Evidence for Reductions in Physical and Chemical Plant Defense Traits in Island Flora

Author:

Freedman Micah G.12,Long Randall W.3ORCID,Ramírez Santiago R.12ORCID,Strauss Sharon Y.12

Affiliation:

1. Center for Population Biology, University of California, Davis, CA 95616, USA

2. Department of Evolution and Ecology, University of California, Davis, CA 95616, USA

3. Department of Biology, Lewis & Clark College, Portland, OR 97219, USA

Abstract

Reduced defense against large herbivores has been suggested to be part of the “island syndrome” in plants. However, empirical evidence for this pattern is mixed. In this paper, we present two studies that compare putative physical and chemical defense traits from plants on the California Channel Islands and nearby mainland based on sampling of both field and common garden plants. In the first study, we focus on five pairs of woody shrubs from three island and three mainland locations and find evidence for increased leaf area, decreased marginal leaf spines, and decreased concentrations of cyanogenic glycosides in island plants. We observed similar increases in leaf area and decreases in defense traits when comparing island and mainland genotypes grown together in botanic gardens, suggesting that trait differences are not solely driven by abiotic differences between island and mainland sites. In the second study, we conducted a common garden experiment with a perennial herb—Stachys bullata (Lamiaceae)—collected from two island and four mainland locations. Compared to their mainland relatives, island genotypes show highly reduced glandular trichomes and a nearly 100-fold reduction in mono- and sesquiterpene compounds from leaf surfaces. Island genotypes also had significantly higher specific leaf area, somewhat lower rates of gas exchange, and greater aboveground biomass than mainland genotypes across two years of study, potentially reflecting a broader shift in growth habit. Together, our results provide evidence for reduced expression of putative defense traits in island plants, though these results may reflect adaptation to both biotic (i.e., the historical absence of large herbivores) and climatic conditions on islands.

Funder

NSF Graduate Research Fellowship

UC Davis Center for Population Biology

UCNRS Mildred E. Mathias Award

David and Lucile Packard Foundation

Publisher

MDPI AG

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