Molecular mechanism of thiram-induced abnormal chondrocyte proliferation via lncRNA MSTRG.74.1-BNIP3 axis

Thiram, a widely used organic pesticide in agriculture, exhibits both bactericidal and insecticidal effects. However, prolonged exposure to thiram has been linked to bone deformities and cartilage damage, contributing to the development of tibial dyschondroplasia (TD) in broilers and posing a signif...

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Veröffentlicht in:Pesticide biochemistry and physiology 2024-05, Vol.201, p.105847-105847, Article 105847
Hauptverfasser: Wu, Xiaomei, Liu, Yingwei, Li, Ying, Tang, Zhaoxin, Li, Aoyun, Zhang, Hui
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Sprache:eng
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Zusammenfassung:Thiram, a widely used organic pesticide in agriculture, exhibits both bactericidal and insecticidal effects. However, prolonged exposure to thiram has been linked to bone deformities and cartilage damage, contributing to the development of tibial dyschondroplasia (TD) in broilers and posing a significant threat to global agricultural production. TD, a prevalent nutritional metabolic disease, manifests as clinical symptoms like unstable standing, claudication, and sluggish movement in affected broilers. In recent years, there has been growing recognition of the regulatory role of long non-coding RNA (lncRNA) in tibial cartilage formation among broilers through diverse signaling pathways. This study employs in vitro experimental models, growth performance analysis, and clinical observation to assess broilers' susceptibility to thiram pollution. Transcriptome sequencing analysis revealed a significant elevation in the expression of lncRNA MSTRG.74.1 in both the con group and the thiram-induced in vitro group. The results showed that lncRNA MSTRG.74.1 plays a pivotal role in influencing the proliferation and abnormal differentiation of chondrocytes. This regulation occurs through the negative modulation of apoptotic genes, including Bax, Cytc, Bcl2, Apaf1, and Caspase3, along with genes Atg5, Beclin1, LC3b, and protein p62. Moreover, the overexpression of lncRNA MSTRG.74.1 was found to regulate broiler chondrocyte development by upregulating BNIP3. In summary, this research sheds light on thiram-induced abnormal chondrocyte proliferation in TD broilers, emphasizing the significant regulatory role of the lncRNA MSTRG.74.1-BNIP3 axis, which will contribute to our understanding of the molecular mechanisms underlying TD development in broilers exposed to thiram. We identified MSTRG.74.1 in this study, which plays a role in the dysregulated development of chondrocytes by exerting negative regulation on chondrocyte apoptosis and autophagy. Our study provides a novel avenue for the modulation of chondrogenesis through LncRNAs. [Display omitted] •Thiram has been found to induce tibial dyschondroplasia (TD).•LncRNA MSTRG.74.1 exhibited significant expression in broilers with TD.•Thiram has adverse effects on chondrocyte apoptosis and autophagy.•Thiram-induced TD through the lncRNA MSTRG.74.1-BNIP3 axis.
ISSN:0048-3575
1095-9939
DOI:10.1016/j.pestbp.2024.105847