The adaptive significance of large size at birth in marine snakes

Author:

Shine Richard1ORCID,Meiri Shai23,Shine Terri G.1,Brown Gregory P.1ORCID,Goiran Claire4ORCID

Affiliation:

1. School of Natural Sciences, Macquarie University, New South Wales 2109, Australia

2. School of Zoology, Tel-Aviv University, 6997801 Tel Aviv, Israel

3. The Steinhardt Museum of Natural History, Tel-Aviv University, 6997801 Tel Aviv, Israel

4. LabEx Corail & ISEA, Université de la Nouvelle-Calédonie, BP R4, 98851 Nouméa cedex, New Caledonia

Abstract

Evolutionary shifts from one habitat type to another can clarify selective forces that affect life-history attributes. Four lineages of snakes (acrochordids and three clades within the Elapidae) have invaded marine habitats, and all have larger offspring than do terrestrial snakes. Predation by fishes on small neonates offers a plausible selective mechanism for that shift, because ascending to breathe at the ocean surface exposes a marine snake to midwater predation whereas juvenile snakes in terrestrial habitats can remain hidden. Consistent with this hypothesis, snake-shaped models moving through a coral-reef habitat in New Caledonia attracted high rates of attack by predatory fishes, and small models (the size of neonatal terrestrial snakes) were attacked more frequently than were large models (the size of neonatal sea snakes). Vulnerability to predatory fishes may have imposed strong selection for increased offspring size in marine snakes.

Publisher

The Royal Society

Subject

Multidisciplinary

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