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太阳辐射和潮汐暴露对暴露在空气中的贻贝的氧化应激和谷胱甘肽合成的作用。

The role of solar radiation and tidal emersion on oxidative stress and glutathione synthesis in mussels exposed to air.

机构信息

Department of Cell Biology, University of Brasilia, Brasilia, Brazil.

Faculty of Medicine, University of Brasilia, Brasilia, Brazil.

出版信息

PeerJ. 2023 May 11;11:e15345. doi: 10.7717/peerj.15345. eCollection 2023.

Abstract

Preparation for oxidative stress (POS) is a widespread adaptive response to harsh environmental conditions, whose hallmark is the upregulation of antioxidants. In contrast to controlled laboratory settings, animals are exposed to multiple abiotic stressors under natural field conditions. Still, the interplay between different environmental factors in modulating redox metabolism in natural settings remains largely unexplored. Here, we aim to shed light on this topic by assessing changes in redox metabolism in the mussel naturally exposed to a tidal cycle. We compared the redox biochemical response of mussels under six different natural conditions in the field along two consecutive days. These conditions differ in terms of chronology, immersion/emersion, and solar radiation, but not in terms of temperature. Animals were collected after being exposed to air early morning (7:30), immersed during late morning and afternoon (8:45-15:30), and then exposed to air again late afternoon towards evening (17:45-21:25), in two days. Whole body homogenates were used to measure the activity of antioxidant (catalase, glutathione transferase and glutathione reductase) and metabolic (glucose 6-phosphate dehydrogenase, malate dehydrogenase, isocitrate dehydrogenase and pyruvate kinase) enzymes, reduced (GSH) and disulfide (GSSG) glutathione levels, and oxidative stress markers (protein carbonyl and thiobarbituric acid reactive substances). Air and water temperature remained stable between 22.5 °C and 26 °C during both days. Global solar radiation (GSR) greatly differed between days, with a cumulative GSR of 15,381 kJ/m for day 1 and 5,489 kJ/m for day 2, whose peaks were 2,240 kJ/m/h at 14:00 on day 1 and 952 kJ/m/h at 12:00 on day 2. Compared with animals underwater, emersion during early morning did not elicit any alteration in redox biomarkers in both days. Air exposure for 4 h in the late afternoon towards evening caused oxidative damage to proteins and lipids and elicited GSH synthesis in animals that had been previously exposed to high GSR during the day. In the following day, when GSR was much lower, exposure to air under the same conditions (duration, time, and temperature) had no effect on any redox biomarker. These findings suggest that air exposure under low-intensity solar radiation is not sufficient to trigger POS in in its natural habitat. Thus, natural UV radiation is possibly a key environmental factor that combined to air exposure induces the POS-response to the stressful event of tidal variation in this coastal species.

摘要

氧化应激(POS)的准备是动物对恶劣环境条件的广泛适应性反应,其标志是抗氧化剂的上调。与受控的实验室环境不同,动物在自然野外条件下会暴露于多种非生物胁迫因素下。然而,在自然环境中,不同环境因素之间的相互作用如何调节氧化还原代谢仍在很大程度上尚未得到探索。在这里,我们通过评估在潮汐周期中自然暴露的贻贝的氧化还原代谢变化来阐明这个主题。我们在两天内比较了贻贝在野外的六种不同自然条件下的氧化还原生化反应。这些条件在时间、浸没时间/出水时间和太阳辐射方面有所不同,但在温度方面没有差异。动物在清晨(7:30)暴露于空气中后被收集,然后在上午晚些时候和下午(8:45-15:30)被浸入水中,然后在傍晚(17:45-21:25)再次暴露于空气中,在两天内进行。使用全身匀浆来测量抗氧化剂(过氧化氢酶、谷胱甘肽转移酶和谷胱甘肽还原酶)和代谢酶(葡萄糖-6-磷酸脱氢酶、苹果酸脱氢酶、异柠檬酸脱氢酶和丙酮酸激酶)、还原型(GSH)和二硫键型(GSSG)谷胱甘肽水平以及氧化应激标志物(蛋白质羰基和硫代巴比妥酸反应物质)的活性。在两天中,空气和水温都稳定在 22.5°C 和 26°C 之间。全球太阳辐射(GSR)在两天之间有很大差异,第 1 天的累积 GSR 为 15,381 kJ/m,第 2 天为 5,489 kJ/m,第 1 天 14:00 的峰值为 2,240 kJ/m/h,第 2 天 12:00 的峰值为 952 kJ/m/h。与水下动物相比,第 1 天和第 2 天清晨的出水并没有引起任何氧化还原生物标志物的改变。下午晚些时候的 4 小时空气暴露导致蛋白质和脂质发生氧化损伤,并在白天经历高 GSR 暴露后引发 GSH 的合成。在接下来的一天,当 GSR 低得多时,在相同条件(持续时间、时间和温度)下暴露于空气中对任何氧化还原生物标志物都没有影响。这些发现表明,在低强度太阳辐射下的空气暴露不足以在其自然栖息地中引发贻贝的 POS。因此,自然紫外线辐射可能是一种关键的环境因素,它与空气暴露相结合,诱导了这种沿海物种对潮汐变化这种应激事件的 POS 反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dc8/10183164/0098c386ce3a/peerj-11-15345-g001.jpg

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