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Effects of low glyphosate-based herbicide concentrations on endocrine-related gene expression in the decapoda Macrobrachium potiuna

机译:基于草甘膦的除草剂浓度对甲板大鼠Potiuna内分泌相关基因表达的影响

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Glyphosate-based herbicides (GBH) are the most used herbicides worldwide and are considered as endocrine-disrupting compounds (EDC) for non-target organisms. However, effects of GBH on their endocrine systems remain poorly understood. Thus, the aim of this study was to assess the effects of low concentrations of Roundup WG (R) on growth and reproduction process molecules in both males and females of the decapod crustacean Macrobrachium potiuna, by the relative transcript expression levels of the ecdysteroid receptor (EcR), the molt-inhibiting hormone (MIH), and the vitellogenin (Vg) genes. Prawns were exposed to three concentrations of GBH (0.0065, 0.065, and 0.28 mg L-1) for 7 and 14 days. The results revealed that only in males the three genes transcript levels were influenced by the GBH concentration, time of exposure, and the interaction between the concentrations and time of exposure, suggesting that males were more sensitive to GBH than females. For males, after 7 days of exposure at 0.065 mg L-1, EcR and MIH were over-expressed, while the Vg expression was only over-expressed after 14 days. The present study highlighted that GBH impacted endocrine systems of M. potiuna. Moreover, EcR and MIH gene expressions could be promising EDC biomarkers of exposure in crustaceans. These results also indicate that GBH concentrations, considered secure by regulatory agencies, should be reviewed to minimize the effects on non-target organisms.
机译:基于草甘膦的除草剂(GBH)是全球最常用的除草剂,被认为是非靶毒性生物的内分泌破坏化合物(EDC)。然而,GBH对其内分泌系统的影响仍然明白很差。因此,本研究的目的是评估低浓度的圆润WG(R)对甲板甲壳素大鼠Potiuna的男性和女性的生长和繁殖过程分子的影响,通过Ecdysteroid受体的相对转录表达水平( ECR),抑制莫尔族抑制激素(MIH)和Vitellogenin(Vg)基因。虾暴露于3〜14天的三种浓度的GBH(0.0065,0.065和0.28mg L-1)。结果表明,只有在雄性中,三个基因转录水平受到GBH浓度,暴露时间的影响,以及浓度和暴露时间之间的相互作用,表明雄性比女性更敏感。对于雄性,在0.065mg L-1的暴露后7天后,ECR和MIH被过度表达,而VG表达仅在14天后过度表达。本研究强调了M. Potiuna的GBH受影响的内分泌系统。此外,ECR和MIH基因表达可能是在甲壳类动物中接触的EDC生物标志物。这些结果还表明,应审查监管机构认为安全的GBH浓度,以最大限度地减少对非靶毒性生物的影响。

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