Variation of multiple plant defenses and herbivory reveal different patterns of adaptation across a productivity gradient.
Plants with large geographic distributions experience varying biotic and abiotic conditions across their range that can influence plant defense traits among populations. Whether populations inhabiting warmer, wetter and more productive regions face greater pressure and results in higher investment in defense compared to populations from cooler, drier, and less productive regions remains uncertain. Here we quantified defense traits and herbivory on Solanum carolinense L. across a large climate and productivity gradient. We sampled populations spanning the entire north-south range (29-44{degrees} N) of S. carolinense, (33 populations; [~]15 plants per population) and employed a common garden experiment (15 populations; [~]5 plants per population). We examined whether climate predicts 1) plant defense traits (specific leaf area, trichome density and glycoalkaloid concentration), 2) herbivore damage, and 3) the correlation of traits and herbivore damage in field and common garden plants. Trichome density and herbivore damage were higher for S. carolinense at the center of its range, while glycoalkaloid concentrations were negatively associated with warmer, wetter climates both in the field and in the common garden. In the field, plants with higher glycoalkaloid production experienced reduced herbivory, while in the common garden plants with greater SLA received more damage. Overall, these findings suggest that different types of defensive traits within a single species may follow different ecological and evolutionary trends and highlight the need for trait-specific considerations when applying plant defense hypotheses at the intraspecific level.