Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile
The increasing prevalence of microplastic pollution in aquatic environments has raised concerns about its impact on marine life. Among the different types of microplastics, polystyrene microplastics (PSMPs) are one of the most commonly detected in aquatic systems. Chaetoceros neogracile (diatom) is...
Published in: | MARINE ENVIRONMENTAL RESEARCH |
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Main Authors: | , , , , , , , , , , |
Format: | Article |
Language: | English |
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ELSEVIER SCI LTD
2024
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Online Access: | https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001158618500001 |
author |
Mojiri Amin; Vishkaei Mansoureh Nazari; Zhou John L.; Trzcinski Antoine P.; Lou Ziyang; Kasmuri Norhafezah; Rezania Shahabaldin; Gholami Ali; Vakili Mohammadtaghi; Kazeroon Reza Andasht |
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spellingShingle |
Mojiri Amin; Vishkaei Mansoureh Nazari; Zhou John L.; Trzcinski Antoine P.; Lou Ziyang; Kasmuri Norhafezah; Rezania Shahabaldin; Gholami Ali; Vakili Mohammadtaghi; Kazeroon Reza Andasht Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile Environmental Sciences & Ecology; Marine & Freshwater Biology; Toxicology |
author_facet |
Mojiri Amin; Vishkaei Mansoureh Nazari; Zhou John L.; Trzcinski Antoine P.; Lou Ziyang; Kasmuri Norhafezah; Rezania Shahabaldin; Gholami Ali; Vakili Mohammadtaghi; Kazeroon Reza Andasht |
author_sort |
Mojiri |
spelling |
Mojiri, Amin; Vishkaei, Mansoureh Nazari; Zhou, John L.; Trzcinski, Antoine P.; Lou, Ziyang; Kasmuri, Norhafezah; Rezania, Shahabaldin; Gholami, Ali; Vakili, Mohammadtaghi; Kazeroon, Reza Andasht Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile MARINE ENVIRONMENTAL RESEARCH English Article The increasing prevalence of microplastic pollution in aquatic environments has raised concerns about its impact on marine life. Among the different types of microplastics, polystyrene microplastics (PSMPs) are one of the most commonly detected in aquatic systems. Chaetoceros neogracile (diatom) is an essential part of the marine food web and plays a critical role in nutrient cycling. This study aimed to monitor the ecotoxicological impact of PSMPs on diatoms and observe enzymatic interactions through molecular docking simulations. Results showed that diatom growth decreased with increasing concentrations and exposure time to PSMPs, and the lowest photosynthetic efficiency (Fv/Fm) value was observed after 72 and 96 h of exposure to 200 mg L-1 of PSMPs. High concentrations of PSMPs led to a decrease in chlorophyll a content (up to 64.4%) and protein content (up to 35.5%). Molecular docking simulations revealed potential interactions between PSMPs and the extrinsic protein in photosystem II protein of diatoms, suggesting a strong affinity between the two. These findings indicate a detrimental effect of PSMPs on the growth and photosynthetic efficiency of diatoms and highlight the need for further research on the impact of microplastics on marine microbial processes. ELSEVIER SCI LTD 0141-1136 1879-0291 2024 194 10.1016/j.marenvres.2024.106343 Environmental Sciences & Ecology; Marine & Freshwater Biology; Toxicology WOS:001158618500001 https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001158618500001 |
title |
Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile |
title_short |
Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile |
title_full |
Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile |
title_fullStr |
Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile |
title_full_unstemmed |
Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile |
title_sort |
Impact of polystyrene microplastics on the growth and photosynthetic efficiency of diatom Chaetoceros neogracile |
container_title |
MARINE ENVIRONMENTAL RESEARCH |
language |
English |
format |
Article |
description |
The increasing prevalence of microplastic pollution in aquatic environments has raised concerns about its impact on marine life. Among the different types of microplastics, polystyrene microplastics (PSMPs) are one of the most commonly detected in aquatic systems. Chaetoceros neogracile (diatom) is an essential part of the marine food web and plays a critical role in nutrient cycling. This study aimed to monitor the ecotoxicological impact of PSMPs on diatoms and observe enzymatic interactions through molecular docking simulations. Results showed that diatom growth decreased with increasing concentrations and exposure time to PSMPs, and the lowest photosynthetic efficiency (Fv/Fm) value was observed after 72 and 96 h of exposure to 200 mg L-1 of PSMPs. High concentrations of PSMPs led to a decrease in chlorophyll a content (up to 64.4%) and protein content (up to 35.5%). Molecular docking simulations revealed potential interactions between PSMPs and the extrinsic protein in photosystem II protein of diatoms, suggesting a strong affinity between the two. These findings indicate a detrimental effect of PSMPs on the growth and photosynthetic efficiency of diatoms and highlight the need for further research on the impact of microplastics on marine microbial processes. |
publisher |
ELSEVIER SCI LTD |
issn |
0141-1136 1879-0291 |
publishDate |
2024 |
container_volume |
194 |
container_issue |
|
doi_str_mv |
10.1016/j.marenvres.2024.106343 |
topic |
Environmental Sciences & Ecology; Marine & Freshwater Biology; Toxicology |
topic_facet |
Environmental Sciences & Ecology; Marine & Freshwater Biology; Toxicology |
accesstype |
|
id |
WOS:001158618500001 |
url |
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001158618500001 |
record_format |
wos |
collection |
Web of Science (WoS) |
_version_ |
1809678633785098240 |