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首页> 外文期刊>Nature reviews Cancer >Morphological differences in a population of Rufous-collared Sparrow (Zonotrichia capensis, Statius Muller, 1776) (Passerine, Emberizidae) at different elevations in the Tropical Andes
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Morphological differences in a population of Rufous-collared Sparrow (Zonotrichia capensis, Statius Muller, 1776) (Passerine, Emberizidae) at different elevations in the Tropical Andes

机译:在热带安德斯在不同凸起的Rufous-Conlared Sparrow(Zonotrichia capensis,Statius Muller,1776)(Passerine,Emberizidae)的形态差异

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摘要

Populations that breed along steep elevation gradients show diverse physiological and morphological changes in response to the different environmental conditions. The latter has been discussed by Bergmann's and Allen's ecogeographic rules about body and appendage sizes and environmental temperature. We compared morphometric measures (mass, bill width, tarsus, wing, and tail length) of a Zonotrichia capensis population in two localities at different elevations with similar latitudes and photoperiods on the western slope of the Colombian Central Andes. We compared a Low Elevation locality (LE) at 1800 m a.s.l. and a High Elevation locality (HE) at 3853 m a.s.l. that have approximate wind speeds of 1.3 m/s and 8.4 m/s, respectively. During 12 months of sampling, we captured 46 adults using mist-nets; 26 in the LE and 20 in the HE. Each individual was sexed using molecular techniques at the Laboratory of Genetics of the Department of Biological Sciences of Universidad de Caldas. Individuals (males + females) from the HE had longer wings and tails than those from the LE (F-1,F-44 = 5.93; P = 0.019). Also, wings of males in the HE were longer than those of females in both localities and tails of males in the HE were longer than those of LE males. Our results did not agree with what was expected according to Allen's and Bergmann's ecogeographic rules. Longer wings and tails increase sustainment, maneuverability, and balance in low atmospheric pressures and strong air currents and these conditions are found at high elevation habitats. Most likely, the longer wings found for HE males allow greater movement during territorial behavior. Further, these differences in morphological traits along elevational gradients could result from micro-evolutionary changes between localities or phenotypic plasticity of individuals exposed to different environmental conditions.
机译:沿着陡峭升高梯度繁殖的种群表现出各种生理和形态学变化,以应对不同的环境条件。 Bergmann和Allen的生成规则有关身体和阑尾尺寸和环境温度的讨论。我们将Zonotrichia capensis群体的形态测量措施(质量,纸币宽度,Tarsus,翼和尾部长度)与哥伦比亚中南部西坡类似纬度和光周期的不同海拔。我们比较了1800米A.L的低海拔地区(LE)。和高海拔地区(他)在3853米A.L.这分别具有1.3 m / s和8.4 m / s的近似风速。在12个月的抽样过程中,我们使用雾网捕获了46名成年人; 26在le和20中。每个人在大学里Caldas的生物科学系的遗传学实验室中使用分子技术进行性行为。来自他的个人(男性+女性)的翅膀和尾部比来自LE的那些(F-1,F-44 = 5.93; P = 0.019)。此外,他的翅膀在他身上的翅膀比他的地方和男性的尾巴的翅膀长于他的雄性比Le Males。我们的结果与艾伦和博格曼的生态地规则不同意预期的内容。较长的翅膀和尾部增加了持续性,机动性和低大气压和强风电流的平衡,并且在高海拔栖息地发现这些条件。最有可能的是,针对他男性的较长的翅膀在领土行为中允许更大的运动。此外,沿着高度梯度的形态特征的这些差异可能是由于暴露于不同环境条件的个体的个体的胞间或表型可塑性之间的微进化变化。

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