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Evidence for host-associated clones of grape phylloxera Daktulosphaira vitifoliae (Hemiptera: Phylloxeridae) in Australia

Published online by Cambridge University Press:  09 March 2007

A.M. Corrie*
Affiliation:
Centre for Environmental Stress and Adaptation Research, La Trobe University, Bundoora, Victoria 3086, Australia
R. van Heeswijck
Affiliation:
Department of Horticulture, Viticulture and Oenology, University of Adelaide, PMB 1 Glen Osmond, SA 5064, Australia
A.A. Hoffmann
Affiliation:
Centre for Environmental Stress and Adaptation Research, La Trobe University, Bundoora, Victoria 3086, Australia
*
*Fax: 61 03 9479 2361, E-mail: A.Corrie@latrobe.edu.au

Abstract

Grape phylloxera, Daktulosphaira vitifoliae Fitch, is an important pest of grapevines (Vitis vinifera L.) (Vitaceae). Using microsatellite DNA markers it was demonstrated strong associations can exist between D. vitifoliae asexual lineages and vine host type within a vineyard. Also, in excised root bioassays, D. vitifoliae collected from three regions where different genotypic classes predominated showed host-specific differences in life table parameters of reproductive rate and intrinsic rate of increase. Lastly, comparisons of mitochondrial DNA (cytochrome oxidase I) sequences revealed that D. vitifoliae in Australia have paraphyletic origins and fall into two clades partially related to vine host usage. These findings indicate introduction of separate lineages of D. vitifoliae which have close host associations and as such, have important implications for management of this pest in Australia.

