Olfactory signaling is the most efficient mode of animal communication when the interval between signaller and receiver is delayed. Scent-marking requires selective strategies to increase the likelihood that these signals persist in the environment and are successfully received. Bears are solitary, non-territorial carnivores, which scent-mark trees, substrate, and other objects to communicate with conspecifics. Signallers place scent-marks on trees to increase the detectability of their signals, possibly also to communicate their size and status. We assessed scent-marking tree selectivity of Andean bears, Tremarctos ornatus, in Ecuadorian cloud forests at two spatial scales: the individual-tree level and at a local scale. We recorded characteristics of marked and unmarked trees along bear trails (5.49 km in total) in the Eastern Cordillera of the Ecuadorian Andes, near the Sumaco Biosphere Reserve. To decrease dimensionality and multicollinearity before explanatory analyses, we performed Principal Component Analysis on data from 467 trees of 48 tree species. We then used Generalized Linear Models, model selection, and model averaging to discover that Andean bears preferred rubbing leaning trees, aromatic tree species, and hardwood trees with smaller and thicker leaves containing less nitrogen. Ten of 59 marking sites contained multiple marked trees, but site-level data do not indicate why bears marked multiple trees at some sites but not others. We thus encourage further analyses of marked-tree cluster sites and their relationship to productive food resources and reproduction, which might present important communication hubs for ursids.