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A biologically relevant rapid quantification of physical and biological stress profiles on rocky shores.

机译:对岩石海岸的物理和生物应力分布进行生物学相关的快速量化。

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摘要

Different combinations and intensities of physical (e.g. thermal) and biological (e.g.competition or predation) stress operate on organisms in different locations. Variation in these stresses can occur over small to medium spatial scales (cm to 10s m) in heterogeneous environments such as rocky shores, due to differences in sun and wave exposure, shore topography and/or recruitment. In this study we demonstrate how simple measurements can be taken that represent physical and biological stresses (stress profiles)in a given location. Using a bootstrapped principal component analysis, we identified significantly different stress profiles at four sites separated by only 10s to 100s of metres on the Shek O peninsula in Hong Kong. We then measured response to thermal stress, as determined by detachment temperature, in the limpet Cellana grata (which is known to be a sensitive indicator species to thermal stress) from each location. Significant differences in stress profile between locations were also seen in thermal stress tolerance of limpets from those locations. At locations where the major stresses are likely to be more physical or less biological in nature (e.g. southerly facing aspect or lower density of grazers), the mean detachment temperature was higher, whereas detachment temperature was lower at sites with more biological or less physical stress. This method is, therefore, able to determine biologically meaningful differences in stress profiles over small to medium spatial scales, and demonstrates that localised adaptation (i.e. post planktonic settlement) or acclimation of species may occur in response to these different stress profiles. The technique can be adapted to different environments and smaller or larger spatial scales as long as the stress experienced by the study species is relevant to these scales.
机译:物理(例如热)和生物(例如竞争或掠食)压力的不同组合和强度作用于不同位置的生物。这些应力的变化可能会在异质环境(如多岩石的海岸)中的中小空间尺度(cm至10s m)上发生,这是由于阳光和波浪照射,海岸地形和/或募集的差异。在这项研究中,我们演示了如何进行简单的测量来表示给定位置的物理和生物应力(应力分布)。通过自举主成分分析,我们在香港石澳半岛上仅相距10s至100s米的四个地点发现了明显不同的应力分布。然后,我们测量了每个位置的the壳ana(已知是对热应力敏感的指示物种)对由分离温度确定的热应力的响应。在来自这些位置的帽贝的热应力耐受性中,也可以看到位置之间应力分布的显着差异。在主要应力可能在本质上更具物理性或生物性较低的位置(例如,朝南的侧面或较低的放牧者密度),平均脱离温度较高,而在具有较大生物性或物理应力较小的位置,脱离温度较低。因此,该方法能够确定在中小型空间尺度上应力分布的生物学意义上的差异,并证明响应这些不同的应力分布,物种可能会发生局部适应(即浮游沉积之后)或适应环境。该技术可以适应不同的环境以及更小或更大的空间尺度,只要研究物种所经历的压力与这些尺度有关即可。

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