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Characterizing the effects of temperature on behavioral periodicity in golden apple snails (Pomacea canaliculata)

机译:表征温度对金苹果蜗牛(Pomacea canaliculata)行为周期的影响

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The golden apple snail (Pomacea canaliculata), an invasive freshwater species in Asia, has become a serious agricultural pest. Water temperature is one of the most important environmental factors influencing the survival, growth rate, reproduction and behavior of freshwater snails. For this reason, the behavioral periodicity of golden apple snails was examined at different water temperatures (15 degrees C, 20 degrees C, 25 degrees C, and 30 degrees C). We classified the snails' behaviors into 12 pre-defined categories each minute for 2 days at each temperature. Five dominant behavioral categories (clinging to the side of the aquarium [clinging], clinging with sprawling out its antennae [clinging-NM], crawling on the bottom of the aquarium, crawling on the side of the aquarium and feeding) were selected for further analyses. Spectral analysis and cross-spectral analysis were applied to determine the periodicity of these behaviors. Snails spent less time in moving during photophase than scotophase at all temperatures. Behavioral periodicity was much longer at lower temperatures, for both motion and motionless behaviors except clinging-NM. Detrended correspondence analysis based on periodogram values clearly characterized the differences in behavior at the various temperatures. Behavioral turnover, assessed by cross-spectral analysis, was faster at higher temperatures, and Markov chain analysis supported this result by finding a lower probability of maintaining the current behavior at higher temperatures. (C) 2015 Elsevier B.V. All rights reserved.
机译:金苹果蜗牛(Pomacea canaliculata)是亚洲的一种入侵性淡水物种,已成为一种严重的农业害虫。水温是影响淡水蜗牛生存,生长速度,繁殖和行为的最重要的环境因素之一。因此,在不同的水温(15摄氏度,20摄氏度,25摄氏度和30摄氏度)下检查了金苹果蜗牛的行为周期性。我们将蜗牛的行为在每种温度下每分钟持续12天,分为12个预先定义的类别。选择了五个主要的行为类别(紧贴在水族箱的侧面[紧贴],蔓延其触角的紧贴[抓紧-NM],在水族箱的底部爬行,在水族箱的一侧爬行和喂养)。分析。光谱分析和交叉光谱分析用于确定这些行为的周期性。在所有温度下,蜗牛在光合作用阶段花费的时间都比在光合作用阶段花费的时间少。对于运动和不运动行为,在低温下的行为周期要长得多,除了紧贴NM。基于周期图值的去趋势对应分析清楚地描述了各种温度下的行为差异。通过交叉光谱分析评估的行为转换在较高温度下更快,并且马尔可夫链分析通过发现较低的在较高温度下保持当前行为的可能性来支持这一结果。 (C)2015 Elsevier B.V.保留所有权利。

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