Micro and macroevolution of sea anemone venom phenotype

Author:

Smith Edward G.ORCID,Surm Joachim M.ORCID,Macrander Jason,Simhi Adi,Amir Guy,Sachkova Maria Y.,Lewandowska Magda,Reitzel Adam M.ORCID,Moran YehuORCID

Abstract

AbstractVenom is a complex trait with substantial inter- and intraspecific variability resulting from strong selective pressures acting on the expression of many toxic proteins. However, understanding the processes underlying toxin expression dynamics that determine the venom phenotype remains unresolved. By interspecific comparisons we reveal that toxin expression in sea anemones evolves rapidly and that in each species different toxin family dictates the venom phenotype by massive gene duplication events. In-depth analysis of the sea anemone,Nematostella vectensis, revealed striking variation of the dominant toxin (Nv1) diploid copy number across populations (1-24 copies) resulting from independent expansion/contraction events, which generate distinct haplotypes.Nv1copy number correlates with expression at both the transcript and protein levels with one population having a near-complete loss of Nv1 production. Finally, we establish the dominant toxin hypothesis which incorporates observations in other venomous lineages that animals have convergently evolved a similar strategy in shaping their venom.

Funder

National Science Foundation

Hebrew University | Lady Davis Fellowship Trust, Hebrew University of Jerusalem

United States - Israel Binational Science Foundation

Incentive funding from the CIPHER Center at UNC Charlotte

Israel Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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