Phenotypic Plasticity of the Mimetic Swallowtail Butterfly Papilio polytes: Color Pattern Modifications and Their Implications in Mimicry Evolution

Author:

Shimajiri Tomoyuki,Otaki Joji M.ORCID

Abstract

Butterfly wing color patterns are sensitive to environmental stress, such as temperature shock, and this phenotypic plasticity plays an important role in color pattern evolution. However, the potential contributions of phenotypic plasticity to mimicry evolution have not been evaluated. Here, we focused on the swallowtail butterfly Papilio polytes, which has nonmimetic and mimetic forms in females, to examine its plastic phenotypes. In the nonmimetic form, medial white spots and submarginal reddish spots in the ventral hindwings were enlarged by cold shock but were mostly reduced in size by heat shock. These temperature-shock-induced color pattern modifications were partly similar to mimetic color patterns, and nonmimetic females were more sensitive than males and mimetic females. Unexpectedly, injection of tungstate, a known modification inducer in nymphalid and lycaenid butterflies, did not induce any modification, but fluorescent brightener 28, another inducer discovered recently, induced unique modifications. These results suggest that phenotypic plasticity in nonmimetic females might have provided a basis of natural selection for mimetic color patterns during evolution.

Funder

University of the Ryukyus

Publisher

MDPI AG

Subject

Insect Science

Reference76 articles.

1. CANALIZATION OF DEVELOPMENT AND THE INHERITANCE OF ACQUIRED CHARACTERS

2. Developmental Plasticity and Evolution;West-Eberhard,2003

3. Developmental perspectives on phenotypic variation, canalization, and fluctuating asymmetry;Nijhout,2003

4. Phenotypic plasticity and evolution by genetic assimilation

5. Ecological Developmental Biology: Integrating Epigenetics, Medicine, and Evolution;Gilbert,2009

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