Developmental plasticity in multimodal signals: light environment produces novel signalling phenotypes in a butterfly

Author:

Zambre Amod Mohan1ORCID,Burns Linnea1,Suresh Jayanti2,Hegeman Adrian D.2,Snell-Rood Emilie C.1ORCID

Affiliation:

1. Department of Ecology, Evolution, and Behavior, University of Minnesota, Minneapolis, MN, USA

2. Department of Horticultural Science, University of Minnesota, Minneapolis, MN, USA

Abstract

Developmental plasticity can alter the expression of sexual signals in novel environments and is therefore thought to play an important role in promoting divergence. Sexual signals, however, are often multimodal and mate choice multivariate. Hence, to understand how developmental plasticity can facilitate divergence, we must assess plasticity across signal components and its cumulative impact on signalling. Here, we examine how developmental plasticity influences different components of cabbage white butterfly Pieris rapae multimodal signals, its effects on their signalling phenotypes and its implications for divergence. To do this, we reared P. rapae caterpillars under two different light environments (low-light and high-light) to simulate conditions experienced by P. rapae colonizing a novel light habitat. We then examined plasticity in both visual (wing coloration) and olfactory (pheromone abundance) components of male sexual signals. We found light environments influenced expression of both visual and olfactory components and resulted in a trade-off between signal modalities. The ‘low-light’ phenotype had duller wing colours but higher abundance of the pheromone, indole, whereas the ‘high-light’ phenotype had comparatively brighter wings but lower abundance of indole. These results show that by simultaneously altering expression of different signal components, developmental plasticity can produce multiple signalling phenotypes, which may catalyse divergence.

Funder

Department of Ecology, Evolution, and Behavior, University of Minnesota

Luby Family Honeycrisp Endowed Chair for Fruit Crop Innovation

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,Agricultural and Biological Sciences (miscellaneous)

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