Type
Research Article
Copyright
Copyright © Cambridge University Press 2003

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References

Anstead, J.A., Burd, J.D. & Shufran, K.A. (2002) Mitochondrial DNA sequence divergence among Schizaphis graminum (Hemiptera: Aphididae) clones from cultivated and non-cultivated hosts: haplotype and host associations. Bulletin of Entomological Research 92, 1724.CrossRefGoogle ScholarPubMed
Birch, L.C. (1948) The intrinsic rate of natural increase of an insect population. Journal of Animal Ecology 17, 1526.CrossRefGoogle Scholar
Bournoville, R., Simon, J.-C., Badenhausser, I., Girousse, C., Guilloux, T. & André, S. (2000) Clones of pea aphid, Acyrthosiphon pisum (Hemiptera: Aphididae) distinguished using genetic markers, differ in their damaging effect on a resistant alfalfa cultivar. Bulletin of Entomological Research 90, 3339.CrossRefGoogle ScholarPubMed
Buchanan, G.A. (1990) In The distribution, biology and control of grape phylloxera, Daktulosphaira vitifolii (Fitch), in Victoria. 177 pp. PhD thesis. Melbourne: La Trobe University.Google Scholar
Corrie, A.M., Buchanan, G.A. & van Heeswijck, R. (1997) DNA typing of populations of phylloxera (Daktulosphaira vitifoliae (Fitch)) from Australian vineyards. Australian Journal of Grape and Wine Research 3, 5056.CrossRefGoogle Scholar
Corrie, A.M., Crozier, R.H., van Heeswijck, R. & Hoffmann, A.A. (2002) Clonal reproduction and population genetic structure of grape phylloxera, Daktulosphaira vitifoliae, in Australia. Heredity 88, 203211.CrossRefGoogle ScholarPubMed
De Barro, P.J., Sherratt, T.N., Brookes, C.P., David, O. & Maclean, N. (1995a) Spatial and temporal variation in British field populations of the grain aphid Sitobion avenae (F.) (Hemiptera: Aphididae) studied using RAPD–PCR. Proceedings of the Royal Society of London, Series B 262, 321327.Google ScholarPubMed
De Barro, P.J., Sherratt, T.N., David, O. & Maclean, N. (1995b) An investigation of the differential performance of clones of the aphid Sitobion avenae on two host species. Oecologia 104, 379385.CrossRefGoogle ScholarPubMed
Downie, D.A. (1999) Performance of native grape phylloxera on host plants within and among terrestrial islands in Arizona, USA. Oecologia 121, 527536.CrossRefGoogle ScholarPubMed
Downie, D.A. (2000) Patterns of genetic variation in native grape phylloxera on two sympatric host species. Molecular Ecology 9, 505514.CrossRefGoogle ScholarPubMed
Downie, D.A. (2002) Locating the sources of an invasive pest, grape phylloxera, using a mitochondrial DNA gene genealogy. Molecular Ecology 11, 20132026.CrossRefGoogle ScholarPubMed
Downie, D.A., Granett, J. & Fisher, J.R. (2000) Distribution and abundance of leaf galling grape phylloxera (Hemiptera: Phylloxeridae) and Vitis species in the central and eastern United States. Environmental Entomology 29, 979986.CrossRefGoogle Scholar
Downie, D.A., Fisher, J.R. & Granett, J. (2001) Grapes, galls and geography: the distribution of nuclear and mitochondrial DNA variation across host-plant species and regions in a specialist herbivore. Evolution 55, 13451362.Google Scholar
Fergusson-Kolmes, L.A. & Dennehy, T.J. (1993) Differences in host utilization by populations of North American grape phylloxera (Homoptera: Phylloxeridae). Journal of Economic Entomology 86, 15021511.CrossRefGoogle Scholar
Fong, G., Walker, M.A. & Granett, J. (1995) RAPD assessment of California phylloxera diversity. Molecular Ecology 4, 459464.CrossRefGoogle Scholar
Forneck, A., Walker, M.A. & Blaich, R. (2000) Genetic structure of an introduced pest, grape phylloxera (Daktulosphaira vitifoliae Fitch), in Europe. Genome 43, 669678.CrossRefGoogle ScholarPubMed
Forneck, A., Walker, M.A., Blaich, R., Yvon, M. & Leclant, F. (2001) Interaction of phylloxera (Daktulosphaira vitifoliae FITCH) with grape (Vitis spp.) in simple isolation chambers. American Journal of Enology and Viticulture 52, 2834.CrossRefGoogle Scholar
Forneck, A., Walker, M.A. & Blaich, R. (2002) Ecological and genetic apects of grape phylloxera Daktulosphaira vitifoliae (Hemiptera: Phylloxeridae) performance on rootstock hosts. Bulletin of Entomological Research 91, 445451.CrossRefGoogle Scholar
Granett, J., Timper, P. & Lider, L.A. (1985) Grape phylloxera (Daktulosphaira vitifoliae) (Homoptera: Phylloxeridae) biotypes in California. Journal of Economic Entomology 78, 14631467.CrossRefGoogle Scholar
Granett, J., Goheen, A.C., Lider, L.A. & White, J.J. (1987) Evaluation of grape rootstocks for resistance to type A and type B grape phylloxera. American Journal of Enology and Viticulture 38, 298300.CrossRefGoogle Scholar
Haack, L., Simon, J.-C., Gauthier, J.-P., Plantegenest, M. & Dedryver, C.-A. (2000) Evidence for predominant clones in a cyclically parthenogenetic organism provided by combined demographic and genetic analyses. Molecular Ecology 9, 20552066.CrossRefGoogle Scholar
Hales, D.F., Tomiuk, J., Wöhrmann, K. & Sunnucks, P. (1997) Evolutionary and genetic aspects of aphid biology: a review. European Journal of Entomology. 94, 155.Google Scholar
Hawthorne, D.J. & Via, S. (1994) Variation in performance on two grape cultivars within and among populations of grape phylloxera from wild and cultivated habitats. Entomologia Experimentalis et Applicata 70, 6376.CrossRefGoogle Scholar
Hawthorne, D.J. & Via, S. (2001) Genetic linkage of ecological specialization and reproductive isolation in pea aphids. Nature 412, 904907.CrossRefGoogle ScholarPubMed
Kellow, A.V., McDonald, G., Corrie, A.M. & Van Heeswijck, R. (2002) In vitro assessment of grapevine resistance to two populations of phylloxera from Australian vineyards. Australian Journal of Grape and Wine Research 8, 109116.CrossRefGoogle Scholar
Kim, K.C. & McPheron, B.A. (1993) Evolution of insect pests: patterns of variation. New York, John Wiley and Sons Inc.Google Scholar
Kimura, M. (1980) A simple method for estimating evolutionary rate of base substitutions through comparative studies of nucleotide sequences. Journal of Molecular Evolution 16, 111120.CrossRefGoogle ScholarPubMed
King, P.D. & Buchanan, G.A. (1986) The dispersal of phylloxera crawlers and spread of phylloxera infestations in New Zealand and Australian vineyards. American Journal of Enology and Viticulture 37, 2633.CrossRefGoogle Scholar
Kocsis, L., Granett, J., Walker, M.A., Lin, H. & Omer, A.D. (1999) Grape phylloxera populations adapted to Vitis berlandieri x V. riparia rootstocks. American Journal of Enology and Viticulture 50, 101106.CrossRefGoogle Scholar
Kumar, S., Tamura, K., Jakobsen, I.B. & Masatoshi, N. (2001) MEGA2: molecular evolutionary genetics analysis software. Bioinformatics 17, 12441245.CrossRefGoogle ScholarPubMed
Leslie, P.H. (1945) On the use of matrices in certain population mathematics. Biometrika 33, 183212.CrossRefGoogle ScholarPubMed
Lushai, G., Markovitch, O. & Loxdale, H.D. (2002) Host-based genotype variation in insects revisted. Bulletin of Entomological Research 92, 159164.CrossRefGoogle Scholar
Moore, M.O. (1991) Classification and systematics of eastern North American Vitis L. (Vitaceae) north of Mexico. Sida, Contributions to Botany 14, 339367.Google Scholar
Simon, C.F., Frati, A., Beckenbach, A., Crespi, B., Liu, H. & Flook, P. (1994) Evolution, weighting and phylogenetic utility of mitochondrial gene sequences and a compilation of conserved polymerase chain reaction primers. Annals of the Entomological Society of America 87, 651701.CrossRefGoogle Scholar
Sunnucks, P., De Barro, P.J., Lushai, G., Maclean, N. & Hales, D. (1997) Genetic structure of an aphid studied using microsatellites: cyclic parthenogenesis, differentiated lineages and host specialization. Molecular Ecology 6, 10591073.CrossRefGoogle ScholarPubMed
Thompson, J.D., Gibson, T.J., Plewniak, F., Jeanmougin, F. & Higgins, D.G. (1997) The ClustalX windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Nucleic Acids Research 24, 48764882.CrossRefGoogle Scholar
Via, S. (1999) Reproductive isolation between divergent races of pea aphid on two hosts. I. Gene flow restriction and habitat choice. Evolution 53, 14461457.CrossRefGoogle ScholarPubMed
Whiting, J.R., Buchanan, G.A. & Edwards, M.E. (1987) Assessments of rootstocks for wine grape production. pp 184190. in Proceedings of the 6th Australian Wine Industry Technical Conference. Adelaide: Australian Industrial Publishers.Google Scholar