首页> 美国卫生研究院文献>Biology of Reproduction >Influences of Sex Incubation Temperature and Environmental Quality on Gonadal Estrogen and Androgen Receptor Messenger RNA Expression in Juvenile American Alligators (Alligator mississippiensis)
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Influences of Sex Incubation Temperature and Environmental Quality on Gonadal Estrogen and Androgen Receptor Messenger RNA Expression in Juvenile American Alligators (Alligator mississippiensis)

机译:性别孵化温度和环境质量对美国短吻鳄性腺雌激素和雄激素受体信使RNA表达的影响

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摘要

Gonadal steroid hormone receptors play a vital role in transforming ligand signals into gene expression. We have shown previously that gonads from wild-caught juvenile alligators express greater levels of estrogen receptor 1 (ESR1) than estrogen receptor 2 (ESR2). Furthermore, sexually dimorphic ESR2 mRNA expression (female > male) observed in animals from the reference site (Lake Woodruff, FL, USA) was lost in alligators from the contaminated Lake Apopka (FL, USA). We postulated that environmental contaminant exposure could influence gonadal steroid hormone receptor expression. Here, we address questions regarding gonadal estrogen and androgen receptor (AR) mRNA expression in 1-yr-old, laboratory-raised alligators. What are relative expression levels within gonads? Do these levels vary between sexes or incubation temperatures? Can contaminant exposure change these levels? We observed a similar pattern of expression (ESR1 > AR > ESR2) in ovary and testis. However, both incubation temperature and environment modulated expression. Males incubated at 33.5°C expressed greater AR levels than females incubated at 30°C; dimorphic expression was not observed in animals incubated at 32°C. Compared to Lake Woodruff alligators, Lake Apopka animals of both sexes showed lesser ESR2 mRNA expression levels. Employing cluster analyses, we integrated these receptor expression patterns with those of steroidogenic factors. Elevated ESR2 and CYP19A1 expressions were diagnostic of alligator ovary, whereas elevated HSD3B1, CYP11A1, and CYP17A1 expressions were indicative of testis. In contrast, AR, ESR1, and NR5A1 showed variable expressions that were not entirely associated with sex. These findings demonstrate that the mRNA expression of receptors required for steroid hormone signaling are modified by exposure to environmental factors, including temperature and contaminants.
机译:性腺甾体激素受体在将配体信号转化为基因表达中起着至关重要的作用。以前我们已经表明,来自野生鳄鱼幼崽的性腺表达的雌激素受体1(ESR1)水平高于雌激素受体2(ESR2)。此外,从受污染的阿波普卡湖(美国佛罗里达州)的鳄鱼体内丢失了从参照位点(美国佛罗里达湖湖)的动物中观察到的性二态ESR2 mRNA表达(雌性>雄性)。我们推测环境污染物的暴露可能会影响性腺类固醇激素受体的表达。在这里,我们解决有关在1岁,实验室饲养的短吻鳄中性腺雌激素和雄激素受体(AR)mRNA表达的问题。性腺中的相对表达水平是多少?这些水平在性别或孵化温度之间是否有所不同?污染物接触可以改变这些水平吗?我们在卵巢和睾丸中观察到了类似的表达模式(ESR1> AR> ESR2)。但是,孵育温度和环境均调节表达。在33.5°C孵育的雄性表达的AR水平要高于在30°C孵育的雌性。在32°C下孵育的动物中未观察到双态表达。与伍德拉夫短吻鳄相比,男女两性的阿波普卡湖动物的ESR2 mRNA表达水平均较低。利用聚类分析,我们将这些受体表达模式与类固醇生成因子整合在一起。 ESR2和CYP19A1表达升高可诊断扬子鳄卵巢,而HSD3B1,CYP11A1和CYP17A1表达升高可指示睾丸。相反,AR,ESR1和 NR5A1 显示的变量表达并不完全与性别相关。这些发现表明类固醇激素信号转导所需的受体的mRNA表达被暴露于包括温度和污染物在内的环境因素而被修饰。

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