vix.ing · top · new · best · stats · spec

Temporal analysis of reproduction distributed in space illuminates the climate‐change resiliency of toyon ( Heteromeles arbutifolia )

2026/03/29 by Daniel Dakduk, Jeremy B. Yoder · 2 voices
Environmental Science · Agricultural and Biological Sciences · #Species Distribution and Climate Change #Avian ecology and behavior #Plant and animal studies

paper · doi:10.1002/ajb2.70182

Abstract

PREMISE: Toyon, Heteromeles arbutifolia (Rosaceae), is an iconic and ecologically important member of California chaparral and oak woodland communities. Its habitat faces changing wildfire regimes, widening variation in annual rainfall, and competition by introduced species. We used a new modeling method, temporal analysis of reproduction distributed in space (TARDIS), to examine how recent climate change alters habitat suitability for toyon. METHODS: As data for TARDIS, we annotated flowering and fruiting in images from 4105 observations of toyon contributed to the iNaturalist crowdsourcing platform. From these records, we trained Bayesian additive regression tree models relating weather to toyon flowering. We used a trained model to hindcast flowering each year back to 1900, and examined trends in the hindcast flowering. For comparison, we also modeled changing habitat suitability using a conventional species distribution model (SDM) relating toyon presence to 30-year climate averages. RESULTS: Toyon flowering was associated with greater winter precipitation and warmer fall and winter temperatures. Our hindcast showed that mean flowering intensity has been stable to slightly increasing since 1900, with greater increases at higher elevations, but also at lower latitudes. Variation in flowering intensity also increased, especially at lower latitudes. Trends in flowering were positively correlated with changes in SDM-predicted suitability. CONCLUSIONS: TARDIS recovers biologically realistic predictors of toyon flowering, and hindcast changes in flowering intensity indicate the species' range remains suitable after 125 years of changing climate. Overall, our results indicate toyon populations remain healthy, but may have limited opportunity to migrate northward as climate change continues.

Discussions

Related