Laboratory of Fish Ecophysiology, Department of Fisheries Management, Bangladesh Agricultural University, Mymensingh 2202, Bangladesh.
Department of Fisheries Technology and Quality Control, Faculty of Fisheries, Sylhet Agricultural University, Sylhet 3100, Bangladesh.
Sci Total Environ. 2022 Oct 15;843:156910. doi: 10.1016/j.scitotenv.2022.156910. Epub 2022 Jun 24.
Global climate change due to anthropogenic activities affects the dynamics of aquatic communities by altering the adaptive capacities of their inhabitants. Analysis of blood provides valuable insights in the form of a comprehensive representation of the physiological and functional status of fish under various environmental and treatment conditions. This review synthesizes currently available information about blood biomarkers used in climate change induced stress responses in fish. Alterations in informative blood-based indicators are used to monitor the physiological fitness of individual fishes or entire populations. Specific characteristics of fish blood, such as serum and plasma metabolites, cell composition, cellular abnormalities, cellular and antioxidant enzymes necessitate adapted protocols, as well as careful attention to experimental designs and meticulous interpretation of patterns of data. Moreover, the sampling technique, transportation, type of culture system, acclimation procedure, and water quality must all be considered for valid interpretation of hemato-biochemical parameters. Besides, blood collection, handling, and storage time of blood samples can all have significant impacts on the results of a hematological analysis, so it is optimal to perform hemato-biochemical evaluations immediately after blood collection because long-term storage can alter the results of the analyses, at least in part as a result of storage-related degenerative changes that may occur. However, the scarcity of high-throughput sophisticated approaches makes fish blood examination studies promising for climate-driven stress responses in fish.
由于人为活动导致的全球气候变化通过改变其居民的适应能力来影响水生群落的动态。血液分析以综合的方式提供了有价值的见解,反映了鱼类在各种环境和处理条件下的生理和功能状态。 本综述综合了目前关于鱼类在气候变化引起的应激反应中使用的血液生物标志物的信息。血液中信息丰富的指标的变化可用于监测个体鱼类或整个种群的生理适应性。鱼类血液的特定特征,如血清和血浆代谢物、细胞组成、细胞异常、细胞和抗氧化酶,需要适应的方案,以及仔细注意实验设计和对数据模式的细致解释。此外,必须考虑采样技术、运输、培养系统类型、适应程序和水质,以正确解释血液生化参数。 此外,血液样本的采集、处理和储存时间都会对血液分析结果产生重大影响,因此,在采集血液后立即进行血液生化评估是最佳的选择,因为长期储存至少部分会由于可能发生的与储存相关的退行性变化而改变分析结果。 然而,高通量复杂方法的缺乏使得鱼类血液检查研究成为研究鱼类对气候驱动的应激反应的有希望的方法。