Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

The impact of life stage and pigment source on the evolution of novel warning signal traits

Producción científica: Articlerevisión exhaustiva

9 Citas (Scopus)

Resumen

Our understanding of how novel warning color traits evolve in natural populations is largely based on studies of reproductive stages and organisms with endogenously produced pigmentation. In these systems, genetic drift is often required for novel alleles to overcome strong purifying selection stemming from frequency-dependent predation and positive assortative mating. Here, we integrate data from field surveys, predation experiments, population genomics, and phenotypic correlations to explain the origin and maintenance of geographic variation in a diet-based larval pigmentation trait in the redheaded pine sawfly (Neodiprion lecontei), a pine-feeding hymenopteran. Although our experiments confirm that N. lecontei larvae are indeed aposematic—and therefore likely to experience frequency-dependent predation—our genomic data do not support a historical demographic scenario that would have facilitated the spread of an initially deleterious allele via drift. Additionally, significantly elevated differentiation at a known color locus suggests that geographic variation in larval color is currently maintained by selection. Together, these data suggest that the novel white morph likely spread via selection. However, white body color does not enhance aposematic displays, nor is it correlated with enhanced chemical defense or immune function. Instead, the derived white-bodied morph is disproportionately abundant on a pine species with a reduced carotenoid content relative to other pine hosts, suggesting that bottom-up selection via host plants may have driven divergence among populations. Overall, our results suggest that life stage and pigment source can have a substantial impact on the evolution of novel warning signals, highlighting the need to investigate diverse aposematic taxa to develop a comprehensive understanding of color variation in nature.

Idioma originalEnglish
Páginas (desde-hasta)554-572
Número de páginas19
PublicaciónEvolution
Volumen76
N.º3
DOI
EstadoPublished - mar 2022

Nota bibliográfica

Publisher Copyright:
© 2022 The Authors. Evolution © 2022 The Society for the Study of Evolution.

Financiación

We are grateful to D. Westneat (University of Kentucky) and J. Mappes (University of Jyväskylä) for offering facilities, equipment, and technical help for the avian experiments and bird maintenance; J. Kirvesoja and H. Pakkanen for the help with chemical analyses; D. Herrig for custom python scripts; V. Sousa for helpful discussion; and members of the Linnen lab for rearing and collecting sawflies (especially K. Vertacnik and A. Leonberger). This study was funded by the National Science Foundation (DBI-1062890 to the University of Kentucky site-based Research Experience for Undergraduates summer program; DEB-1257739 to CRL; DEB-CAREER-1750946 to CRL) and the Academy of Finland via Centre of Excellence in Biological Interactions and individual grants (#257581 and #336336 to CL) to CL. SC was funded by an Academy of Finland Fellowship (#314219). We are grateful to D. Westneat (University of Kentucky) and J. Mappes (University of Jyväskylä) for offering facilities, equipment, and technical help for the avian experiments and bird maintenance; J. Kirvesoja and H. Pakkanen for the help with chemical analyses; D. Herrig for custom python scripts; V. Sousa for helpful discussion; and members of the Linnen lab for rearing and collecting sawflies (especially K. Vertacnik and A. Leonberger). This study was funded by the National Science Foundation (DBI‐1062890 to the University of Kentucky site‐based Research Experience for Undergraduates summer program; DEB‐1257739 to CRL; DEB‐CAREER‐1750946 to CRL) and the Academy of Finland via Centre of Excellence in Biological Interactions and individual grants (#257581 and #336336 to CL) to CL. SC was funded by an Academy of Finland Fellowship (#314219).

FinanciadoresNúmero del financiador
University of Kentucky
Jyväskylän Yliopisto
Academy of Finland314219, 257581, 336336
National Science Foundation Arctic Social Science ProgramDBI‐1062890, DEB‐CAREER‐1750946, DEB‐1257739

    ASJC Scopus subject areas

    • Ecology, Evolution, Behavior and Systematics
    • Genetics
    • General Agricultural and Biological Sciences

    Huella

    Profundice en los temas de investigación de 'The impact of life stage and pigment source on the evolution of novel warning signal traits'. En conjunto forman una huella única.

    Citar esto