首页> 美国卫生研究院文献>other >Sexual Dimorphism in Sturnira lilium (Chiroptera Phyllostomidae): Can Pregnancy and Pup Carrying Be Responsible for Differences in Wing Shape?
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Sexual Dimorphism in Sturnira lilium (Chiroptera Phyllostomidae): Can Pregnancy and Pup Carrying Be Responsible for Differences in Wing Shape?

机译:在黄肩蝠属百合(翼手目phyllostomidae)的两性异形:可以在怀孕和小狗携带负责机翼形状上的差异?

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摘要

Competition is one of the most cited mechanisms to explain secondary sexual dimorphism in animals. Nonetheless, it has been proposed that sexual dimorphism in bat wings is also a result of adaptive pressures to compensate additional weight caused by fetus or pup carrying during the reproductive period of females. The main objective of this study is to verify the existence of sexual dimorphism in Sturnira lilium wings. We employed geometric morphometrics techniques using anatomical landmarks superimposition to obtain size (Centroid Size) and shape variables of wings, which were reduced by Linear Discriminant Analysis (LDA). We also employed classical morphometrics using wing length measurements to compare efficiency between these two morphometric approaches and make comparisons using wing area measurements. LDA indicated significant differences between wing shapes of males and females, with 91% (stepwise classification) and 80% (leave-one-out cross validation) of correct classification. However, the size variable obtained did not contribute to such classifications. We have observed larger areas in female wings, but we found no differences in wing length measurements and no allometric effects in wing length, shape and area measurements. Interestingly, our study has provided evidences of morphological differences where classical morphometrics have failed. LDA and area measurements analyses revealed that females have a different area distribution in distinct portions of the wing, with wider dactylopatagia and plagiopatagia, and wingtips more triangular than males. No differences in body length or relative wing length were observed between the sexes, but pregnant females have more body weight than non-pregnant females and males. Our findings suggest that sexual dimorphism in the wing shape of S. lilium is probably related to the increase in flight efficiency of females during reproductive period. It decreases wing loading in specific portions of the wing and reduces energy cost to maintain a faster and maneuverable flight.
机译:竞争是解释动物继发性二态性的最常被引用的机制之一。然而,已经提出,蝙蝠翼中的性二态性也是适应性压力的结果,以补偿在女性生殖期由胎儿或幼崽携带引起的额外体重。这项研究的主要目的是验证Sturnira百合翼中存在性二态性。我们采用解剖学界标叠加的几何形态计量学技术来获得机翼的大小(Centroid Size)和形状变量,通过线性判别分析(LDA)将其减小。我们还使用机翼长度测量来进行经典形态计量,以比较这两种形态测量方法之间的效率,并使用机翼面积测量进行比较。 LDA表示雄性和雌性的机翼形状之间存在显着差异,正确分类的准确度为91%(逐步分类)和80%(不留一格交叉验证)。但是,获得的大小变量对此类分类没有帮助。我们已经观察到雌性机翼较大的区域,但是我们发现机翼长度的测量没有差异,并且机翼长度,形状和面积的测量也没有异速测量效果。有趣的是,我们的研究提供了经典形态计量学失败的形态学差异的证据。 LDA和面积测量分析表明,雌性在机翼的不同部位具有不同的面积分布,具有更宽的棘突和斜pat,翼尖比雄性更三角形。性别之间没有观察到体长或相对翼长的差异,但是怀孕的女性比未怀孕的女性和男性具有更大的体重。我们的发现表明,百合的翼形中的性二态性可能与雌性在繁殖期间飞行效率的提高有关。它减少了机翼特定部分的机翼负荷,并降低了能源成本,以保持更快且可操纵的飞行。

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