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首页> 外文期刊>Aquaculture >Effects of aquaculture production noise on hearing, growth, and disease resistance of rainbow trout Oncorhynchus mykiss
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Effects of aquaculture production noise on hearing, growth, and disease resistance of rainbow trout Oncorhynchus mykiss

机译:水产养殖生产噪声对虹鳟Onkihynchus mykiss听力,生长和抗病性的影响

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Intensive aquaculture production often utilizes equipment (e.g., aerators, air and water pumps, harvesters, blowers, filtration systems, and maintenance machinery) that increases noise levels in fish culture tanks. Consequently, chronic exposure to elevated noise levels in tanks could negatively impact cultured species. Possible effects include impairment of the auditory system, increased stress, and reduced growth rates. The objective of this study was to evaluate the long-term effects of sound exposure on the hearing sensitivity, growth, and survival of cultured rainbow trout (Oncorhynchus mykiss). Two cohorts of rainbow trout were cultured for 8 months in replicated tanks consisting of three sound treatments: 115, 130, or 150 decibels referenced at 1 micropascal (dB re 1 oPa root mean square [RMS]) levels. Auditory evoked potential (AEP) recordings revealed no significant differences in hearing thresholds resulting from exposure to increased ambient sound levels. Although there was no evident noise-induced hearing loss, there were significant differences in hearing thresholds between the two fish cohorts examined. No statistical effect of sound treatment was found for growth rate and mortality within each fish cohort. There was no significant difference in mortality between sound treatments when fish were exposed to the pathogen Yersinia ruckeri, but there was significantly different mortality between cohorts. This study indicated that rainbow trout hearing sensitivity, growth, survival, stress, and disease susceptibility were not negatively impacted by noise levels common to recirculating aquaculture systems. These findings should not be generalized to all cultured fish species, however, because many species, including catfish and cyprinids, have much greater hearing sensitivity than rainbow trout and could be affected differently by noise.
机译:集约化养殖生产通常利用增加鱼养殖箱噪声水平的设备(例如,曝气机,空气和水泵,收割机,鼓风机,过滤系统和维护机械)。因此,长期暴露于水箱中较高的噪音水平可能会对养殖物种产生负面影响。可能的影响包括听觉系统受损,压力增加和增长率降低。这项研究的目的是评估声音暴露对养殖虹鳟鱼(Oncorhynchus mykiss)的听力敏感性,生长和存活的长期影响。在一组由三种声音处理组成的复制罐中,将两个虹鳟鱼群培养8个月:以1微帕(dB re 1 oPa均方根[RMS])为基准,分别进行115、130或150分贝的处理。听觉诱发电位(AEP)录音显示,暴露于增加的环境声级不会导致听力阈值的显着差异。尽管没有明显的噪声引起的听力丧失,但是在所检查的两个鱼群之间,听力阈值存在显着差异。在每个鱼群中,未发现声音处理对生长速率和死亡率的统计影响。当鱼暴露于病原性耶尔森氏菌时,声音处理之间的死亡率没有显着差异,但不同群体之间的死亡率却存在显着差异。这项研究表明,虹鳟的听力敏感性,生长,生存,压力和疾病易感性不受循环水产养殖系统常见噪声水平的负面影响。但是,这些发现不应该推广到所有养殖鱼类,因为许多物种,包括cat鱼和鲤科鱼类,比虹鳟鱼具有更高的听力敏感性,并且可能受到噪声的不同影响。

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