Department of Biological Sciences, Duquesne University, Pittsburgh, PA 15282, USA.
Evol Dev. 2010 Sep-Oct;12(5):437-48. doi: 10.1111/j.1525-142X.2010.00430.x.
Thyroid hormone (TH) is required for metamorphosis of the long, coiled tadpole gut into the short frog gut. Eleutherodactylus coqui, a direct developing frog, lacks a tadpole. Its embryonic gut is a miniature adult form with a mass of yolky cells, called nutritional endoderm, attached to the small intestine. We tested the TH requirement for gut development in E. coqui. Inhibition of TH synthesis with methimazole arrested gut development in its embryonic form. Embryos treated with methimazole failed to utilize the yolk in their nutritional endoderm, and survived for weeks without further development. Conversely, methimazole and 3,3',5-tri-iodo-l-thyronine, the active form of TH, stimulated gut development and utilization and disappearance of the nutritional endoderm. In Xenopus laevis, the receptor for TH, TRβ, is upregulated in response to TH. Similarly, EcTRβ, the E. coqui ortholog, was upregulated by TH in the gut. EcTRβ expression was high in the nutritional endoderm, suggesting a direct role for TH in yolk utilization by these cells. An initial step in the breakdown of yolk in X. laevis is acidification of the yolk platelet. E. coqui embryos in methimazole failed to acidify their yolk platelets, but acidification was stimulated by TH indicating its role in an early step of yolk utilization. In addition to a conserved TH role in gut development, a novel regulatory role for TH in yolk utilization has evolved in these direct developers.
甲状腺激素(TH)是长而卷曲的蝌蚪肠道转变为短蛙肠道的必需物质。直接发育的 Eleutherodactylus coqui 没有蝌蚪。其胚胎肠道是一种小型成人形式,附有一团蛋黄细胞,称为营养内胚层,附着在小肠上。我们测试了 E. coqui 肠道发育对 TH 的需求。用甲巯咪唑抑制 TH 合成会阻止其胚胎形式的肠道发育。用甲巯咪唑处理的胚胎未能利用其营养内胚层中的蛋黄,并且在没有进一步发育的情况下存活数周。相反,甲巯咪唑和 3,3',5-三碘-l-甲状腺原氨酸(TH 的活性形式)刺激肠道发育以及营养内胚层的利用和消失。在非洲爪蟾中,TH 的受体 TRβ 会被 TH 上调。同样,E. coqui 的同源物 EcTRβ 也被 TH 在肠道中上调。EcTRβ 在营养内胚层中的表达较高,表明 TH 直接参与了这些细胞对蛋黄的利用。非洲爪蟾中蛋黄分解的初始步骤是蛋黄血小板的酸化。用甲巯咪唑处理的 E. coqui 胚胎未能酸化其蛋黄血小板,但 TH 刺激了酸化,表明其在蛋黄利用的早期步骤中发挥了作用。除了 TH 在肠道发育中的保守作用外,TH 在蛋黄利用中的新的调节作用在这些直接发育的动物中进化而来。