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Impacts of microplastic–petroleum pollution on nutrient uptake, growth, and antioxidative activity of Chlorella vulgaris

Aquatic Toxicology 2023 24 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Ruiqi Bao, Ruiqi Bao, Ruiqi Bao, Ruiqi Bao, Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Liu Gao, Liu Gao, Liu Gao, Liu Gao, Licheng Peng Siyu Liu, Liu Gao, Siyu Liu, Yuanyuan Su, Liu Gao, Yuanyuan Su, Liu Gao, Yuanyuan Su, Liu Gao, Yuanyuan Su, Liu Gao, Yuanyuan Su, Yuanyuan Su, Siyu Liu, Liu Gao, Liu Gao, Liu Gao, Liu Gao, Liu Gao, Liu Gao, Liu Gao, Liu Gao, Liu Gao, Ruiqi Bao, Liu Gao, Yuanyuan Su, Licheng Peng Liu Gao, Licheng Peng Yuanyuan Su, Yuanyuan Su, Yuanyuan Su, Yuanyuan Su, Yuanyuan Su, Yuanyuan Su, Yuanyuan Su, Licheng Peng Licheng Peng Licheng Peng Licheng Peng Licheng Peng Licheng Peng Licheng Peng Tariq Mehmood, Yang Xie, Liu Gao, Liu Gao, Yang Xie, Tariq Mehmood, Liu Gao, Licheng Peng Licheng Peng Licheng Peng Tariq Mehmood, Licheng Peng Hongjie Fan, Liu Gao, Hongjie Fan, Yuanyuan Su, Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Yuanyuan Su, Yang Xie, Tariq Mehmood, Licheng Peng Tariq Mehmood, Tariq Mehmood, Tariq Mehmood, Yang Xie, Licheng Peng Ruiqi Bao, Licheng Peng Licheng Peng Liu Gao, Yuanyuan Su, Liu Gao, Licheng Peng Liu Gao, Licheng Peng Liu Gao, Ruiqi Bao, Ruiqi Bao, Liu Gao, Licheng Peng Licheng Peng Liu Gao, Tariq Mehmood, Licheng Peng Licheng Peng Licheng Peng Licheng Peng Licheng Peng Licheng Peng Licheng Peng Siyu Liu, Licheng Peng Yuanyuan Su, Yang Xie, Liu Gao, Siyu Liu, Licheng Peng Ruiqi Bao, Ruiqi Bao, Yang Xie, Hongjie Fan, Hongjie Fan, Liu Gao, Ruiqi Bao, Ruiqi Bao, Liu Gao, Ruiqi Bao, Tariq Mehmood, Liu Gao, Siyu Liu, Licheng Peng Siyu Liu, Licheng Peng Licheng Peng Ruiqi Bao, Licheng Peng Yuanyuan Su, Licheng Peng Ruiqi Bao, Licheng Peng Yuanyuan Su, Yuanyuan Su, Licheng Peng Tariq Mehmood, Yuanyuan Su, Licheng Peng Licheng Peng Licheng Peng Licheng Peng Licheng Peng

Summary

Researchers examined the single and combined effects of polyethylene microplastics and petroleum on the microalga Chlorella vulgaris. Both pollutants individually and in combination caused oxidative stress, disrupted nutrient uptake of key elements like iron and silicon, and affected cell growth, with iron and manganese playing critical roles in nitrate absorption pathways.

Polymers

As one of the emerging pollutants, microplastics (MPs; <5 mm) can interact with co-contaminants such as petroleum in marine aquatic systems, and their combined toxicity has not been fully investigated. Therefore, this study focused on pollutants such as micro-sized polyethylene (mPE) and petroleum, aiming to explore their single and combined toxicities to microalga Chlorella vulgaris in terms of the cell growth, antioxidative enzymes, and nutrients utilization. The results showed that the MPs alone (particle sizes (i.e., 13, 165, 550 μm), concentrations (i.e., 0.01, 0.1, and 1 g/L), and aging degrees (i.e., aged for 0 d and 90 d under UVA)), and petroleum alone (5% water accommodated fraction, WAF), and their combinations (i.e., 5% WAF + 165 μm-0.1 g/L-aged 0 d mPE, 5% WAF + 165 μm-0.1 g/L-aged 90 d mPE) all posed toxicities risk to C. vulgaris, following an increase in oxidative stress. The cellular utilization of elements such as Fe, Si, Ca, and Mg was inhibited, whereas the uptake of Mn, NO-N, and PO-P increased as compared to the control experiments. Furthermore, the relationship between nutrients and growth indicators was analyzed using a structural equation model. The results indicated that Fe and Mn directly affected the indirect NO-N absorption by C. vulgaris, which indirectly affected the dry cell weight (DCW) of the microalgae. The path coefficient of Fe and Mn affecting nitrate was 0.399 and 0.388, respectively. The absorption of N was the key step for C. vulgaris resist stress. This study provides a novel analysis of the effects of MPs on the growth of microalgae from the perspective of nutrient elements, thereby providing a useful basis for further exploration of the associated mechanisms.

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