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衰老方式不同:大型溞雌雄个体衰老速度存在性别差异。

Ageing differently: Sex-dependent ageing rates in Daphnia magna.

机构信息

School of Biosciences, University of Birmingham, Birmingham B15 2TT, UK.

MRC-ARUK Centre for Musculoskeletal Ageing Research, Institute of Inflammation and Ageing, University of Birmingham, Birmingham B15 2TT, UK; NIHR Surgical Reconstruction and Microbiology Research Centre, University Hospital Birmingham, Birmingham B15 2WB, UK.

出版信息

Exp Gerontol. 2019 Jul 1;121:33-45. doi: 10.1016/j.exger.2019.03.008. Epub 2019 Mar 25.

Abstract

Ageing is defined as the gradual decline of normal physiological functions in a time-dependent manner. Significant progress has been made in characterising the regulatory processes involved in the mechanisms of ageing which would have been hindered without the use of model organisms. Use of alternative model organisms greatly diversifies our understanding of different factors underpinning the ageing process and the potential translation for human application. Unique characteristics make Daphnia an attractive model organism for research into mechanisms underlying ageing, such as transparent body, short generation time, well-characterised methylome, regenerative capabilities and available naturally occurring ecotypes. Most interestingly, genetically identical female and male Daphnia have evolved different average lifespans, providing a unique opportunity for understanding the underlying mechanisms of ageing and regulation of lifespan. Investigating sex differences in longevity could provide insight into principal mechanisms of ageing and lifespan regulation. In this study we provide evidence in support of establishing genetically identical female and male Daphnia as unique and valuable resources for research into mechanisms of ageing and begin to delineate the mechanisms involved in sex differences in lifespan. We identify significant differences between genders in physiological markers such as lifespan, growth rate, heart rate and swimming speed in addition to molecular markers such as lipid peroxidation product accumulation, thiol content decline and age-dependent decline in DNA damage repair efficiency. Overall, our data indicates that investigating sex differences in longevity in the clonal organism Daphnia under controlled laboratory conditions can provide insight into principal mechanisms of ageing and lifespan regulation.

摘要

衰老是指正常生理功能随时间的逐渐下降。如果没有模型生物的使用,对衰老机制涉及的调节过程的特征描述将受到阻碍,而在这方面已经取得了重大进展。使用替代模型生物极大地拓宽了我们对不同因素的理解,这些因素是衰老过程的基础,也为人类应用提供了潜在的转化。独特的特点使水蚤成为研究衰老机制的有吸引力的模式生物,如透明的身体、短的世代时间、特征明确的甲基组、再生能力和可用的自然发生的生态型。最有趣的是,遗传上相同的雌性和雄性水蚤已经进化出不同的平均寿命,为了解衰老的潜在机制和寿命的调节提供了独特的机会。研究长寿中的性别差异可以深入了解衰老的主要机制和寿命调节。在这项研究中,我们提供了证据支持建立遗传上相同的雌性和雄性水蚤作为研究衰老机制的独特而有价值的资源,并开始描绘寿命性别差异中涉及的机制。我们发现,在生理标记物(如寿命、生长速度、心率和游泳速度)以及分子标记物(如脂质过氧化产物积累、巯基含量下降和年龄相关的 DNA 损伤修复效率下降)方面,性别之间存在显著差异。总的来说,我们的数据表明,在受控的实验室条件下,研究克隆生物水蚤中的长寿性别差异可以深入了解衰老的主要机制和寿命调节。

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