活性氧胁迫下动物的寿命和全球变暖导致的疾病易感性。

B. Paital, Sumana Kumari Panda, A. Hati, B. Mohanty, Manoj Kumar Mohapatra, Shyama Kanungo, G. Chainy
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引用次数: 67

摘要

据预测,未来几十年,全球大气中的二氧化碳浓度将增加一倍左右。其中最重要的原因之一是大气中二氧化碳含量的增加,预计届时全球平均气温将上升1.4 ~ 5.8摄氏度。一项来自128个国家的调查推测,全球变暖主要是由于大气中二氧化碳水平的增加,而这主要是由人为活动产生的。动物暴露在高温环境中,通常伴随着细胞中某些生化途径的不必要加速。其中一个例子是活性氧(ROS)的生成增加,随后ROS对脂质、蛋白质和核酸的氧化增加。生物分子氧化的增加导致氧化应激(OS)状态。最后,体温升高引起动物生理机能的异常。研究发现,动物暴露于栖息地温度升高会促进动物的新陈代谢,新陈代谢与ROS和OS水平之间存在非常强的正相关关系。在动物中,连续诱导OS与生存能力和寿命负相关,与衰老正相关。因此,可以预测,由于全球变暖,动物持续暴露于栖息地温度的急剧或逐渐上升可能导致OS,降低动物的生存能力和寿命,特别是变温动物。一般来说,代谢和温度之间存在正相关关系,尤其是在高温下改变氧气消耗,也可能增加恒温动物发生缺氧的风险。全球变暖对动物寿命的影响是不可忽视的,因为OS导致蛋白质错误折叠和疾病易感性的风险增加。因此,了解全球变暖对动物寿命的生理影响将成为本世纪生物学家面临的重大挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Longevity of animals under reactive oxygen species stress and disease susceptibility due to global warming.
The world is projected to experience an approximate doubling of atmospheric CO2 concentration in the next decades. Rise in atmospheric CO2 level as one of the most important reasons is expected to contribute to raise the mean global temperature 1.4 °C-5.8 °C by that time. A survey from 128 countries speculates that global warming is primarily due to increase in atmospheric CO2 level that is produced mainly by anthropogenic activities. Exposure of animals to high environmental temperatures is mostly accompanied by unwanted acceleration of certain biochemical pathways in their cells. One of such examples is augmentation in generation of reactive oxygen species (ROS) and subsequent increase in oxidation of lipids, proteins and nucleic acids by ROS. Increase in oxidation of biomolecules leads to a state called as oxidative stress (OS). Finally, the increase in OS condition induces abnormality in physiology of animals under elevated temperature. Exposure of animals to rise in habitat temperature is found to boost the metabolism of animals and a very strong and positive correlation exists between metabolism and levels of ROS and OS. Continuous induction of OS is negatively correlated with survivability and longevity and positively correlated with ageing in animals. Thus, it can be predicted that continuous exposure of animals to acute or gradual rise in habitat temperature due to global warming may induce OS, reduced survivability and longevity in animals in general and poikilotherms in particular. A positive correlation between metabolism and temperature in general and altered O2 consumption at elevated temperature in particular could also increase the risk of experiencing OS in homeotherms. Effects of global warming on longevity of animals through increased risk of protein misfolding and disease susceptibility due to OS as the cause or effects or both also cannot be ignored. Therefore, understanding the physiological impacts of global warming in relation to longevity of animals will become very crucial challenge to biologists of the present millennium.
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