism (SNP) arrays and examined their utility for identifying individuals of known pure strains (Hokkaido and Kyushu) and hybrid origins. Using an array of 141 SNPs we correctly identified all individuals to pure and hybrid classes, whereas using a smaller array of 29 SNPs we were able to correctly identify pure line individuals, but not hybrids. (C) 2015 Elsevier Inc. All rights reserved.

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