Author:
Agarwal Arati,Cunningham J. Paul,Valenzuela Isabel,Blacket Mark J.
Abstract
AbstractGrape phylloxera (Daktulosphaira vitifoliae) is a destructive insect pest of grapevines that is highly invasive worldwide, despite strict biosecurity containment measures in place at farm and regional levels. Current phylloxera identification by visual inspection and laboratory-based molecular methods is time-consuming and costly. More rapid and cost-effective methods for identification of this pest would benefit industry, growers, and biosecurity services. Loop mediated isothermal amplification (LAMP) is a new portable technology available for rapid and accurate in-field molecular diagnostics. This study outlines the development of a new LAMP assay to enable the identification of phylloxera specimens. New LAMP primers were developed to specifically amplify phylloxera mitochondrial DNA (5′-COI), which we have shown is effective as a DNA barcode for identification of phylloxera, using LAMP technology. Positive LAMP reactions, containing phylloxera DNA, amplified in less than twelve minutes with an anneal derivative temperature of approximately 79 °C to 80 °C compared to a newly designed synthetic DNA (gBlock) fragment which had an anneal derivative temperature of 82 °C. No LAMP amplification was detected in any of the non-target species tested, i.e. no false-positive identification resulted for these species. We also successfully optimised a non-destructive DNA extraction procedure, HotSHOT “HS6”, for use in the field on phylloxera adults, nymphs and eggs, to retain physical specimens. DNA extracted using this method was also suitable for species and genotype molecular identification methods, such as DNA barcoding, qPCR and microsatellite genotyping. The new LAMP assay provides a novel visual molecular tool for accurate diagnostics of phylloxera in the laboratory and field.
Publisher
Springer Science and Business Media LLC
Reference23 articles.
1. Granett, J., Walker, M. A., Kocsis, L. & Omer, A. D. Biology and management of grape phylloxera. Annu. Rev. Entomol. 46, 387–412 (2001).
2. Powell, K. S., Cooper, P. D. & Forneck, A. The biology, physiology and host-plant interactions of grape phylloxera Daktulosphaira vitifoliae. In Advances in Insect Physiology (eds Johnson, S. N. et al.) 159–218 (Elsevier, Amsterdam, 2013).
3. Jackson, R.S. Wine Science, Principles and Applications (4th Ed.) Chapter 4. Vineyard Practice 143–306 (2014).
4. Tello, J. & Forneck, A. Use of DNA markers for grape phylloxera population and evolutionary genetics: From RAPDs to SSRs and beyond. Insects 10, 1–21 (2019).
5. Corrie, A. M., Crozier, R. H., van Heeswijck, R. & Hoffmann, A. A. Clonal reproduction and population genetic structure of grape phylloxera, Daktulosphaira vitifoliae, Australia. Heredity 88, 203–211 (2002).
Cited by
17 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献