Regeneration: an overlooked aspect of trait‐based plant community assembly models

Julie E. Larson, Jennifer L. Funk

Journal of Ecology · 2016 · 239 citations · 126 references

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Concepts

TL;DR

Plant community dynamics are heavily influenced by propagule production, dispersal, seed‑to‑seedling recruitment, and vegetative reproduction, yet progress in collecting regeneration traits for community assembly models has been slow, and seed mass alone cannot fully explain these dynamics. The essay advocates expanding the use of diverse regeneration traits in community assembly models. The authors extend a community‑assembly framework to view regeneration as sequential transitions shaped by abiotic filters, biotic interactions, and species traits, review key filters and traits for each transition, and outline how regeneration can be incorporated into current and emerging trait‑.

Abstract

Summary Despite the disproportionate influence that propagule production, dispersal, seed‐to‐seedling recruitment and vegetative reproduction can have on plant population and community dynamics, progress has been slow in the directed collection of regeneration traits to inform community assembly outcomes. While seed mass is globally available and linked to growth and reproductive output, there are limits to its explanatory ability. In this essay, we call for expanded efforts to integrate a more diverse set of regeneration traits into community assembly models. First, we extend an existing community assembly framework to conceptualize regeneration as a series of transitional processes whose outcomes are influenced by abiotic filters, biotic interactions and species traits. We then briefly review the literature, highlighting filters and traits of demonstrated or theorized importance for each transition. Finally, we place regeneration in the context of existing and emerging modelling approaches in trait‐based community assembly, summarizing key areas of progress needed to integrate regeneration traits into these efforts. Synthesis . By incorporating influential regeneration traits into empirical studies and global data bases, we can begin to disentangle regenerative mechanisms underlying community assembly outcomes and enhance rapidly developing models of species’ abundances, distributions and responses to environmental change.

References

126