Paternal zinc deficiency alters offspring metabolic status in Drosophila melanogaster

IF 3.6 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
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Abstract

Background

This study delves into the understudied yet potentially crucial role of paternal zinc deficiency in programming offspring metabolic outcomes. By examining paternal zinc deficiency, we aim to shed light on a previously unexplored avenue with the potential to significantly impact future generations. We investigated the intergenerational effects of paternal zinc deficiency on metabolic parameters in Drosophila melanogaster.

Methods

Dietary zinc deficiency was induced by supplementing the diet of Drosophila F0 male flies with TPEN (N,N,N′,N′-tetrakis(2-pyridylmethyl)ethylenediamine) from egg stage. The F0 male flies after eclosion were mated with age-matched virgin female flies from the control group, resulting in the F1 offspring generation. The F1 generation were then cultured on a standard diet for subsequent metabolic analyses, including assessments of body weight, locomotion, and levels of glucose, trehalose, glycogen, and triglycerides as well as the expression of related genes.

Results

We observed an increase (p<0.05) in body weight in male parent flies and female offspring. Negative geotaxis performance was also impaired in the female offspring. Paternal zinc deficiency exerted distinct effects on carbohydrate and lipid metabolism, as evidenced by a significant (p<0.05) increase in trehalose and triglyceride levels in both parent and offspring. Additionally, zinc deficiency led to alterations in the expression of key metabolic genes, including significant (p<0.05) increase in DILP2 mRNA levels, highlighting potential links to insulin signaling. Also, there were reduced mRNA levels of SOD1 and CAT in both parental and offspring generations. Parental zinc deficiency also increased the expression of Eiger and UPD2 mRNA in the offspring, suggesting potential perturbations in the immune response system.

Conclusion

These findings underscore the link between zinc status and various physiological and molecular processes, revealing both immediate and intergenerational impacts on metabolic, antioxidant, and inflammatory pathways and providing valuable insights on the implications of paternal zinc deficiency in Drosophila melanogaster.

父代缺锌会改变黑腹果蝇后代的代谢状况
背景本研究深入探讨了父亲缺锌对后代代谢结果的潜在关键作用。通过研究父代锌缺乏症,我们旨在揭示一个以前未被探索的、有可能对后代产生重大影响的途径。我们研究了父代锌缺乏对黑腹果蝇代谢参数的代际影响。方法从卵期开始,在果蝇F0雄蝇的食物中补充TPEN(N,N,N′,N′-四(2-吡啶基甲基)乙二胺),诱导锌缺乏。羽化后的 F0 雄蝇与对照组中年龄匹配的处女雌蝇交配,产生 F1 后代。然后用标准食物培养 F1 代,进行后续的代谢分析,包括体重、运动、葡萄糖、三卤糖、糖原和甘油三酯水平的评估以及相关基因的表达。雌性后代的负向地心引力表现也受损。亲代和子代的三卤糖和甘油三酯水平显著增加(p<0.05),这表明父代缺锌对碳水化合物和脂质代谢产生了明显的影响。此外,缺锌还导致关键代谢基因的表达发生变化,包括 DILP2 mRNA 水平的显著增加(p<0.05),突出了与胰岛素信号转导的潜在联系。此外,亲代和子代中 SOD1 和 CAT 的 mRNA 水平都有所降低。这些发现强调了锌状态与各种生理和分子过程之间的联系,揭示了对代谢、抗氧化和炎症通路的直接和代际影响,并对黑腹果蝇父代缺锌的影响提供了有价值的见解。
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来源期刊
CiteScore
6.60
自引率
2.90%
发文量
202
审稿时长
85 days
期刊介绍: The journal provides the reader with a thorough description of theoretical and applied aspects of trace elements in medicine and biology and is devoted to the advancement of scientific knowledge about trace elements and trace element species. Trace elements play essential roles in the maintenance of physiological processes. During the last decades there has been a great deal of scientific investigation about the function and binding of trace elements. The Journal of Trace Elements in Medicine and Biology focuses on the description and dissemination of scientific results concerning the role of trace elements with respect to their mode of action in health and disease and nutritional importance. Progress in the knowledge of the biological role of trace elements depends, however, on advances in trace elements chemistry. Thus the Journal of Trace Elements in Medicine and Biology will include only those papers that base their results on proven analytical methods. Also, we only publish those articles in which the quality assurance regarding the execution of experiments and achievement of results is guaranteed.
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