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首页> 外文期刊>Mammalia: Morphologie, Biologie Systematique des Mammiferes. >A test of Allen's rule in subterranean mammals: The genus Ctenomys (Caviomorpha, Ctenomyidae)
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A test of Allen's rule in subterranean mammals: The genus Ctenomys (Caviomorpha, Ctenomyidae)

机译:在地下哺乳动物中对艾伦法则的检验:兽类属(Caviomorpha,Ctenomyidae)

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摘要

We tested the applicability of Allen ' s rule in 47 species and 32 unnamed forms (populations that are probably good species or undefined taxa within a superspecies or species group) of the South American subterranean Hystricomorph rodents of the genus Ctenomys (tuco-tucos) (Rodentia: Ctenomyidae) by analyzing tail length in relation with head and body length, and body mass. Tail length allometry was analyzed by Reduced Major Axis regression while the possible correlation of relative tail length with temperature, precipitation and evapotranspiration variables was explored through Simultaneous Autoregression to account for spatial autocorrelations. Our results indicate that tuco-tucos do not follow Allen ' s rule but its converse, tail proportion relative to body mass increasing with latitude while body size decreases in the same direction (the trend is similar for tail length relative to head and body length but not statistically significant). Regarding climatic variables, the main predictors of relative tail length were temperature and evapotranspiration variables with trends confirming the positive (non-Allenian) correlation of relative tail length with latitude. We conclude that tuco-tucos, being almost fully subterranean, thermoregulate behaviorally by maintaining constant temperatures within their burrows independent of geographic location. The former confirms previous results that indicated that Ctenomys follows the converse to Bergmann ' s rule. Relative tail length variation would be a result of simple allometric growth.
机译:我们测试了Allen规则在47种物种和32种未命名形式(种群可能是优良物种或在超物种或物种组内的未定义分类群)的南美地名属(tuco-tucos)地下Hystricomorph啮齿类动物中的适用性(tuco-tucos)( Rodentia:Ctenomyidae)通过分析与头,体长和体重有关的尾巴长度。通过减少主轴回归分析了尾巴长度异度法,同时通过同时自回归探索了相对尾巴长度与温度,降水和蒸散量的可能关系,以解决空间自相关性。我们的结果表明,tuco-tucos并不遵循艾伦法则,相反,尾巴相对于体重的比例随纬度增加而身体尺寸沿相同方向减小(尾巴长度相对于头部和身体长度的趋势相似,但是没有统计学意义)。关于气候变量,相对尾巴长度的主要预测因子是温度和蒸散量,趋势证实了相对尾巴长度与纬度呈正(非艾伦)关系。我们得出的结论是,tuco-tucos几乎完全是地下的,通过在其洞穴内保持恒定的温度独立于地理位置来对行为进行温度调节。前者证实了先前的结果,该结果表明宗法遵循了与伯格曼法则相反的规则。尾巴相对长度的变化将是简单的异速生长的结果。

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