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首页> 外文期刊>Journal of experimental zoology, Part B. Molecular and developmental evolution >The Cloning and Expression Analysis of Lhx9 During Gonadal Sex Differentiation in the Red-Eared Slider Turtle, Trachemys scripta, a Species With Temperature-Dependent Sex Determination
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The Cloning and Expression Analysis of Lhx9 During Gonadal Sex Differentiation in the Red-Eared Slider Turtle, Trachemys scripta, a Species With Temperature-Dependent Sex Determination

机译:红耳滑龟性腺性别随性决定的性腺性别分化过程中Lhx9的克隆和表达分析

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摘要

Many reptiles, including the red-eared slider turtle (Trachemys scripta), possess a temperature-dependent sex determination (TSD) mechanism where the temperature at which the developing embryos are incubated dictates the gonadal sex of the animal. A number of mammalian gene orthologues have been identified in the sex determination/differentiation cascade of reptiles with TSD although the exact trigger(s) is not well understood. A potential early regulator of gonadal differentiation, Lhx9, controls the proliferation of gonadal cells in mice and its absence prevents gonadal development and drastically reduces the expression of Sf-1, a gene that regulates the expression of steroidogenic enzymes in the bipotential gonad. In the current study, we cloned Lhx9 from T. scripta and analyzed its expression throughout the thermosensitive period of gonad development using quantitative PCR. We examined the expression profiles of Lhx9 in embryos incubated under control conditions at male- and female-producing temperatures and with the application of exogenous 17-estradiol or an aromatase inhibitor, Letrozole, to induce sex reversal. The T. scripta Lhx9 cDNA and predicted amino acid sequence showed high homology to those of chicken, anole, and mouse. Lhx9 was expressed at both male- and female-producing temperatures with expression levels increasing throughout the thermosensitive period. Letrozole induced sex-reversal did not alter Lhx9 expression levels. 17-estradiol treatments appeared to inhibit or delay gonadal differentiation and resulted in lower Lhx9 expression from the presumptive gonadal ridge region. The structural homology and temporal expression pattern of Lhx9 suggests that this represents a conserved element in the gonadal differentiation cascade of T. scripta. J. Exp. Zool. (Mol. Dev. Evol.) 320B:238246, 2013
机译:许多爬行动物,包括红耳滑龟(Trachemys scripta),都具有温度依赖性性别决定(TSD)机制,其中发育中的胚胎的温育决定了动物的性腺性别。尽管尚未完全了解确切的触发因素,但在具有TSD的爬行动物的性别确定/分化级联反应中已鉴定出许多哺乳动物基因直向同源物。潜在的早期性腺分化调节剂Lhx9控制着小鼠中性腺细胞的增殖,而缺乏Lhx9则可以阻止性腺发育并大大降低Sf-1的表达,Sf-1是一种调节双能性腺中类固醇生成酶表达的基因。在当前研究中,我们从T. scripta克隆了Lhx9,并使用定量PCR分析了其在性腺发育的整个热敏期内的表达。我们检查了Lhx9在控制条件下在雄性和雌性产生的温度下孵育的胚胎中的表达谱,并应用外源17-雌二醇或芳香酶抑制剂来曲唑诱导性逆转。 T. scripta Lhx9 cDNA和预测的氨基酸序列与鸡,茴香和小鼠的同源性很高。 Lhx9在产生雄性和雌性的温度下均表达,且表达水平在整个热敏期内均增加。来曲唑诱导的性逆转不会改变Lhx9表达水平。 17-雌二醇治疗似乎抑制或延迟了性腺的分化,并导致性腺的脊突区域Lhx9表达降低。 Lhx9的结构同源性和时间表达模式表明,这代表了T. scripta的性腺分化级联中的保守元件。 J. Exp。 Zool。 (分子开发演化)320B:238246,2013

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