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首页> 外文期刊>Journal of Thermal Biology >Metabolic adjustment of Pyrrhulina aff. brevis exposed to different climate change scenarios
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Metabolic adjustment of Pyrrhulina aff. brevis exposed to different climate change scenarios

机译:Pyrrhulina Aff的代谢调整。 Brevis暴露于不同的气候变化情景

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摘要

The increases in CO2 concentrations and, consequently, temperature due to climate change are predicted to intensify. Understanding the physiological responses of Pyrrhulina aff. brevis to the climatic scenarios proposed by the IPCC (2014) for the next 100 years is of fundamental importance to determine its susceptibility. Thus, the present study aimed to evaluate the effects of the predicted climatic scenarios for the year 2100 on the metabolic adjustments of P. aff. brevis . Specifically, the rate of oxygen uptake, electron transport system capacity, glycogen and lactate content and the role of Na+K+-ATPases and H+-ATPase were evaluated. P. aff. brevis individuals were exposed for 15 days to the simulated climatic scenarios in climate scenario rooms, where temperature and CO2 in the air were controlled. Two rooms were used to simulate the climatic scenarios predicted by the IPCC (2014): moderate (RCP 6; 2.5 degrees C and 400 mu atm CO2 above current levels) and extreme (RCP 8.5; 4.5 degrees C and 900 mu atm CO2 above current levels), in addition to the "control room" that represents the current scenario. There was an in-crease in the metabolic rate (MO2) in the animals acclimated to the climate change scenarios (RCP 6 and RCP 8.5) compared to the current scenario. These responses showed a typical effect of temperature on energy demand in relation to the increase in temperature and CO2. Our data showed an increase in O-2 consumption (MO2), lactate levels and H+-ATPase activity of the animals acclimated to the moderate and extreme climate change scenarios. Such adjustments presented a clear metabolic imbalance, an alteration that may imply challenges for survival, growth, distribution and reproduction in the face of the expected environmental changes for the year 2100.
机译:预计CO2浓度的增加和由于气候变化引起的温度会加剧。了解Pyrrhulina Aff的生理反应。对IPCC(2014年)提出的气候情景,未来100年的气候情景是决定其易感性的根本重要性。因此,本研究旨在评估预测气候情景对第2100款对P. AFF的代谢调整的影响。 brevis。具体地,评价氧吸收,电子传输系统容量,糖原和乳酸含量的速率以及Na + k + -AtPase和H + -ATP酶的作用。 P. AFF。 Brevis个人在气候情景室中的模拟气候情景暴露15天,控制空气中的温度和CO2。两个房间用于模拟IPCC(2014)预测的气候情景:中等(RCP 6; 2.5摄氏度和400亩ATM CO2上方电流水平)和极端(RCP 8.5; 4.5°C和900 MU ATM CO2上方的电流除了代表当前情景的“控制室”之外,水平)。与目前的情景相比,动物的代谢率(MO2)中的代谢率(MO2)递增于气候变化场景(RCP 6和RCP 8.5)中。这些反应表明,温度对温度和CO2增加的能量需求的典型效果。我们的数据显示出o-2消耗量(mo2),乳酸水平和动物的乳酸水平和h + -atpase活性,其适应于中等和极端气候变化情景。此类调整呈现出明确的代谢不平衡,这是可能暗示在2100年预期环境变化面前存活,生长,分配和繁殖的挑战的改变。

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