Yıl: 2021 Cilt: 23 Sayı: 1 Sayfa Aralığı: 1 - 10 Metin Dili: İngilizce DOI: 10.51963/jers.v23i1.1846 İndeks Tarihi: 20-05-2022

Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts

Öz:
Phytophagous insects may become serious pests of crops when introduced into a new place. Betternutritional quality and lower toxicity of new host plants and escape from natural enemies can enhancesurvival. The chrysanthemum lace bug, Corythucha marmorata (Hemiptera: Tingidae), is native to NorthAmerica, where it exploits mainly goldenrod and its relatives (Asteraceae). It was accidentally introducedinto Japan by about 2000. Since then, many reports of injury to sweet potato (Convolvulaceae) andeggplant (Solanaceae) by this species have been published. Here, we tested larval performance ongoldenrod, sweet potato, eggplant, and three other known or potential host plants to investigate whythe lace bug began to exploit the new host plants. Survival to adult stage was nil on eggplant, extremelylow on blue daze (Convolvulaceae) and crown daisy (Asteraceae), moderate on sweet potato, and ca.80% on goldenrod and sunflower. Developmental time was shorter and adults grew larger on goldenrodand sunflower than on the other plants. These results show that plant nutritional or toxicological qualitiesare not major factors that facilitate host range expansion of C. marmorata in Japan. Possible factors arediscussed.
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  • Aichi Prefecture (2005). Corythucha marmorata. Special Notice, No. 4. (In Japanese)
  • Angiosperm Phylogeny Group (2009). An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants: APG III. Botanical Journal of the Linnean Society, 161, 105-121.
  • Balsdon, J.A., Espelie, K.E., & Braman, S.K. (1995). Epicuticular lipids from azalea (Rhododendron spp.) and their potential role in host plant acceptance by azalea lace bug, Stephanitis pyrioides (Heteroptera: Tingidae). Biochemical Systematics and Ecology, 23, 477-485.
  • Basavaraju, B.S., Chakravarthy, A.K., Doddabasappa, B., Nagachaitanya, B., & Yathish, K.R. (2010). Threats to natural resources by insect invasives. Karnataka Journal of Agricultural Sciences, 23, 1-5.
  • Bernays, E. & Chapman, R. (1994). Host-plant selection by phytophagous insects. Chapman & Hall, New York.
  • Bernays, E. & Graham, M. (1988). On the evolution of host specificity in phytophagous arthropods. Ecology, 69, 886-892.
  • Bowers, M.D., Stamp, N.E., & Collinge, S.K. (1992). Early stage of host range expansion by a specialist herbivore, Euphydryas phaeton (Nymphalidae). Ecology, 73, 526-536.
  • Cappuccino, N. (2000). Oviposition behavior of insects used in the biological control of weeds. Proceedings of X International Symposium of Biological Control of Weeds, 521-531.
  • Chiba Prefecture Agriculture and Forestry Research Center (2011). Occurrence of Corythucha marmorata. Special Notice no. 7. (In Japanese)
  • Dai, H., Lu, X., Zhang, J., & Ding, J. (2014). Responses of a native beetle to novel exotic plant species with varying invasion history. Ecological Entomology, 39, 118-124.
  • Davis, S.L. & Cipollini, D. (2014). Do mothers always know best? Oviposition mistakes and resulting larval failure of Pieris virginiensis on Alliaria petiolata, a novel, toxic host. Biological Invasions, 16, 1941-1950.
  • Ehrlich, P.R. & Raven, P.H. (1964). Butterflies and plants: a study in coevolution. Evolution, 18, 586-608.
  • Fontes, E.M.G., Habeck, D.H., & Slansky Jr., F. (1994). Phytophagous insects associated with goldenrods (Solidago spp.) in Gainesville, Florida. Florida Entomologist, 77, 209-221.
  • Fox, C.W. & Caldwell, R.L. (1994). Host-associated fitness trade-offs do not limit the evolution of diet breadth in the small milkweed bug Lygaeus kalmii (Hemiptera: Lygaeidae). Oecologia, 97, 382-389.
  • Fukano, Y. & Doi, H. (2013). Population abundance and host use pattern of Ophraella communa (Coleoptera: Chrysomelidae) in its native and introduced range. Biocontrol Science and Technology, 23, 595-601.
  • Futuyma, D.J. & Agrawal, A.A. (2009). Macroevolution and the biological diversity of plants and herbivores. Proceedings of the National Academy of Sciences USA, 106, 18054-18061.
