Positive versus negative effects of urea – a fertilizer and fungicide – on a keystone detritivore Asellus aquaticus
Tekijät
Päivämäärä
2024Pääsyrajoitukset
Tekijä ei ole antanut lupaa avoimeen julkaisuun, joten aineisto on luettavissa vain Jyväskylän yliopiston kirjaston arkistotyösemalta. Ks. https://kirjasto.jyu.fi/kokoelmat/arkistotyoasema..
Tekijänoikeudet
Julkaisu on tekijänoikeussäännösten alainen. Teosta voi lukea ja tulostaa henkilökohtaista käyttöä varten. Käyttö kaupallisiin tarkoituksiin on kielletty.
Human induced chemical pollution has caused a decrease in the water quality of freshwater ecosystems in large parts of the world. One of the main reasons for this is pollution from nitrogen fertilizers like urea. Urea is naturally occurring as a nitrogenous waste product and due to its high nitrogen content, it is widely used as a fertilizer. It is also used as a fungicide because of urea hydrolysis that turns it into toxic ammonia. Urea is non-toxic to mammals in environmentally relevant concentrations but can cause eutrophication of aquatic systems due to its high nitrogen concentration.
In this study, I wanted to test if urea had positive or negative effects on a common keystone detritivore, the freshwater isopod Asellus aquaticus. I conducted a factorial 3x3 laboratory experiment and tested environmentally relevant concentrations (0, 1 mg/l and 10 mg/l) in two different pathways: direct and indirect and how those two pathways influenced their effect on isopod’s food consumption, growth, and pigmentation. Direct pathway means urea exposure through water and indirect effects through urea exposure of their diet (likely modifying the nitrogen content and microbial community in the leaves they consume).
The results of my study suggest that urea effects on A. aquaticus are complex and showed significant interactions between size of the isopod and both pathways. This shows the importance of considering multiple exposure pathways in pollution studies. Urea can have significant ecological impacts, affecting nutrient cycling and food web dynamics.
...
Asiasanat
Metadata
Näytä kaikki kuvailutiedotKokoelmat
- Pro gradu -tutkielmat [29564]
Samankaltainen aineisto
Näytetään aineistoja, joilla on samankaltainen nimeke tai asiasanat.
-
Dataset supporting the publication: "Direct and indirect effects of chemical pollution: Fungicides alter growth, feeding, and pigmentation of the freshwater detritivore Asellus aquaticus"
Kalathil Parambil, Akshay; Räsänen, Katja; Matthews, Blake (University of Jyväskylä, 2024)General information: Title of the Paper: "Direct and Indirect Effects of Fungicides on Growth, Feeding, and Pigmentation of the Freshwater Detritivore Asellus aquaticus" Authors: Akshay Mohan, Blake Matthews, Katja ... -
Direct and indirect effects of chemical pollution : Fungicides alter growth, feeding, and pigmentation of the freshwater detritivore Asellus aquaticus
Mohan, Akshay; Matthews, Blake; Räsänen, Katja (Elsevier, 2024)Anthropogenic chemical pollutants, such as fungicides, pose significant threats to natural ecosystems. Although the direct impacts of numerous chemicals are well-documented in simple environmental contexts, their indirect ... -
Effects of anthropogenic stress on hosts and their microbiomes : Treated wastewater alters performance and gut microbiome of a key detritivore (Asellus aquaticus)
Lafuente, Elvira; Carles, Louis; Walser, Jean‐Claude; Giulio, Marco; Wullschleger, Simon; Stamm, Christian; Räsänen, Katja (Wiley-Blackwell, 2023)Human activity is a major driver of ecological and evolutionary change in wild populations and can have diverse effects on eukaryotic organisms as well as on environmental and host-associated microbial communities. Although ... -
Environmental context determines pollution impacts on ecosystem functioning
Burdon, Francis J.; Reyes, Marta; Schönenberger, Urs; Räsänen, Katja; Tiegs, Scott D.; Eggen, Rik I. L.; Stamm, Christian (Wiley, 2022)Global change assessments have typically ignored synthetic chemical pollution, despite the rapid increase of pharmaceuticals, pesticides and industrial chemicals in the environment. Part of the problem reflects the ... -
Environmental context determines pollution impacts on ecosystem functioning
Burdon, Francis J.; Reyes, Marta; Schönenberger, Urs; Räsänen, Katja; Tiegs, Scott D.; Eggen, Rik I. L.; Stamm, Christian (Wiley, 2023)Global change assessments have typically ignored synthetic chemical pollution, despite the rapid increase of pharmaceuticals, pesticides and industrial chemicals in the environment. Part of the problem reflects the ...
Ellei toisin mainittu, julkisesti saatavilla olevia JYX-metatietoja (poislukien tiivistelmät) saa vapaasti uudelleenkäyttää CC0-lisenssillä.