Natalie Boyle, Lindsie M McCabe
The native mason bee, Osmia lignaria, is widely recognized for its high pollination efficiency in early-season orchard crops, yet its expansion as a managed pollinator remains constrained by biological, operational, and environmental limitations. Although its per-visit efficacy often exceeds that of Apis mellifera, managed populations frequently show inconsistent reproductive replacement and continued reliance on wild-collected stocks. We argue that these limitations arise from three interacting constraints on scalability: (i) limited availability of regionally adapted stocks and associated biosecurity risks, (ii) intra- and intergenerational reproductive bottlenecks inherent to solitary bee life histories, and (iii) mismatches between deployment strategies and landscape stewardship contexts. By reframing these challenges as intervention points, we outline a pathway toward more resilient, regionally grounded O. lignaria management systems that complement existing pollination services while minimizing ecological risk. We identify emerging research priorities in climate-responsive emergence modeling, pathogen network dynamics, and propagation technology required to support sustainable expansion.