  • Gandhi, K.J. & Herms, D.A. (2010). Direct and indirect effects of alien insect herbivores on ecological processes and interactions in forests of eastern North America. Biological Invasions, 12, 389-405.
  • Gifu Plant Protection Center (2005). Corythucha marmorata. Special Notice, No. 1. (In Japanese)
  • Gratton, C. & Welter, S.C. (1998). Oviposition preference and larval performance of Liriomyza helianthi (Diptera: Agromyzidae) on normal and novel host plants. Environmental Entomology, 27, 926-935.
  • Hoshino, S. (2011). Geographical distribution of Corythucha marmorata in Hiroshima prefecture. Shokubutu Boeki (Plant Protection) , 65, 635-639. (In Japanese)
  • Howarth, F.G. (1991). Environmental impacts of classical biological control. Annual Review of Entomology, 36, 485-509.
  • Ishihara, R. & Kawai, S. (1981). Feeding habits of the azalea lace bug, Stephanotis pyrioides Scott (Hemiptera: Tingidae). Japanese Journal of Applied Entomology and Zoology, 25, 200-202. (In Japanese.)
  • Kagawa Plant Protection Office (2005). Corythucha marmorata. Special Notice, No. 1. (In Japanese.)
  • Kato, A. & Ohbayashi, N. (2009). Habitat expansion of an exotic lace bug, Corythucha marmorata (Uhler) (Hemiptera: Tingidae), on the Kii Peninsula and Shikoku Island in western Japan. Entomological Science, 12, 130-134.
  • Keeler, M.S. & Chew, F.S. (2008). Escaping an evolutionary trap: preference and performance of a native insect on an exotic invasive host. Oecologia, 156, 559-568.
  • Kochi Prefecture Crop Pest Control Center (2005). Corythucha marmorata. Special Notice, No. 2. (In Japanese)
  • Kohyama, T.I., Matsumoto, K., & Katakura, H. (2012). Geographic variation of host use in the leaf beetle Agelasa nigriceps suggests host range expansion. Entomologia Experimentalis et Applicata, 142, 165-174.
  • Leclaire, M. & Brandl, R. (1994). Phenotypic plasticity and nutrition in a phytophagous insect: consequences of colonizing a new host. Oecologia, 100, 379-385.
  • Louda, S.M., Kendall, D., Connor, J., & Simberloff, D. (1997). Ecological effects of an insect introduced for the biological control of weeds. Science, 277, 1088-1090.
  • Mandel, J.R., Dikow, R.B., Siniscalchi, C.M., Thapa, R., Watson, L.E., & Funk, V.A. (2019). A fully resolved backbone phylogeny reveals numerous dispersals and explosive diversifications throughout the history of Asteraceae. Proceedings of the National Academy of Sciences USA, 116, 14083-14088.
  • Miyatake, Y. (2005). Present circumstances of the alien species of Hemiptera in Japan. Kontyu to Shizen, 40(12), 4-6. (In Japanese).
  • Nakagawa, K. & Enomoto, K. (1975). The distribution of tall goldenrod (Solidago altissima L.) in Japan. Nogaku Kenkyu, 55, 67-78. (In Japanese)
  • Nara Plant Protection Center (2005). Corythucha marmorata. Special Notice, No. 1. (In Japanese)
  • Newman, R.M., Borman, M.E., & Castro, S.W. (1997). Developmental performance of the weevil Euhrychiopsis lecontei on native and exotic watermilfoil host plants. Journal of North American Benthological Society, 16, 627-634.
  • Okayama Plant Protection Center (2005). Corythucha marmorata. Special Notice, No. 2. (In Japanese)
  • Pemberton, R.W. (2000). Predictable risk to native plants in weed biological control. Oecologia, 125, 489-494.
  • R Core Team (2018). R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. URL http://www.R-project.org/.
  • Root, R.B. (1996). Herbivore pressure on goldenrods (Solidago altissima): its variation and cumulative effects. Ecology, 77, 1074-1087.
  • Schoonhoven, L.M., Van Loon, J.J., & Dicke, M. (2005). Insect-Plant Biology. Oxford University Press on Demand.
  • Shiga Pest Control Center. (2005): Corythucha marmorata. Special Notice, No. 1. (In Japanese)
  • Sydnor, T.D., Bumgardner, M., & Todd, A. (2007). The potential economic impacts of emerald ash borer (Agrilus planipennis) on Ohio, U.S, communities. Arboriculture & Urban Forestry, 33, 48-54.
