首页> 外文期刊>General and comparative endocrinology >The platelet-derived growth factor signaling system in snapping turtle embryos, Chelydra serpentina: potential role in temperature-dependent sex determination and testis development.
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The platelet-derived growth factor signaling system in snapping turtle embryos, Chelydra serpentina: potential role in temperature-dependent sex determination and testis development.

机译:鳄龟胚胎中的血小板衍生生长因子信号传导系统,蛇纹蛇:在依赖温度的性别确定和睾丸发育中的潜在作用。

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The platelet-derived growth factor (Pdgf) signaling system is known to play a significant role during embryonic and postnatal development of testes in mammals and birds. In contrast, genes that comprise the Pdgf system in reptiles have never been cloned or studied in any tissue, let alone developing gonads. To explore the potential role of PDGF ligands and their receptors during embryogenesis, we cloned cDNA fragments of Pdgf-A, Pdgf-B, and receptors PdgfR-alpha and PdgfR-beta in the snapping turtle, a reptile with temperature-dependent sex determination (TSD). We then compared gene expression profiles in gonads from embryos incubated at a male-producing temperature to those from embryos at a female-producing temperature, as well as between hatchling testes and ovaries. Expression of Pdgf-B mRNA in embryonic gonads was significantly higher at a male temperature than at a female temperature, but there was no difference between hatchling testes and ovaries. This developmental pattern was reversed for Pdgf-A and PdgfR-alpha mRNA: expression of these genes did not differ in embryos, but diverged in hatchling testes and ovaries. Levels of PdgfR-beta mRNA in embryonic gonads were not affected by temperature and did not differ between testes and ovaries. However, expression of both receptors increased at least an order of magnitude from the embryonic to the post-hatching period. Finally, we characterized expression of these genes in several other embryonic tissues. The brain, heart, and liver displayed unique expression patterns that distinguished these tissues from each other and from intestine, lung, and muscle. Incubation temperature had a significant effect on expression of PdgfR-alpha and PdgfR-beta in the heart but not other tissues. Together, these findings demonstrate that temperature has tissue specific effects on the Pdgf system and suggest that Pdgf signaling is involved in sex determination and the ensuing differentiation of testes in the snapping turtle.
机译:已知血小板衍生的生长因子(Pdgf)信号系统在哺乳动物和鸟类的睾丸的胚胎和出生后发育中起重要作用。相反,在爬行动物中包含Pdgf系统的基因从未在任何组织中克隆或研究过,更不用说发育性腺了。为了探索PDGF配体及其受体在胚胎发生过程中的潜在作用,我们克隆了鳄龟中的Pdgf-A,Pdgf-B和受体PdgfR-alpha和PdgfR-beta的cDNA片段。 TSD)。然后,我们比较了在雄性繁殖温度下孵化的胚胎与在雌性繁殖温度下孵化的胚胎的性腺中的基因表达谱,以及在孵化睾丸和卵巢之间的基因表达谱。在雄性温度下,胚胎性腺中Pdgf-B mRNA的表达明显高于雌性温度,但是孵化睾丸和卵巢之间没有差异。 Pdgf-A和PdgfR-αmRNA的这种发育模式相反:这些基因的表达在胚胎中没有差异,但是在孵化的睾丸和卵巢中却有所不同。胚胎性腺中PdgfR-βmRNA的水平不受温度的影响,并且睾丸和卵巢之间也没有差异。但是,两种受体的表达从胚胎期到孵化后期至少增加了一个数量级。最后,我们表征了这些基因在其他几个胚胎组织中的表达。脑,心脏和肝脏显示出独特的表达模式,从而将这些组织彼此以及肠,肺和肌肉区分开。孵育温度对心脏中PdgfR-alpha和PdgfR-beta的表达有显着影响,但对其他组织没有影响。总之,这些发现表明温度对Pdgf系统具有组织特异性影响,并表明Pdgf信号传导与性别决定和随之而来的鳄龟睾丸分化有关。

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