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The effect of size on the response of Pacific oysters (Crassostrea gigas) to changes in water temperature and air exposure

机译:大小对太平洋牡蛎(Crassostrea gigas)对水温和空气暴露变化的响应的影响

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To further improve the technology used in Pacific oyster farming, information is required on the response of different sized and aged oysters to various environmental changes. In this study a neutral red retention (NRR) assay was used to investigate the effects of size and age on the response of Pacific oysters to changes in water temperature and their recovery after exposure to different air temperatures. Results from moving oysters directly between water temperatures of 5 degree C and 15 degree C, 10 degree C and 20 degree C and 15 degree C and 25 degree C demonstrated that different water temperature change affect the lysosomal membrane integrity differently. The NRR times of large and small oysters transferred directly between 10 degree C and 20 degree C initially decreased significantly, and then increased to levels corresponding to the new temperature. In addition, NRR times in large oysters responded at a significantly slower rate than small oysters when they were transferred from 5 degree C and 25 degree C to 15 degree C water and between 10 degree C and 20 degree C water. Results from the air exposure experiments showed that, after exposure to air temperatures of 5 degree C, 15 degree C or 25 degree C, the lysosomal membrane integrity of large oysters recovered at a slower rate in 15 degree C water compared to small oysters. It therefore appears necessary to develop different management strategies for large (old) and small (young) oysters. Results from this and previous research also indicate that the NRR assay could potentially be used to develop a model to monitor and predict the performance of oysters on farms.
机译:为了进一步改进太平洋牡蛎养殖中使用的技术,需要有关不同大小和年龄的牡蛎对各种环境变化的响应的信息。在这项研究中,使用中性红保留(NRR)分析来研究大小和年龄对太平洋牡蛎对水温变化的响应及其在暴露于不同空气温度后其恢复的影响。直接在5摄氏度和15摄氏度,10摄氏度和20摄氏度以及15摄氏度和25摄氏度的水温之间移动牡蛎的结果表明,不同的水温变化对溶酶体膜完整性的影响不同。直接在10摄氏度和20摄氏度之间转移的大小牡蛎的NRR时间最初显着减少,然后增加到与新温度相对应的水平。此外,当将大牡蛎从5摄氏度和25摄氏度的水转移到15摄氏度的水以及10摄氏度和20摄氏度的水之间时,NRR时间的响应速度明显比小牡蛎慢得多。暴露于空气的实验结果表明,暴露于5°C,15°C或25°C的空气温度后,与小牡蛎相比,大牡蛎的溶酶体膜完整性在15摄氏度的水中恢复得较慢。因此,有必要为大(老)牡蛎和小(年轻)牡蛎制定不同的管理策略。这项研究和先前研究的结果还表明,NRR分析可能会被用于开发模型来监控和预测养殖场中牡蛎的表现。

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