Abozaid Amira, Tsang Benjamin, Gerlai Robert
Department of Cell & System Biology, University of Toronto.
Department of Psychology, University of Toronto Mississauga.
Physiol Behav. 2020 Dec 1;227:113169. doi: 10.1016/j.physbeh.2020.113169. Epub 2020 Sep 10.
The zebrafish has become increasingly utilized in behavioral neuroscience, psychopharmacology, and behavior genetics research. However, little attention has been paid to the potential effects of environmental conditions fish are exposed to before and during behavioral testing. One such important factor is temperature, more specifically, the difference in temperature between holding and test tanks. In the current study, we bred and raised zebrafish of the AB strain in 28 °C water for 7 days until they were free swimming. On the 7th day we placed each experimental subject singly into the testing well with water set to 24 °C, 28 °C or 30 °C for 15 min and recorded the behavior of the subjects. We found significant and behavior-specific idiosyncratic effects of the employed temperature changes. For example, lowering the temperature decreased speed, but increasing the temperature did not alter it. Increased temperature reduced duration of immobility and reduced absolute turn angle, but lowered temperature did not alter these behaviors. While lowered temperature, and to a lesser degree also increased temperature, reduced intra-individual temporal variance of absolute turn angle. Furthermore, we found no change in thigmotaxis and frequency of immobility by either temperature change. Our results demonstrate the importance of temperature in behavioral studies with zebrafish and suggest that equating water temperature between holding and testing tanks is required to enhance reproducibility and replicability of results with this species.
斑马鱼在行为神经科学、精神药理学和行为遗传学研究中的应用越来越广泛。然而,在行为测试之前和期间,鱼类所接触的环境条件的潜在影响却很少受到关注。其中一个重要因素就是温度,更具体地说,是饲养水箱和测试水箱之间的温度差异。在本研究中,我们将AB品系的斑马鱼在28°C的水中饲养7天,直到它们能够自由游动。在第7天,我们将每个实验对象单独放入测试池中,池中水温设置为24°C、28°C或30°C,持续15分钟,并记录实验对象的行为。我们发现所采用的温度变化具有显著的、特定行为的独特影响。例如,降低温度会降低速度,但升高温度则不会改变速度。升高温度会缩短不动时间并减小绝对转向角度,但降低温度不会改变这些行为。虽然降低温度,以及在较小程度上升高温度,都会降低绝对转向角度的个体内时间方差。此外,我们发现温度变化对趋触性和不动频率没有影响。我们的结果证明了温度在斑马鱼行为研究中的重要性,并表明为了提高该物种研究结果的可重复性和可复制性,需要使饲养水箱和测试水箱的水温相等。