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  • Revealing hydrogen peroxide as an external stressor in macrophyte-dominated coastal ecosystems.

Revealing hydrogen peroxide as an external stressor in macrophyte-dominated coastal ecosystems.

Oecologia (2020-06-20)
Isla M Twigg, Federico Baltar, Jack R Hall, Christopher D Hepburn
摘要

Benthic primary producers in coastal ecosystems provide important habitat for marine organisms through the provision of complex 3D habitat. Primary producers produce organic matter, while simultaneously producing reactive oxygen species, including hydrogen peroxide (H2O2), a driver of oxidative stress. Through their high biomass, productivity and effect on local hydrodynamics, benthic primary producers can potentially increase H2O2 concentrations surrounding the biogenic structures they form. The aim of this study was to identify the potential role of H2O2 produced by benthic primary producers as an external stressor in coastal ecosystems. This was achieved by measuring H2O2 concentrations within sea lettuce blooms (Ulva sp.), giant kelp forests (Macrocystis pyrifera), and seagrass meadows (Zostera muelleri); quantifying H2O2 production rates of these species; and testing heterotrophic bacterial response to relevant H2O2 concentrations. Ulva sp. produced five times more H2O2 than other species. At in situ concentrations, H2O2 inhibited bacterial production and carbon flow through the microbial loop by 75%. This study reveals H2O2 as an additional stressor in bloom-forming Ulva sp. with higher H2O2 production compared to the ecosystem engineers M. pyrifera and Z. muelleri. H2O2 production by benthic primary producers can affect carbon flow through the microbial loop, with the potential to propagate a stress signal up the food web.

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Sigma-Aldrich
过氧化物酶 来源于辣根, Type VI, essentially salt-free, lyophilized powder, ≥250 units/mg solid (using pyrogallol)
Sigma-Aldrich
过氧化氢酶 来源于牛肝脏, aqueous suspension, 40,000-60,000 units/mg protein (E1%/405)
Sigma-Aldrich
4-羟基苯乙酸, 98%