open access publication

Preprint, 2024

Low phenotypic plasticity predispose plant species to extinction under eutrophication

Authorea, 10.22541/au.170665927.74627787/v1

Contributors

Baattrup-Pedersen, Annette 0000-0002-3118-344X [1] Cavalli, Giulia [1] Larsen, Søren Erik 0000-0001-8428-2065 [1] Johansson, Liselotte Sander [1] Riis, Tenna 0000-0003-2501-4444 [1]

Affiliations

  1. [1] Aarhus University
  2. [NORA names: AU Aarhus University; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

The number of urgently threatened species rapidly accelerates and almost one-third of freshwater biodiversity face extinction. Here, we explore mechanistic links between eutrophication and ecophysiological trait plasticity to investigate if plasticity can predict species being predisposed to extinction. Individuals of five species belonging to the widespread and prominent genus Potamogeton were selected according to their historical trend and transplanted into three replicate lakes along a gradient in nutrient availability. After four weeks of growth, it was observed that declining species were unable to convert increased nutrient availability into enhanced rates of growth and that the ecophysiological plasticity was lower regarding nutrient acquisition and the ability to adjust physiologically to maximise growth under the prevailing nutrient regime. We conclude that an important mechanism behind species declines link to inappropriate ecophysiological adjustments under nutrient enrichment that likely have severe consequences for species competitive capabilities under eutrophication, eventually leading to local extinction.

Keywords

Potamogeton, acquisition, adjustment, availability, capability, competitive capabilities, consequences, declining species, ecophysiological adjustments, ecophysiological plasticity, enhanced rate, enhanced rate of growth, enrichment, eutrophication, extinction, face extinction, freshwater, genus, genus Potamogeton, gradient, growth, historical trends, increased nutrient availability, individuals, lake, links, local extinction, mechanism, nutrient acquisition, nutrient availability, nutrient enrichment, nutrient regimes, phenotypic plasticity, plants, plasticity, rate of growth, regime, replication, severe consequences, species, species to extinction, threatened species, trait plasticity, trends, weeks, weeks of growth

Data Provider: Digital Science