...
首页> 外文期刊>Canadian Journal of Zoology >The shape of eggs in different-sized clutches of the house wren (Troglodytes aedon)
【24h】

The shape of eggs in different-sized clutches of the house wren (Troglodytes aedon)

机译:鸡蛋在不同尺寸的房屋w中的形状(Troglodytes aedon)

获取原文
获取原文并翻译 | 示例

摘要

The substantial inter- and intra-specific variation that occurs in the shape of birds' eggs remains largely unexplained. Several researchers have hypothesized that selection will favour a shape that results in the most compact fit of eggs under the incubating parent. Mathematical modeling has suggested that optimal egg shape depends on the number of eggs laid. We tested predictions of one previously published model by comparing the shape of eggs in clutches of 4, 5, 6, 7, and 8 eggs in a Wyoming, U.S.A., population of the house wren (Troglodytes aedon), a small, cavity-nesting songbird whose eggs vary considerably in shape. Contrary to predictions of the model, the typical shapes of eggs from different-sized clutches were very similar. Moreover, slight differences in shape detected were not in directions predicted by the model. There may be less selection on house wrens to adjust egg shape to clutch size because they lay eggs that are small relative to female body size, because eggs are placed in a deep spherical cup that conforms to the shape of the female's abdomen and because nests are to some degree insulated, being located in tree cavities. Full evaluation of the model will require comparisons of egg shape and clutch size in a large set of species that differ in natural-history characteristics such as egg size, nest shape, and nest placement.
机译:鸟卵形状中发生的种间和种内大量变化仍然无法解释。一些研究人员假设选择将有利于在孵化的亲本下产生最紧凑的卵形的形状。数学模型表明,最佳蛋形取决于所产卵的数量。我们通过比较美国怀俄明州4、5、6、7和8个卵的卵形,屋tested(Troglodytes aedon)的数量(一个小的,巢状的巢腔)比较了一个先前发表的模型的预测,卵形变化很大的鸣鸟。与模型的预测相反,来自不同大小离合器的卵的典型形状非常相似。此外,检测到的形状上的细微差异不在模型预测的方向上。家w可能没有太多选择来调整蛋的形状以适应离合器的大小,因为它们会产下相对于雌性体型较小的卵,因为卵被放置在与雌性腹部形状相符的深球形杯中,而且巢是在一定程度上是绝缘的,位于树洞中。对该模型进行全面评估将需要比较在自然历史特征(例如蛋大小,巢形和巢位置)不同的大量物种中的蛋形和离合器大小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号