We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Terrestrial Isopods as Biotic Generators of Microplastics Following Chronic Exposure to Weathered Low‐Density Polyethylene
AI summary Read the abstract
Common soil bugs called isopods can chew larger plastic waste into microplastics, adding a hidden source of these tiny pollutants to soil, without it seeming to harm the bugs themselves. Since microplastics can move up the food chain into crops and animals we eat, this finding is a reminder that plastic litter breaking down in soil may be a bigger contributor to our environmental exposure than previously thought.
Terrestrial detritivores such as isopods and springtails play a vital role in cycling nutrients through soil ecosystems. Microplastics (MPs, < 5 mm) are increasingly recognized as contaminants of terrestrial soils, yet little is known about whether soil invertebrates themselves are impacted by consuming these plastics or if they can generate MPs from larger plastic debris. This study investigated the ability of three isopod species (Porcellio laevis, Porcellio scaber, and Porcellionides pruinosus) to fragment weathered low-density polyethylene into MPs and assessed the impact on isopod survival and growth. Weathered polyethylene fragments were provided to isopods and replaced weekly over a 28-day exposure; MPs generated in the sand substrate were recovered by hydrogen peroxide digestion, filtration, and microscopy, while survival and growth were also monitored throughout. All three species foraged on the fragments and produced MPs throughout the experiment (min.-max. values: P. laevis = 88.3-1676.0 μm; P. scaber = 82.5-940.4 μm; and P pruinosus = 75.0-823.1 μm). The mean size of MPs generated differed significantly among species and was positively correlated with isopod body size. Weekly MP production did not differ significantly among species, though P. scaber and P. pruinosus varied significantly across weeks; total MP production over the 28 days did not differ among species. No significant effects on isopod survival or growth were observed. These findings indicate that terrestrial isopods can generate substantial quantities of MPs from macroplastic debris without apparent adverse effects on their own survival or growth, underscoring their potential role as biotic generators of secondary MPs in terrestrial ecosystems.
More Papers Like This
Terrestrial Isopods Generate Microplastics from Low-Density Polyethylene Without Effects on Survival
AI summary Read the abstract
This study found that terrestrial isopods physically fragmented low-density polyethylene plastic into microplastic particles during feeding and locomotion, without experiencing significant effects on survival. The results suggest that soil invertebrates may contribute to secondary microplastic generation in terrestrial ecosystems.
Raw data for: Terrestrial isopods as biotic generators of microplastics following chronic exposure to weathered low-density polyethylene
AI summary Read the abstract
Researchers exposed three isopod species to weathered polyethylene foam for 28 days and confirmed that all three mechanically fragment the plastic into microplastics through foraging, with particle size positively correlated to body size—establishing terrestrial detritivores as active generators of secondary microplastics in soil ecosystems.
Influence of microplastics on feeding and energy reserves of terrestrial isopods Porcellio scaber
AI summary Read the abstract
Researchers exposed land-dwelling pill bugs to food contaminated with microplastics at concentrations found in compost heaps, and measured effects on feeding behavior and energy reserves in the digestive gland. The study investigated whether environmentally realistic microplastic levels in soil affect terrestrial invertebrates, which are important links in soil food webs.
Soil Invertebrates Generate Microplastics From Polystyrene Foam Debris
AI summary Read the abstract
Researchers demonstrated that four common soil invertebrates—crickets, isopods, beetle larvae, and snails—can physically fragment polystyrene foam into microplastics, revealing that soil organisms actively contribute to microplastic generation rather than just being affected by it.
Microplastics are transferred by soil fauna and regulate soil function as material carriers
AI summary Read the abstract
Springtail soil invertebrates were found to actively transport microplastics through soil and to transfer them and their adsorbed contaminants during feeding activity. Microplastic-laden springtails also suppressed soil organic matter decomposition, demonstrating that soil fauna mediate both the spatial redistribution and the functional impacts of microplastic pollution.
Research digests by email
When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.