University of Guelph, Integrative Biology, Guelph, Ont., Canada N1G2W1.
Gen Comp Endocrinol. 2010 May 1;166(3):455-61. doi: 10.1016/j.ygcen.2009.09.016. Epub 2009 Oct 8.
Hormones are central to animal physiology, metabolism and development. Details on signal transduction systems and regulation of hormone synthesis, activation and release have only been studied for a small number of animal groups, notably arthropods and chordates. However, a significant body of literature suggests that hormonal signaling systems are not restricted to these phyla. For example, work on several echinoderm species shows that exogenous thyroid hormones (THs) affect larval development and metamorphosis and our new data provide strong evidence for endogenous synthesis of THs in sea urchin larvae. In addition to these endogenous sources, these larvae obtain THs when they consume phytoplankton. Another example of an exogenously acquired hormone or their precursors is in insect and arthropod signaling. Sterols from plants are essential for the synthesis of ecdysteroids, a crucial group of insect morphogenic steroids. The availability of a hormone or hormone precursor from food has implications for understanding hormone function and the evolution of hormonal signaling in animals. For hormone function, it creates an important link between the environment and the regulation of internal homeostatic systems. For the evolution of hormonal signaling it helps us to better understand how complex endocrine mechanisms may have evolved.
激素在动物生理学、代谢和发育中起着核心作用。只有少数动物群体(特别是节肢动物和脊索动物)的信号转导系统和激素合成、激活和释放的调节得到了详细研究。然而,大量文献表明,激素信号系统不仅限于这些门。例如,对几种棘皮动物物种的研究表明,外源性甲状腺激素 (TH) 会影响幼虫发育和变态,我们的新数据为海胆幼虫内源性合成 TH 提供了有力证据。除了这些内源性来源外,幼虫在食用浮游植物时也会获得 TH。另一个外源性获得的激素或其前体的例子是在昆虫和节肢动物信号中。植物固醇是蜕皮甾类合成所必需的,蜕皮甾类是昆虫形态发生甾体的重要组成部分。食物中激素或激素前体的存在对理解激素功能和动物中激素信号的进化具有重要意义。就激素功能而言,它在环境和内部稳态系统的调节之间建立了重要联系。就激素信号的进化而言,它帮助我们更好地理解复杂的内分泌机制是如何进化的。