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Global patterns in community‐scale leaf mass per area distributions of extant woody non‐monocot angiosperms and their utility in the fossil record


Abstract Premise Leaf mass per area (LMA) links leaf economic strategies, community assembly, and climate and can be reconstructed from woody non‐monocot angiosperm (WNMA) fossils using the petiole metric (PM; petiole width 2 /leaf area). Reliable interpretation of LMA reconstructed from the fossil record is limited by an incomplete understanding of how PM and LMA are correlated at the community scale and what climatic parameters drive variation of both measured and reconstructed LMA of WNMAs globally. Methods A modern, global, community‐scale data set of in situ WNMA LMA and PM was compiled to test leading hypotheses for environmental drivers of LMA and quantify LMA‐PM relationships. Correlations among PM, LMA, climate (Köppen types and continuous data), and leaf habit were assessed and quantified using several uni‐ and multivariate methods. Results Community mean LMA increased under warmer and less seasonal temperatures. Drought‐prone communities had the highest LMA variance, likely due to disparity between riparian and non‐riparian microhabitats. PM and LMA were correlated for community mean and variance, and their correlations with climate were similar. These patterns indicate that climatic correlatives of modern LMA can inform relative trends in reconstructed fossil LMA. In contrast, matching “absolute” LMA distributions between fossil and modern sites does not allow reliable inference of analogous climate types. Conclusions This study furthers our understanding of processes influencing the assembly of WNMA leaf economic strategies in plant communities, highlighting the importance of temperature seasonality and habitat heterogeneity. We also provide a method to reconstruct, and refine the framework to interpret, community‐scale LMA in the fossil record.
Authors A. Lowe ORCID , Dana L. Royer ORCID , Daniel J. Wieczynski ORCID , Matthew J. Butrim University of WyomingORCID , Tammo Reichgelt ORCID , Lauren Azevedo‐Schmidt ORCID , Daniel J. Peppe ORCID , Brian J. Enquist ORCID , Andrew J. Kerkoff , Sean T. Michaletz ORCID , Caroline A. E. Strömberg ORCID
Journal Info Wiley | American Journal of Botany
Publication Date 3/23/2025
ISSN 0002-9122
TypeKeyword Image article
Open Access closed Closed Access
DOI https://doi.org/10.1002/ajb2.70019
KeywordsKeyword Image Petiole (insect anatomy) (Score: 0.5754559)