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Updated: Jun 20, 2026

Using Caenorhabditis elegans for Studying Trans- and Multi-Generational Effects of Toxicants
Published on: July 29, 2019
Emerging Plastic-Derived Soil Contaminant AO168═O Impairs Nematode Development and Lifespan at Environmentally
Kaihang Deng1, Haochun Shi1, Peng Wang1
1State Environmental Protection Key Laboratory of Environmental Health Impact Assessment of Emerging Contaminants, School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.
None:
Emerging environmental contaminants increasingly accumulate in soil ecosystems, yet their chronic biological impacts on soil-dwelling organisms remain poorly understood. Here, we demonstrate that tris(2,4-ditert-butylphenyl) phosphate (AO168═O), a prevalent soil-borne contaminant formed through the oxidative transformation of the widely used plastic antioxidant (AO168), compromises nematode fitness at relatively low concentrations. Exposure of C. elegans to AO168═O induces pronounced developmental and physiological impairments, including suppressed somatic growth, delayed developmental progression, disrupted energy homeostasis, and reduced reproductive output at 400-10,000 ng/g. Transcriptomic profiling reveals a robust reprogramming of gene expression that molecularly corroborates growth and developmental restriction. Notably, longevity-regulating pathways centered on the conserved insulin/IGF-1 signaling (IIS) are consistently and significantly enriched. Integrated gene-set enrichment analyses further demonstrate that AO168═O-associated transcriptional signatures closely recapitulate established IIS- and DAF-16-regulated expression programs, which were functionally validated by pharmacological inhibition and genetic ablation. Furthermore, early-life exposure leads to persistent and long-lasting fitness deficits, such as impaired locomotor performance and a marked reduction in adult lifespan, detectable even at the lowest exposure concentration. Together, these findings identify AO168═O as a previously underrecognized factor compromising nematode fitness, providing essential laboratory-based evidence that highlights the potential vulnerability of soil biota to ubiquitous soil-borne contaminants.

