School of Resources and Environment , University of Jinan , Jinan 250022 , P. R. China.
State Key Laboratory of Pollution Control and Resources Reuse , School of the Environment, Nanjing University , Nanjing 210023 , P. R. China.
Environ Sci Technol. 2018 Nov 6;52(21):12829-12840. doi: 10.1021/acs.est.8b04487. Epub 2018 Oct 29.
It is hypothesized that key genes, other than ahr2, are present and associated with the development of a unique type of notochord malformation known as wavy notochord in early life stages of zebrafish following exposure to polychlorinated diphenylsulfides (PCDPSs). To investigate the potential mechanism(s), time-dependent developmental morphologies of zebrafish embryos following exposure to 2500 nM 2,4,4',5-tetra-CDPS, 2,2',4-tri-CDPS or 4,4'-di-CDPS were observed to determine the developmental time point when notochord twists began to occur (i.e., 21 h-postfertilization (hpf)). Simultaneously, morphometric measurements suggested that PCDPS exposure did not affect notochord growth at 21 or 120 hpf; however, elongation of the body axis was significantly inhibited at 120 hpf. Transcriptome analysis revealed that the retardation of body growth was potentially related with dysregulation of transcripts predominantly associated with the insulin-associated Irs-Akt-FoxO cascade. Moreover, knockdown and gain-of-function experiments in vivo on codifferentially expressed genes demonstrated that reduced expression of hspb9 and hspb11 contributed to the occurrence of wavy notochord. The results of this study strongly support the hypothesis that the notochord kinks and twists are triggered by the down-regulation of hspb9 and hspb11, and intensified by body growth retardation along with normal notochord length in PCDPS-exposed zebrafish embryos.
据推测,在暴露于多氯二苯并二噁英(PCDPSs)后,斑马鱼早期生命阶段的一种独特的脊索畸形,即波浪状脊索的发展,除了 ahr2 之外,还存在与关键基因相关。为了研究潜在的机制,观察了暴露于 2500 nM 2,4,4',5-四氯二苯并二噁英(2,4,4',5-tetra-CDPS)、2,2',4-三氯二苯并二噁英或 4,4'-二氯二苯并二噁英后斑马鱼胚胎的时间依赖性发育形态,以确定脊索扭曲开始发生的发育时间点(即受精后 21 小时(hpf))。同时,形态测量学测量表明,PCDPS 暴露在 21 或 120 hpf 时不会影响脊索生长;然而,在 120 hpf 时,体轴的伸长显著受到抑制。转录组分析表明,体生长的延迟可能与胰岛素相关的 Irs-Akt-FoxO 级联中主要与转录物失调相关。此外,体内对差异表达基因的敲低和功能获得实验表明,hspb9 和 hspb11 的表达减少导致了波浪状脊索的发生。这项研究的结果有力地支持了这样的假设,即脊索的弯曲和扭曲是由 hspb9 和 hspb11 的下调触发的,并在 PCDPS 暴露的斑马鱼胚胎中伴随着正常脊索长度的体生长延迟而加剧。