Department of Genetics, Harvard Medical School, Boston, MA 02115.
Integrative Research Center, Field Museum of Natural History, Chicago, IL 60605.
Proc Natl Acad Sci U S A. 2018 Oct 9;115(41):10209-10217. doi: 10.1073/pnas.1804586115. Epub 2018 Sep 24.
In its most basic conception, a novelty is simply something new. However, when many previously proposed evolutionary novelties have been illuminated by genetic, developmental, and fossil data, they have refined and narrowed our concept of biological "newness." For example, they show that these novelties can occur at one or multiple levels of biological organization. Here, we review the identity of structures in the avian vocal organ, the syrinx, and bring together developmental data on airway patterning, structural data from across tetrapods, and mathematical modeling to assess what is novel. In contrast with laryngeal cartilages that support vocal folds in other vertebrates, we find no evidence that individual cartilage rings anchoring vocal folds in the syrinx have homology with any specific elements in outgroups. Further, unlike all other vertebrate vocal organs, the syrinx is not derived from a known valve precursor, and its origin involves a transition from an evolutionary "spandrel" in the respiratory tract, the site where the trachea meets the bronchi, to a target for novel selective regimes. We find that the syrinx falls into an unusual category of novel structures: those having significant functional overlap with the structures they replace. The syrinx, along with other evolutionary novelties in sensory and signaling modalities, may more commonly involve structural changes that contribute to or modify an existing function rather than those that enable new functions.
在最基本的概念中,新奇的事物就是新的东西。然而,当许多以前提出的进化新奇事物通过遗传、发育和化石数据得到阐明时,它们就细化和缩小了我们对生物“新奇性”的概念。例如,它们表明这些新奇事物可以在一个或多个层次的生物组织中产生。在这里,我们回顾了鸟类发声器官鸣管的结构的特征,并汇集了气道模式形成的发育数据、来自四足动物的结构数据以及数学模型,以评估什么是新的。与在其他脊椎动物中支撑声带的喉软骨不同,我们没有发现任何证据表明,锚定鸣管声带的单个软骨环与外群中的任何特定元素具有同源性。此外,与所有其他脊椎动物发声器官不同,鸣管不是由已知的瓣膜前体衍生而来的,它的起源涉及从呼吸通道中的一个进化“附属物”(气管与支气管相遇的地方)向新的选择机制的目标的转变。我们发现鸣管属于一种不寻常的新型结构类别:那些与它们所取代的结构具有显著功能重叠的结构。鸣管以及感觉和信号模态中的其他进化新奇事物,可能更常见地涉及到有助于或改变现有功能的结构变化,而不是那些能够产生新功能的结构变化。