An Experimental Test of Trade-Offs Associated with the Adaptation to Alternate Host Plants in the Introduced Herbivorous Beetle, Ophraella communa

被引:0
作者
Yuya Fukano
Satoshi Nakayama
机构
[1] The University of Tokyo,Graduate School of Agricultural and Life Sciences
[2] Fuji Flavor Co.,undefined
[3] Ltd.,undefined
来源
Journal of Insect Behavior | 2018年 / 31卷
关键词
Host shift; ecological specialization;
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中图分类号
学科分类号
摘要
The adaptation to alternate host plants of introduced herbivorous insects can be vital to agriculture due to the emergence of crop pests. Historically, it is assumed that there are trade-offs associated with the adaptation to new host plants; a generalist genotype that adapts to an alternate host is expected to have a relatively lower fitness on the ancestral host than a specialist genotype (physiological cost) or a relatively lower host-searching ability for the ancestral host plant (behavioral cost). In this study, we tested the costs of adaptation to a new host plant in the introduced herbivorous insect, Ophraella communa LeSage (Coleoptera: Chrysomelidae). In its native range (United States), O. communa feeds mostly on Ambrosia artemisiifolia L. (Asterales: Asteraceae) and cannot utilize the related species, Ambrosia trifida L. (Asterales: Asteraceae), as a host plant. On the other hand, the introduced O. communa population in Japan utilizes A. trifida extensively, and is adapting to it, both physiologically and behaviorally. We compared larval performance on the ancestral and alternate plants and adult host-searching ability between the native and introduced beetle populations. The introduced O. communa showed higher larval survival and adult feeding preference for the alternate host plant A. trifida than did the native O. communa, indicating that the introduced O. communa has rapidly adapted to the alternate host plant. However, there are no differences in either larval performance on the ancestral host A. artemisiifolia or host-searching accuracy between the native and introduced O. communa.
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页码:490 / 502
页数:12
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共 144 条
[1]  
Agosta S(2006)On ecological fitting, plant–insect associations, herbivore host shifts, and host plant selection Oikos 114 556-565
[2]  
Bernays E(2001)Neural limitations in phytophagous insects: implications for diet breadth and evolution of host affiliation Annu Rev Entomol 46 703-727
[3]  
Bernays E(1999)Specialists make faster decisions than generalists: experiments with aphids Proc R Soc B 266 151-156
[4]  
Funk D(1995)Evolution of increased competitive ability in invasive nonindigenous plants: a hypothesis J Ecol 83 887-889
[5]  
Blossey B(2014)Spread of the ragweed leaf beetle, Boll della Soc Entomol Ital 146 17-30
[6]  
Nötzold R(2011) LeSage, 1986 (Coleoptera Chrysomelidae), in piedmont region (northwestern Italy) Phytochem Rev 10 99-106
[7]  
Bosio G(2006)A review of the phytochemical support for the shifting defence hypothesis Proc R Soc B 273 843-848
[8]  
Massobrio V(2009)Individual advantages to ecological specialization: insights on cognitive constraints from three conspecific taxa Proc Natl Acad Sci U S A 106 1853-1856
[9]  
Chersi C(2012)Evolutionary tradeoffs for nitrogen allocation to photosynthesis versus cell walls in an invasive plant Ecology 93 981-991
[10]  
Doorduin LJ(1990)Revisiting the evolution of ecological specialization, with emphasis on insect-plant interactions Am Nat 136 569-580