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首页> 外文期刊>Environmental Pollution >Transcriptome-wide changes associated with the reproductive behaviour of male guppies exposed to 17α-ethinyl estradiol
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Transcriptome-wide changes associated with the reproductive behaviour of male guppies exposed to 17α-ethinyl estradiol

机译:与暴露于17α-乙烯基雌二醇的雄性孔舌曲的生殖行为相关的转录组变化

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Although many pharmaceutical compounds (and their metabolites) can induce harmful impacts at the molecular, physiological and behavioural levels, their underlying mechanistic associations have remained largely unexplored. Here, we utilized RNA-Seq to build a whole brain transcriptome profile to examine the impact of a common endocrine disrupting pharmaceutical (17 alpha-ethinyl estradiol, EE2) on reproductive behaviour in wild guppies (Poecilia reticulata). Specifically, we annotated 16,791 coding transcripts in whole brain tissue in relation to the courtship behaviour (i.e. sigmoid display) of EE2 exposed (at environmentally relevant concentration of 8 ng/L for 28-days) and unexposed guppies. Further, we obtained 10,960 assembled transcripts matching in the non-coding orthologous genomes. Behavioural responses were assessed using a standard mate choice experiment, which allowed us to disentangle chemical cues from visual cues. We found that a high proportion of the RNAseq reads aligned back to our de novo assembled transcriptome with 80.59% mapping rate. Behavioural experiments showed that when males were presented only with female visual cues, there was a significant interaction between male treatment and female treatment in the time spent in the preference zone. This is one of the first studies to show that transcriptome-wide changes are associated with the reproductive behaviour of fish: EE2 exposed male guppies that performed high levels of courtship had a gene profile that deviated the most from the other treatment groups, while both non-courting EE2 and control males had similar gene signatures. Using Gene Ontology pathway analysis, our study shows that EE2-exposed males had gene transcripts enriched for pathways associated with altered immunity, starvation, altered metabolism and spermatogenesis. Our study demonstrates that multiple gene networks orchestrate courting behaviour, emphasizing the importance of investigating impacts of pharmaceuticals on gene networks instead of single genes. (C) 2020 Elsevier Ltd. All rights reserved.
机译:虽然许多药物化合物(及其代谢物)可以对分子,生理和行为水平的有害影响,但其潜在的机制联合在很大程度上是未探索的。在这里,我们利用RNA-SEQ构建全脑转录组型材,以检查常见的内分泌破坏药物(17α-乙基雌二醇,EE2)对野生GUPPIE(Poecilia Reticulata)的繁殖行为的影响。具体而言,我们在全脑组织中注释了16,791个编码转录物,其与暴露的EE2的求婚行为(即六纤维显示器)(在环境相关浓度为8 ng / L持续28天)和未曝光的愈合。此外,我们获得了在非编码正交基因组中匹配的10,960个组装的转录物。使用标准伴侣选择实验评估行为响应,使我们能够从视觉提示中解开化学提示。我们发现,高比例的RNASEQ读回我们的DE Novo组装的转录组,其映射率为80.59%。行为实验表明,当仅与女性视觉提示仅呈现雄性时,在偏好区中花费的时间与女性治疗之间存在显着的相互作用。这是第一项研究之一,以表明转录组的变化与鱼的生殖行为有关:EE2暴露的雄性愈合,表现出高水平的求爱具有偏离其他治疗组最多的基因曲线,而非-Courting EE2和对照男性具有相似的基因特征。通过基因本体途径分析,我们的研究表明,EE2暴露的雄性具有富集的基因转录物,富含免疫,饥饿,改变的代谢和精子发生相关的途径。我们的研究表明,多基因网络协调挽救行为,强调调查药物对基因网络上的影响而不是单一基因的重要性。 (c)2020 elestvier有限公司保留所有权利。

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