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首页> 外文期刊>Annual Research & Review in Biology >Modeling the Relationship between Environmental Temperature and Feeding Performance in Florida (USA) Nonnative Fishes, with Implications for Invasive-Species Response to Climate Change
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Modeling the Relationship between Environmental Temperature and Feeding Performance in Florida (USA) Nonnative Fishes, with Implications for Invasive-Species Response to Climate Change

机译:模拟佛罗里达州(美国)外来鱼类的环境温度与摄食性能之间的关系,对入侵物种对气候变化的响应具有影响

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摘要

Aims: To determine the effect of environmental temperature on the feeding kinematics of two Florida (USA) invasive-fish species, pike killifish Belonesox belizanus and Mayan cichlid Cichlasoma urophthalmus , in an attempt to explore the adaptive response of whole-organism performance to climate change. Study Design: Model I (Fixed-Effects Model) Linear Regression Analysis, y-Dependent Variable = Kinematics; x-Independent Variable = Environmental Temperature. Place and Duration of Study: Fish Ecophysiology Laboratory, Department of Biological Sciences, Florida Institute of Technology in May-December, 2011. Methodology: Four each of B. belizanus and C. urophthalmus , collected from invasive populations in Florida were acclimated in 38 liter experimental aquarium, trained, and filmed using high-speed video while eating fish-prey at 20°C, 25°C and 30°C. Four films per invasive-fish species at each temperature were analyzed using MaxTRAQ digitizing software. In each film, three kinematic-excursion (peak gape, peak hyoid depression and cranial elevation at peak gape) and three kinematic-timing (time to peak gape, hyoid depression, and cranial elevation) variables were measured. Each kinematic variable was regressed against temperature to model the relationship between feeding performance and environmental temperature. Results: All experimental fishes behaved normally and fed aggressively in each of the three experimental temperature regimes. It is evident in the feeding kinematics-temperature plots that fish-feeding at each temperature was variable and unpredictable. Out of the 12 regression equations generated to model the relationship between feeding kinematics and environmental temperature, only one (peak gape in C. urophthalmus ) showed a significant slope (Peak Gape = 1.42 + 0.01 Temperature; R2 = 0.22; P 2). Empirical evidence indicates that the feeding performance of invasive B. belizanus and C. urophthalmus is not affected by temperature.
机译:目的:为了确定环境温度对两种佛罗里达(美国)入侵鱼类,派克幼鱼Belonesox belizanus和玛雅丽鱼科鱼ichichlasoma urophthalmus的摄食运动学的影响,以试图探索全生物性能对气候变化的适应性响应。研究设计:模型I(固定效应模型)线性回归分析,y相关变量=运动学; x独立变量=环境温度。研究的地点和持续时间:佛罗里达理工学院生物科学系鱼类生态生理实验室,2011年5月至12月。方法:从佛罗里达州的入侵种群中收集的四个B. belizanus和C. urophthalmus适应于38升实验水族箱,经过训练并使用高速视频拍摄,同时在20°C,25°C和30°C下吃鱼食。使用MaxTRAQ数字化软件分析了每种温度下每种入侵鱼类的四张薄膜。在每张胶片中,测量了三个运动偏移(峰值间隙,峰值舌骨下陷和峰值间隙处的颅骨高程)和三个运动定时(到达峰值间隙的时间,舌骨下陷和颅骨高程)。将每个运动学变量相对于温度进行回归,以模拟进料性能与环境温度之间的关系。结果:在三种实验温度下,所有实验鱼的行为均正常,且摄食积极。从喂食运动学-温度曲线图中可以明显看出,在每个温度下喂鱼都是可变且不可预测的。在为模拟运动学和环境温度之间的关系而生成的12个回归方程中,只有一个(尿眼隐球菌的峰间隙)显示出显着的斜率(峰缺口= 1.42 + 0.01温度; R 2 = 0.22; P 2 )。经验证据表明,侵袭性贝氏疟原虫和尿道角膜梭菌的摄食性能不受温度的影响。

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