4.7 Article

Parental exposure to azoxystrobin causes developmental effects and disrupts gene expression in F1 embryonic zebrafish (Danio rerio)

Journal

SCIENCE OF THE TOTAL ENVIRONMENT
Volume 646, Issue -, Pages 595-605

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.scitotenv.2018.07.331

Keywords

Azoxystrobin; Parental exposure; Zebrafish; F1 embryos

Funding

  1. National Key R&D Program of China [2017YFD0200504]

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The fungicide azoxystrobin induces reproductive toxicity in adult zebrafish. However, data are lacking regarding the impact of azoxystrobin in the F1 generation after parental exposure. To address this knowledge gap, parental zebrafish (F0) were exposed to 2, 20 and 200 mu g/L azoxystrobin for 21 days. Following this, fertilized F1 embryos fromthe exposed parentswere either exposed to the same concentration as their corresponding exposed parents (F0+/F1+) orwere reared in cleanwater (F0+/F1-) for 96h (+, exposed; - unexposed). Likewise, F1 embryos fromthe non-exposed parents were either reared in clean water (F0-/F0-) as the control group orwere exposed to 2, 20 and 200 mu g/L azoxystrobin (F0-/F1+) for 96 h. Mortality, deformities, hatching rate, body length, and the expression of transcripts related to the endocrine system, oxidative stress, and apoptosis were measured. Increased mortality, higher malformation rate, decreased hatching rate, and a shorter total body length, as well as up-regulated cyp19b, vtg1, vtg2, p53, casp3, and casp9 mRNA and down-regulated sod1 and sod2 mRNA were detected in F1 embryos from the F0 and F1 exposure group at 20 and 200 mu g/L azoxystrobin (F0+/F1+) when compared with the group from the F0 exposure alone (F0+/F1-). Interestingly, F1 exposure alone (F0-/F1+) did not induce mortality, developmental impairments, nor morphological deformations compared to the control group, but it did increase expression level of sod1, sod2, cat, p53, and casp9 at 200 mu g/L azoxystrobin. Taken together, these data suggest that azoxystrobin affects survivability, development, and genes involved in the endocrine system, oxidative stress, and apoptosis in F1 embryos if their parents are initially exposed to this fungicide compared to embryos fromnon-exposed parents. Moreover, the effects aremore severe if the offspring are continuously exposed to azoxystrobin similar to their parents. (C) 2018 Elsevier B.V. All rights reserved.

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