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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Small-scale thermal responses of hydrothermal vent polynoid polychaetes: Preliminary in situ experiments and methodological development
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Small-scale thermal responses of hydrothermal vent polynoid polychaetes: Preliminary in situ experiments and methodological development

机译:热液喷口多齿型多小动物的小尺度热响应:初步原位实验和方法学发展

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Hydrothermal vent systems represent a unique marine environment where high spatial variability allows the study of habitat selection with respect to small-scale temperature gradients. An autonomous time-lapse camera with a temperature logger array was deployed on four occasions to examine the thermal responses of two vent endemic polynoid polychaete taxa: Branchinotogluma sp. and Lepidonotopodium piscesae. Over a total deployment time of 52 h, we collected over 3,400 frames, in which 1,700 individuals were observed and monitored. Automated image processing and particle tracking routines were used to quickly process the imagery acquired in situ. Kriging interpolation was employed to create temperature maps (2.5-67 ℃) of the field of view within which individual polynoids were tracked over time. Using the individual trajectories, we examined whether organisms selected for a narrower range of temperature than available in the environment and whether past information regarding the temperature encountered influenced subsequent movement decisions. A two state hidden Markov model was applied to predict behaviour based on movement patterns and examine whether areas characterized by different movement patterns differed in temperature. We found polynoids to be active over a wide range of temperatures and areas where different movement patterns were observed did not differ in temperature. Within their tolerated range of temperature, polynoids appear to thermoconform to the highly spatially variable thermal environment. Based on these preliminary deployments, we make suggestions for future studies over broader thermal regimes and longer time scales.
机译:热液喷口系统代表了一个独特的海洋环境,在该环境中高空间变异性允许研究相对于小规模温度梯度的栖息地选择。带有温度记录器阵列的自主延时摄影机被部署了四次,以检查两种通风口地方性多角型多毛poly类群:Branchinotogluma sp。的热响应。和鳞翅目鱼。在52小时的总部署时间内,我们收集了3,400多个框架,其中观察和监视了1,700个人。自动化的图像处理和粒子跟踪例程用于快速处理就地获取的图像。使用克里格插值法创建视场的温度图(2.5-67℃),在该温度图中随时间跟踪单个多义线。通过使用个体轨迹,我们检查了是否选择了比环境温度范围窄的温度范围内的生物,以及过去遇到的有关温度的信息是否影响了后续的移动决策。应用了两种状态的隐马尔可夫模型来基于运动模式预测行为,并检查以不同运动模式为特征的区域温度是否不同。我们发现多面体在广泛的温度范围内都具有活性,并且观察到不同运动模式的区域在温度上没有差异。在其容许的温度范围内,多齿型单体似乎热适应空间变化较大的热环境。基于这些初步部署,我们为将来在更宽的热范围和更长的时间范围内的研究提供建议。

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