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Environmental Sources
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Microplastics accumulate on pores in seed capsule and delay germination and root growth of the terrestrial vascular plant Lepidium sativum
Chemosphere2019
851 citations
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Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Score: 60
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0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Nadja R. Brun,
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Nadja R. Brun,
Nadja R. Brun,
Paul Behrens,
Paul Behrens,
Lotte J. Bouwman,
Nadja R. Brun,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Martina G. Vijver
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Nadja R. Brun,
Nadja R. Brun,
Nadja R. Brun,
Paul Behrens,
Paul Behrens,
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Paul Behrens,
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Nadja R. Brun,
Martina G. Vijver
Thijs Bosker,
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Thijs Bosker,
Thijs Bosker,
Martina G. Vijver
Martina G. Vijver
Martina G. Vijver
Summary
Researchers found that micro- and nanoplastic particles accumulate on the pores of cress seed capsules, physically blocking water uptake and delaying both germination and root growth. The smallest particles caused the most significant effects by clogging the seed pores most effectively. The study reveals a previously unknown mechanism by which plastic pollution could harm plant reproduction in contaminated soils.
The impacts of nano- and microplastics (<100 nm and <5 mm, respectively) on terrestrial systems is to the present largely unexplored. Plastic particles are likely to accumulate in these systems primarily by the application of sewage sludge. The aim of the current study was to investigate the effects of three sizes of plastic particles (50, 500, and 4800 nm) on a terrestrial plant (cress; Lepidium sativum), using a standardized 72 h bioassay. Cress seeds were exposed to five different concentrations of plastics, ranging from 10 to 10 particles mL. Germination rate was significantly reduced after 8 h of exposure for all three sizes of plastics, with increased adverse effect with increasing plastic sizes. Seeds exposed to 4800 nm microplastics showed a germination rate decline from 78% in control to 17% in the highest exposure. No difference in germination rate occurred after 24 h of exposure, regardless of the size of the plastic used. Significant differences in root growth were observed after 24 h, but not after 48 or 72 h of exposure. Impacts on germination are likely due to physical blockage of the pores in the seed capsule by microplastics as shown by confocal microscopy of fluorescent microplastics. In later stages, the microplastics particularly accumulated on the root hairs. This is the first detailed study on the effect of nano- and microplastics on a vascular, terrestrial plant, and our results indicate short-term and transient adverse effects.