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The role of temperature and flow on the migration of Chinook salmon (Oncorhynchus tshawytscha) smolts.

机译:温度和流量对奇努克鲑(Oncorhynchus tshawytscha)软体动物迁移的作用。

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摘要

For salmonids, the smolting process includes substantial morphological, physiological and behavioral changes all of which must coincide to ensure the greatest chance of survival in the marine environment. Therefore, understanding how environmental parameters influence the onset, duration, and termination of smolting can have substantial management implications. I used historical data and a controlled laboratory experiment to investigate the role of both temperature and flow on the timing of migration in Chinook salmon (Oncorhynchus tshawytscha) smolts. An Information Theoretic Model Comparison (ITMC) technique was used to correlate 13 years of historical smolt migration data from the Nechako River in central British Columbia, Canada with data on temperature and discharge from the same period. A combination of temperature experience (accumulated thermal units ATU) and flow discharge were best able to describe the observed migration patterns. In addition, ATU consistently performed better than daily mean temperature suggesting that temperature experience plays a larger role in the migration process than a temperature threshold. In a laboratory experiment, temperature manipulation affected growth and development of physiological smolt characteristics. In addition, fish in tanks with increasing temperature showed earlier movement than those in constant temperature tanks. Flow velocity was not found to have an effect on physiological development of smolt characteristics and did not appear to affect timing of migration in the absence of increasing temperature. However, velocity did influence the pattern of migration, since the presence of a strong, directional flow resulted in a well defined migration event with a clear increase, peak and decrease in movement regardless of the temperature manipulation. Alternatively, fish in experimental tanks without increased flow showed either pulses of movement or no clearly defined movement period. A model similar to the approach for the historical data was used to assess the mo
机译:对于鲑科鱼类,成鱼过程包括大量的形态,生理和行为变化,所有这些变化必须重合,以确保在海洋环境中生存的最大机会。因此,了解环境参数如何影响下火的开始,持续时间和终止可能会对管理产生重大影响。我使用历史数据和受控的实验室实验来研究温度和流量对奇努克鲑(Oncorhynchus tshawytscha)软体动物迁移时间的影响。信息理论模型比较(ITMC)技术用于将加拿大不列颠哥伦比亚省中部Nechako河的13年历史臭鼬迁移数据与同期温度和流量数据进行关联。温度经验(累积的热量单位ATU)和流量排放的组合最能描述观察到的迁移模式。此外,ATU的性能始终优于每日平均温度,这表明温度经验在迁移过程中的作用比温度阈值更大。在实验室实验中,温度操纵影响了生理性软体动物特征的生长和发育。此外,温度升高的鱼缸中的鱼比恒温鱼缸中的鱼运动更早。在没有升高温度的情况下,没有发现流速对软体动物特征的生理发育有影响,并且似乎没有影响迁移的时间。但是,速度确实会影响迁移模式,因为强烈的定向流的存在导致了定义明确的迁移事件,无论温度如何操纵,运动都明显增加,达到峰值和下降。另外,没有增加流量的实验水箱中的鱼显示运动脉动或没有明确定义的运动周期。使用类似于历史数据方法的模型来评估

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