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The role of climate factors in geographic variation in body mass and wing length in a passerine bird

机译:气候因素在雀形目鸟类体重和翼长地理变异中的作用

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摘要

Background: Geographic variation in body size is assumed to reflect adaptation to local environmental conditions. Although Bergmann’s rule is usually sufficient to explain such variation in homeotherms, some exceptions have been documented. The relationship between altitude, latitude and body size, has been well documented for some vertebrate taxa during the past decades. However, relatively little information is available on the effects of climate variables on body size in birds.Methods: We collected the data of 267 adult Eurasian Tree Sparrow(Passer montanus) specimens sampled at 48 localities in China’s mainland, and further investigated the relationships between two response variables, body mass and wing length, as well as a suit of explanatory variables, i.e. altitude, latitude, mean annual temperature(MAT), annual precipitation(PRC), annual sunshine hours(SUN), average annual wind speed(WS), air pressure(AP) and relative humidity(RH).Results: Our study showed that(1) although the sexes did not differ significantly in body mass, males had longer wings than females;(2) body mass and wing length were positively correlated with altitude but not with latitude;(3) body mass and wing length were negatively correlated with AP and RH, but not significantly correlated with WS. Body mass was positively correlated with SUN and inversely correlated with MAT. Wing length was not correlated with MAT in either sex, but was positively correlated with SUN and negatively correlated with PRC in male sparrows;(4) variation in body mass could be best explained by AP and SUN, whereas variation in wing length could be explained by RH and AP in both sexes. In addition, variation in male sparrows can be explained by SUN, WS and PRC but not in females.Conclusions: Two different proxies of body size, body mass and wing length, correlated with same geographic factors and different climate factors. These differences may reflect selection for heat conservation in the case of body mass, and for efficient flight in the case of wing length.
机译:背景:人体大小的地理变化被认为反映了对当地环境条件的适应性。尽管Bergmann的规则通常足以解释此类等温线的变化,但已记录了一些例外情况。在过去的几十年中,一些脊椎动物类群已经高度记录了海拔,纬度和体型之间的关系。方法:我们收集了中国大陆48个地方的267例欧亚树麻雀(Passer montanus)成年标本的数据,并进一步调查了两者之间的关系。两个响应变量,体重和机翼长度,以及一系列解释性变量,即高度,纬度,年平均温度(MAT),年降水量(PRC),年日照时数(SUN),年平均风速(WS)结果:我们的研究表明:(1)尽管性别在体重上没有显着差异,但雄性比雌性更长;(2)体重和翼长是(3)体重和机翼长度与AP和RH呈负相关,而与WS则不显着相关。体重与SUN呈正相关,与MAT呈负相关。雄性麻雀的翼长与MAT均不相关,但与SUN呈正相关,与PRC呈负相关;(4)AP和SUN可以最好地解释体重的变化,而可以解释翼长的变化由RH和AP在两性中。此外,SUN,WS和PRC可以解释雄性麻雀的变化,而雌性则不能。结论:两种不同的代理人的体型,体重和翼长与同一地理因素和不同气候因素有关。这些差异可能反映了对于体重保持热量的选择以及对于机翼长度有效飞行的选择。

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  • 来源
    《中国鸟类:英文版》 |2017年第1期|P.3-11|共9页
  • 作者单位

    Key Laboratory of Animal Physiology, Biochemistry and Molecular Biology of Hebei Province, College of Life Sciences, Hebei Normal University;

    Ocean College, Hebei Agricultural University;

    Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences;

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