Application of Reproductive Toxicity Caused by Endocrine Disruptors in Rotifers: A Review

Применение оценки репродуктивной токсичности, вызываемой эндокринными дизрапторами, у коловраток: обзор
Guangyan Liang, Shenyu Liu, S. WANG, Yuxue Qin
2026-01-11

aquatic ecotoxicologyendocrine-disrupting chemicalsoxidative stressrotifer reproductive toxicitytransgenerational toxicity
Endocrine-disrupting chemicals (EDCs), widespread in aquatic environments, interfere with endocrine function in organisms and threaten ecosystem stability. Rotifers, critical live feed for marine fish, shrimp, and crab larvae, link EDC-induced reproductive impairment to marine ecosystem stability and aquaculture sustainability. This PRISMA-compliant review synthesizes key findings, consequences, and gaps in EDC–rotifer reproductive toxicity research. Traditional EDCs (heavy metals, per- and polyfluoroalkyl substances (PFASs), phenols, phthalate esters, polybrominated diphenyl ethers (PBDEs), and steroid hormones) and emerging EDCs (disinfection byproducts, microplastics, pharmaceutical metabolites) induce distinct reproductive harm—e.g., Hg2+ shows extreme toxicity (24 h LC50 = 4.51 μg L−1 in Brachionus plicatilis), BDE-47 damages ovaries, and microplastics cause transgenerational delays. Rotifer species and exposure duration affect sensitivity (e.g., BDE-47: 96 h LC50 = 0.163 mg L−1 vs. 24 h LC50 > 22 mg L−1 in B. plicatilis). Oxidative stress is a universal mechanism, and combined EDC exposure produces context-dependent synergistic/antagonistic effects. EDC-induced impairment reduces rotifer population density, alters structure, and propagates through food webs, threatening aquaculture and biodiversity; transgenerational toxicity (e.g., 4-nonylphenol: F1 inhibition 28% vs. 12% in F0) weakens resilience. This review supports EDC risk assessment, with gaps including long-term low-concentration data, transgenerational mechanisms, EDC–microbiome interactions, and emerging PFAS toxicity—priorities for future research.
1
Different EDC classes cause distinct reproductive harms, including ovarian damage from BDE-47 and transgenerational developmental delays from microplastics.
2
EDC toxicity depends on rotifer species and exposure duration; in Brachionus plicatilis, BDE-47 96 h LC50 was 0.163 mg L−1 versus 24 h LC50 >22 mg L−1.
3
Mercury showed extreme acute toxicity, with a 24 h LC50 of 4.51 μg L−1 in Brachionus plicatilis.
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Oxidative stress is a common toxicity mechanism, while combined EDC exposures can produce context-dependent synergistic or antagonistic effects and reduce population resilience, threatening aquaculture and biodiversity.
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This PRISMA-compliant review synthesizes reproductive toxicity evidence for traditional and emerging endocrine-disrupting chemicals in rotifers.

rotifers exposed to endocrine-disrupting chemicals in aquatic environments

reproductive toxicity and transgenerational reproductive impairment caused by endocrine-disrupting chemicals, including mechanisms and population-level consequences

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2026-01-11
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Guangyan Liang
Shenyu Liu
S. WANG
Yuxue Qin
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