| Literature DB >> 26790707 |
Bodil K Ehlers1, Christian F Damgaard2, Fabien Laroche3.
Abstract
Many studies report that intraspecific genetic variation in plants can affect community composition and coexistence. However, less is known about which traits are responsible and the mechanisms by which variation in these traits affect the associated community. Focusing on plant-plant interactions, we review empirical studies exemplifying how intraspecific genetic variation in functional traits impacts plant coexistence. Intraspecific variation in chemical and architectural traits promotes species coexistence, by both increasing habitat heterogeneity and altering competitive hierarchies. Decomposing species interactions into interactions between genotypes shows that genotype × genotype interactions are often intransitive. The outcome of plant-plant interactions varies with local adaptation to the environment and with dominant neighbour genotypes, and some plants can recognize the genetic identity of neighbour plants if they have a common history of coexistence. Taken together, this reveals a very dynamic nature of coexistence. We outline how more traits mediating plant-plant interactions may be identified, and how future studies could use population genetic surveys of genotype distribution in nature and methods from trait-based ecology to better quantify the impact of intraspecific genetic variation on plant coexistence.Keywords: adaptive traits; competition; facilitation; plant–plant interactions
Mesh:
Year: 2016 PMID: 26790707 PMCID: PMC4785922 DOI: 10.1098/rsbl.2015.0853
Source DB: PubMed Journal: Biol Lett ISSN: 1744-9561 Impact factor: 3.703