  • Thompson, J.N. (1988a). Evolutionary ecology of the relationship between oviposition preference and performance of offspring in phytophagous insects. Entomologia Experimentalis et Applicata, 47, 3-14.
  • Thompson, J.N. (1988b). Variation in preference and specificity in monophagous and oligophagous swallowtail butterflies. Evolution, 42, 118-128.
  • Thompson, J.N. & Pellmyr, O. (1991). Evolution of oviposition behavior and host preference in Lepidoptera. Annual Review of Entomology 36, 65-89.
  • Tomokuni, M. (2002). The lace bug that comes over sea. National Science Museum News 399: 7. (in Japanese).
  • Tuda, M., Wu, L.H., Tateishi, Y., Niyomdham, C., Buranapanichpan, S., Morimoto, K., Wu, W.J., Wang, C.P., Chen, Z.Q., Zhu, H.Y., Zhang, Y.C., Murugan, K., Chou, L. Y., Johnson, C.D., & Zhang, Y.C. (2009). A novel host shift and invaded range of a seed predator, Acanthoscelides macrophthalmus (Coleoptera: Chrysomelidae: Bruchinae), of an invasive weed, Leucaena leucocephala. Entomological Science, 12, 1-8.
  • Tuda, M., Wu, L.H., Yamada, N., Wang, C.P., Wu, W.J., Buranapanichpan, S., Kagoshima, K., Chen, Z.Q., Teramoto, K.K., Kumashiro, B.R., & Heu, R. (2014). Host shift capability of a specialist seed predator of an invasive plant: roles of competition, population genetics and plant chemistry. Biological Invasions, 16, 303-313.
  • Wheeler Jr., A.G. (1987). Hedge bindweed, Calystegia sepium (Convolvulaceae), an adventitious host of the chrysanthemum lace bug, Corythucha marmorata (Heteroptera: Tingidae). Proceedings of the Entomological Society of Washington, 89, 200.
APA Hasegawa S, Tsukada M (2021). Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. , 1 - 10. 10.51963/jers.v23i1.1846
Chicago Hasegawa Satoshi,Tsukada Morio Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. (2021): 1 - 10. 10.51963/jers.v23i1.1846
MLA Hasegawa Satoshi,Tsukada Morio Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. , 2021, ss.1 - 10. 10.51963/jers.v23i1.1846
AMA Hasegawa S,Tsukada M Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. . 2021; 1 - 10. 10.51963/jers.v23i1.1846
Vancouver Hasegawa S,Tsukada M Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. . 2021; 1 - 10. 10.51963/jers.v23i1.1846
IEEE Hasegawa S,Tsukada M "Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts." , ss.1 - 10, 2021. 10.51963/jers.v23i1.1846
ISNAD Hasegawa, Satoshi - Tsukada, Morio. "Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts". (2021), 1-10. https://doi.org/10.51963/jers.v23i1.1846
APA Hasegawa S, Tsukada M (2021). Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. Journal of the Entomological Research Society, 23(1), 1 - 10. 10.51963/jers.v23i1.1846
Chicago Hasegawa Satoshi,Tsukada Morio Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. Journal of the Entomological Research Society 23, no.1 (2021): 1 - 10. 10.51963/jers.v23i1.1846
MLA Hasegawa Satoshi,Tsukada Morio Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. Journal of the Entomological Research Society, vol.23, no.1, 2021, ss.1 - 10. 10.51963/jers.v23i1.1846
AMA Hasegawa S,Tsukada M Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. Journal of the Entomological Research Society. 2021; 23(1): 1 - 10. 10.51963/jers.v23i1.1846
Vancouver Hasegawa S,Tsukada M Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts. Journal of the Entomological Research Society. 2021; 23(1): 1 - 10. 10.51963/jers.v23i1.1846
IEEE Hasegawa S,Tsukada M "Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts." Journal of the Entomological Research Society, 23, ss.1 - 10, 2021. 10.51963/jers.v23i1.1846
ISNAD Hasegawa, Satoshi - Tsukada, Morio. "Host Range Expansion by the Invasive HerbivoreCorythucha marmorata (Uhler, 1878) is not Causedby Better Quality of New Hosts". Journal of the Entomological Research Society 23/1 (2021), 1-10. https://doi.org/10.51963/jers.v23i1.1846