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Six cryptic species on a single species of host plant: morphometric evidence for possible reproductive character displacement
Author(s) -
MARSTELLER SARA,
ADAMS DEAN C.,
COLLYER MICHAEL L.,
CONDON MARTY
Publication year - 2009
Publication title -
ecological entomology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.865
H-Index - 81
eISSN - 1365-2311
pISSN - 0307-6946
DOI - 10.1111/j.1365-2311.2008.01047.x
Subject(s) - biology , character displacement , wing , allopatric speciation , sexual dimorphism , sympatric speciation , zoology , sexual selection , courtship display , reproductive isolation , courtship , evolutionary biology , ecology , sympatry , population , demography , sociology , engineering , aerospace engineering
1. Diversification of some highly host‐specific herbivorous insects may occur in allopatry, without shifts in host use. Such allopatric divergence may be accelerated by sexual selection operating on courtship displays. Wing size and shape may affect visual and vibrational courtship displays in tephritid fruit flies. Geometric morphometric methods were used to examine wings of six sympatric cryptic species in the neotropical genus Blepharoneura . All six species feed on flowers of the same species of host ( Gurania spinulosa ), a neotropical vine in the Cucurbitaceae. Three of the fly species court and mate in close proximity on the host. Thus, courtship behaviours could serve as important reproductive isolating mechanisms. Two sets of hypotheses were tested: (i) species differ in wing shape and wing size; and (ii) species are sexually dimorphic in wing size and wing shape. Wing size differed among a few species, but wing shape differed significantly among all six species. Sexual dimorphism in wing size was found in only one species, but sexual dimorphism in wing shape was found in two of the three species known to court on the same host plant. In the two sexually dimorphic species, wing shape differed among males, but not among females. This suggests that selection for reproductive character displacement might accelerate divergence in wing shape.

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