open access publication

Article, 2023

Macrophyte removal affects nutrient uptake and metabolism in lowland streams

AQUATIC BOTANY, ISSN 0304-3770, 0304-3770, Volume 189, 10.1016/j.aquabot.2023.103694

Contributors

Ada, Pastor 0000-0002-7114-770X (Corresponding author) [1] [2] Holmboe, Cecilie M. H. [2] Pereda, Olatz [3] Gimenez-Grau, Pau 0000-0001-8678-6806 [2] Baattrup-Pedersen, Annette [2] Riis, Tenna 0000-0003-2501-4444 [2]

Affiliations

  1. [1] Univ Girona, Grp Continental Aquat Ecol Res GRECO, Insitute Aquat Ecol, Campus Montilivi, Girona 17003, Spain
  2. [NORA names: Spain; Europe, EU; OECD];
  3. [2] Aarhus Univ, Dept Biol, Ole Worms Alle, DK-8000 Aarhus C, Denmark
  4. [NORA names: AU Aarhus University; University; Denmark; Europe, EU; Nordic; OECD];
  5. [3] Univ Basque Country UPV EHU, Fac Sci & Technol, Bilbao 48080, Spain
  6. [NORA names: Spain; Europe, EU; OECD]

Abstract

Macrophytes provide essential ecosystem services in lowland streams, including nutrient uptake that can reduce downstream transport to vulnerable coastal areas. Despite that, to ensure water conveyance and effective run off from agricultural fields, aquatic plant biomass is removed regularly in many European streams (i.e. weed cutting practices). However, the impacts of weed cutting on stream ecosystem processes are not yet well documented. Here, we studied the effect of weed cutting on nutrient retention and ecosystem metabolism in three lowland streams with contrasting dominant vegetation communities (submergent and emergent plants) during summer in Denmark. Our results showed a decrease in nutrient retention; uptake velocity of ammonium decreased 34-77 % and of phosphate decreased 50-77 %. Ecosystem metabolic rates also decreased after weed cutting, both in gross primary production (9 %, 60 % and 85 %) and respiration (47 %, 69 % and 76 %). The effects of weed cutting on these ecosystem processes prevailed three weeks after the cutting occurred. Understanding the effects of weed cutting on stream ecosystem functioning can improve nature-based management strategies to control eutro-phication of downstream coastal areas.

Keywords

Ammonium uptake, Ecosystem respiration (ER), Gross primary production (GPP), Macrophyte removal, Phosphate uptake, Stream metabolism

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