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首页> 外文期刊>Frontiers in Marine Science >Dolphin Prey Availability and Calorific Value in an Estuarine and Coastal Environment
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Dolphin Prey Availability and Calorific Value in an Estuarine and Coastal Environment

机译:河口和沿海环境中海豚猎物的可利用性和热值

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Prey density has long been associated with prey profitability for a predator, but prey quality has seldom been quantified. We assessed the potential prey availability and calorific value for Indo-Pacific bottlenose dolphins (Tursiops aduncus) in an estuarine and coastal environment of temperate south-western Australia. Fish were sampled using three methods across three regions (Estuary, Bay and Ocean) in the study area using a 21.5 m beach seine, multi-mesh gillnet, and fish traps. The total biomass and numbers of all species and those of potential dolphin prey were determined in austral summers and winters between 2007 and 2010. The calorific value of 19 species was determined by bomb calorimetry. The aim of the research was to evaluate the significance of prey availability in explaining the higher abundance of dolphins in the region in summer versus winter across years. A higher abundance of prey was captured in the summer (mean of two summer seasons ± 1 SE = 12,080 ± 160) than in the winter (mean of two winter seasons = 7,358 ± 343) using the same number of gear sets in each season and year. In contrast, a higher biomass of potential dolphin prey, of higher energy content, were captured during winters than summers, when fewer dolphins are present in the area. Variability was significant between season and region for the gillnet (p < 0.01), and seine (p < 0.01). The interaction of season and region was also significant for the calorific content captured by the traps (p < 0.03), and between the seasons for biomass of the trap catch (p < 0.02). The dolphin mother and calf pairs that remain in the Estuary and Bay year round may be sustained by the higher quality, and generally larger, if lesser abundant, prey in the winter months. Furthermore, factors such as predator avoidance and mating opportunities are likely to influence patterns of local dolphin abundance. This study provides insights into the complex dynamics of predator – prey interactions, and highlights the importance for a better understanding of prey abundance, distribution and calorific content in explaining the spatial ecology of large apex predators.
机译:长期以来,猎物密度与捕食者的猎物获利能力有关,但很少量化猎物质量。我们评估了澳大利亚西南温带河口和沿海环境中印度太平洋太平洋宽吻海豚(Tursiops aduncus)的潜在猎物可用性和热值。在研究区域的三个区域(海口,海湾和海洋)中使用三种方法,使用21.5 m的沙滩围网,多网刺网和鱼陷阱对鱼进行了采样。在2007年至2010年的夏季和冬季,确定了所有物种的总生物量和数量以及潜在的海豚猎物。通过炸弹量热法确定了19种物种的热值。这项研究的目的是评估猎物可得性的重要性,以解释该地区夏季与冬季相比海豚的丰度更高。在每个季节使用相同数量的齿轮组,在夏季(两个夏季的平均值±1 SE = 12,080±160)中捕获的猎物比冬季(两个冬季的平均值= 7,358±343)更高。年。相比之下,冬季捕获的海豚猎物生物量较高,能量含量较高,而夏季则少于夏季,当时该地区的海豚数量较少。刺网(p <0.01)和围网(p <0.01)在季节和区域之间的差异很大。捕集器捕获的热量含量与季节和区域之间的相互作用也很显着(p <0.03),捕集器捕集的生物量在季节之间也是如此(p <0.02)。全年仍保留在河口和海湾的海豚母和小牛对可能会维持较高的质量,并且冬季通常会捕食更大(如果数量较少的话)的猎物。此外,诸如避免捕食和交配机会等因素可能会影响当地海豚数量的分布。这项研究提供了关于捕食者与猎物相互作用的复杂动力学的见解,并强调了更好地理解猎物丰富度,分布和热含量的重要性,这对于解释大型先天性捕食者的空间生态至关重要。

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