4.7 Article

Glacier foreland insect uptake synthetic compounds: an emerging environmental concern

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SPRINGER HEIDELBERG
DOI: 10.1007/s11356-023-30387-x

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Chironomidae (Diamesa); Carabidae (Nebria); Pesticides; Synthetic fragrances; Polycyclic aromatic hydrocarbons; Insect conservation; Melting glaciers; Italian Alps

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Pesticides, synthetic fragrances and polycyclic aromatic hydrocarbons have contaminated glacier-fed streams and a spring in the Italian Alps, accumulating in aquatic larvae and carabids. The concentration of xenobiotics was higher in larvae than in water, indicating trophic transfer to riparian predators.
Pesticides, synthetic fragrances and polycyclic aromatic hydrocarbons contaminated two glacier-fed streams (Amola, Mandrone) and one spring (Groste) in the Italian Alps. Ten compounds (chlorpyrifos (CPY), chlorpyrifos-methyl (CPY-m), galaxolide (HHCB), tonalide (AHTN), fluorene (Flu), phenanthrene (Phen), anthracene (Ant), fluoranthene (Fl), pyrene (Pyr), benzo[a]anthracene (BaA)) accumulated in aquatic larvae of chironomids (Diamesa steinboecki, D. latitarsis, D. bertrami, D. tonsa, D. zernyi, Pseudokiefferiella parva, Orthocladiinae) and tipulids. Their tissue concentrations (detected by gas chromatography coupled with mass spectrometry) ranged from 1.1 +/- 0.1 ng/g d.w. (= dry weight) (CPY-m in D. tonsa from Amola) to 68.0 +/- 9.1 ng/g d.w. (Pyr in D. steinboecki from Mandrone). HHCB, AHTN, and CPY, with one exception, were accumulated by all aquatic insects. Six compounds (CPY, CPY-m, HHCB, AHTN, Fl, Pyr) also contaminated carabids (Nebria germarii, N. castanea, N. jockischii) predating adults of merolimnic insects. Their tissue concentrations ranged from 1.1 +/- 0.3 ng/g d.w. (CPY-m in N. germarii from Mandrone) to 84.6 +/- 0.3 ng/g d.w. (HHCB in N. castanea from Groste). HHCB and AHTN were accumulated by all Nebria species. Intersite and interspecies differences were observed, which might be attributed to different environmental contamination levels. There was a stronger similarity between species from the same site than among the same species from different sites, suggesting that uptake is not species specific. At all sites, the concentration of xenobiotics was higher in larvae than in water and comparable or higher in carabids than in larvae from the same site, suggesting trophic transfer by emerging aquatic insects to their riparian predators.

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