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首页> 外文期刊>PLoS One >Pushing the envelope: Micro-transmitter effects on small juvenile Chinook salmon ( Oncorhynchus tshawytscha )
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Pushing the envelope: Micro-transmitter effects on small juvenile Chinook salmon ( Oncorhynchus tshawytscha )

机译:推动信封:小少年奇努克三文鱼的微发射器效果(Oncorhynchus tshawytscha)

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Significant effort has been invested in downsizing telemetry transmitters so they can be used to monitor survival and behavior in a variety of fish species and life stages. Commercially available "micro" transmitters in particular have presented researchers with the opportunity to tag very small fish ( 250 mm fork length). We conducted a release/recapture study in tandem with a laboratory study of tag effects on juvenile yearling spring and subyearling fall Chinook salmon ( Oncorhynchus tshawytscha ). Fish surgically implanted with both a micro-acoustic transmitter and passive integrated transponder (PIT) tags were compared with fish injected with only a PIT tag. Detections from both tag types showed that during the downstream migration, fish surgically implanted with both a micro-acoustic transmitter and PIT tag did not survive at the same rate or behave in the same manner as those injected with only a PIT tag. Differences in survival were more pronounced in subyearlings than in yearlings. This was likely due to warmer temperatures experienced by migrating subyearlings, their higher metabolic rate, and their smaller size and consequently higher tag-burden. To identify the mechanisms driving these differences, we necropsied migrating study fish recaptured at locations 225-460 km downstream from the release site. Results revealed that compared with PIT-tagged fish, micro-acoustic-tagged fish had heightened inflammatory responses within the body cavity, delayed healing of surgical incision sites, and poor body-condition. For study fish tagged along with those released to the river but held in the laboratory for observation, outcomes revealed that tag effects were similar in direction, but not as pronounced under artificial conditions.
机译:已经投入了大量努力缩小遥测变送器,因此它们可用于监测各种鱼类和生命阶段的生存和行为。特别是商业上可用的“微型”发射器尤其呈现了研究人员,有机会标记非常小的鱼(& 250 mm叉长)。我们对龙舌兰的实验室研究进行了释放/再捕获研究,并对少年七分春天和次糊钓秋季奇努克鲑鱼(Oncorhynchus Tshawytscha)的实验室研究。将Fish植入微声发射器和被动集成的转发器(PIT)标签与仅用凹坑标签注入的鱼进行比较。来自两种标签类型的检测显示,在下游迁移期间,用微声发射器和凹坑标签手术植入的鱼在相同的速率下不存在,或者以与仅注射凹坑标签的那些方式以相同的方式生存。在亚夜间的生存差异比鸽子更加明显。这可能是由于迁移亚坯的温暖温度,其较高的代谢率以及它们较小的尺寸,因此更高的标签负担。为了确定驱动这些差异的机制,我们尸检迁移研究鱼在释放地点下游的地点填补了225-460公里。结果表明,与坑标记的鱼类相比,微声标记的鱼类在体腔内具有高度炎症反应,延迟手术切口位点,身体状况差。对于学习的鱼类与那些释放到河流的研究,但在实验室持有观察,结果表明标签效应在方向上类似,但在人工条件下没有明显。

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