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首页> 外文期刊>The Journal of Experimental Biology >Thermal history and gape of individual Mytilus californianus correlate with oxidative damage and thermoprotective osmolytes
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Thermal history and gape of individual Mytilus californianus correlate with oxidative damage and thermoprotective osmolytes

机译:热历史和张大菌根加利福尼亚州的Gape与氧化损伤和热防护性渗透物相关

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The ability of animals to cope with environmental stress depends - in part - on past experience, yet knowledge of the factors influencing an individual's physiology in nature remains underdeveloped. We used an individual monitoring system to record body temperature and valve gaping behavior of rocky intertidal zone mussels (Mytilus califomianus). Thirty individuals were selected from two mussel beds (wave-exposed and wave-protected) that differ in thermal regime. Instrumented mussels were deployed at two intertidal heights (near the lower and upper edges of the mussel zone) and in a continuously submerged tidepool. Following a 23-day monitoring period, measures of oxidative damage to DNA and lipids, antioxidant capacities (catalase activity and peroxyl radical scavenging) and tissue contents of organic osmolytes were obtained from gill tissue of each individual. Univariate and multivariate analyses indicated that inter-individual variation in cumulative thermal stress is a predominant driver of physiological variation. Thermal history over the outplant period was positively correlated with oxidative DNA damage. Thermal history was also positively correlated with tissue contents of taurine, a thermoprotectant osmolyte, and with activity of the antioxidant enzyme catalase. Origin site differences, possibly indicative of developmental plasticity, were only significant for catalase activity. Gaping behavior was positively correlated with tissue contents of two osmolytes. Overall, these results are some of the first to clearly demonstrate relationships between inter-individual variation in recent experience in the field and inter-individual physiological variation, in this case within mussel beds. Such micro-scale, environmentally mediated physiological differences should be considered in attempts to forecast biological responses to a changing environment.
机译:动物应对环境压力的能力取决于过去的经验,但对影响个人生理学的因素的知识仍未发育。我们利用一个单独的监测系统来记录岩石潮间区贻贝(Mytilus Califomianus)的体温和瓣膜间隙行为。三十个体选自两个贻贝床(波暴露和波浪保护),在热状态下不同。仪器贻贝在两个潮间高度(近贻贝区的下边缘附近)和连续淹没的潮汐。在23天的监测期之后,从每个个体的鳃组织获得抗氧化能力(过氧化酶活性和过氧基团清除)和有机渗透物的组织含量的氧化损伤的措施。单变量和多变量分析表明,累积热应力的间间变化是生理变异的主要驱动因素。在通外期间的热历史与氧化DNA损伤呈正相关。热历史也与牛磺酸的组织含量呈正相关,热保护剂Osmolyte和抗氧化酶过缩酶的活性。原产地部位差异,可能表明发育可塑性仅为过氧化氢酶活性而显着。间隙行为与两种渗透物的组织含量正相关。总体而言,这些结果是第一个清楚地证明在贻贝床内在这种情况下最近的近期经验和各种生理变异之间的个人变化之间的关系。在尝试预测对变化环境的生物反应时,应考虑这种微观级别,环境介导的生理差异。

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