Interaction rewiring and the rapid turnover of plant–pollinator networks
Перестройка взаимодействий и быстрый оборот сетей «растение–опылитель»
2017-02-03
SCID: 54.1/3q2fkuec
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interaction rewiringplant–pollinator networksrelative abundance constraintsspecies phenologywithin-season turnover
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Abstract (AI)
Whether species interactions are static or change over time has wide-reaching ecological and evolutionary consequences. However, species interaction networks are typically constructed from temporally aggregated interaction data, thereby implicitly assuming that interactions are fixed. This approach has advanced our understanding of communities, but it obscures the timescale at which interactions form (or dissolve) and the drivers and consequences of such dynamics. We address this knowledge gap by quantifying the within-season turnover of plant-pollinator interactions from weekly censuses across 3 years in a subalpine ecosystem. Week-to-week turnover of interactions (1) was high, (2) followed a consistent seasonal progression in all years of study and (3) was dominated by interaction rewiring (the reassembly of interactions among species). Simulation models revealed that species' phenologies and relative abundances constrained both total interaction turnover and rewiring. Our findings reveal the diversity of species interactions that may be missed when the temporal dynamics of networks are ignored.
Key Findings
1
Interaction turnover followed a consistent seasonal progression in all three study years.
2
Simulation models showed species' phenologies and relative abundances constrain both total interaction turnover and the extent of rewiring.
3
Temporally aggregated interaction networks miss a diversity of species interactions produced by within-season temporal dynamics.
4
Turnover was dominated by interaction rewiring, meaning interactions were reassembled among the same species rather than by species turnover.
5
Week-to-week turnover of plant–pollinator interactions within a season was high based on weekly censuses across three years.
Research Object
Plant–pollinator interaction network within a subalpine ecosystem (weekly-resolved, within-season networks across 3 years)
Research Subject
Week-to-week turnover of plant–pollinator interactions, specifically the rate and seasonal progression of interaction turnover and the dominance of interaction rewiring driven by species phenologies and relative abundances
Publication Details
Publication Date
2017-02-03
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