Estrogen receptor knockdown suggests its role in gonadal development regulation in Manila clam Ruditapes philippinarum

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-29 DOI:10.1016/j.jsbmb.2024.106594
Min Ding , Lianxue Han , Jingjing Miao , Xuening Wang , Lu Wang , Luqing Pan
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Abstract

The estrogen receptor (ER), a ligand-dependent transcription factor, is critical for vertebrate reproduction. However, its role in bivalves is not well understood, with ongoing debates regarding its function in regulating reproduction similarly to vertebrates. To investigate ER's function, we conducted a 21-day RNA interference experiment focusing on its role in gonadal development in bivalves. Histological analyses revealed that ER inhibition significantly suppressed ovarian development in females and, conversely, promoted gonadal development in males. Additionally, levels of 17β-estrogen (E2) were markedly reduced in the gonads of both sexes following ER suppression. Transcriptomic analysis from RNA-seq of testes and ovaries after ER interference showed changes in the expression of key genes such as Vtg, CYP17, 3β-HSD, and 17β-HSD. These genes are involved in the estrogen signaling pathway and steroid hormone biosynthesis. Furthermore, ER suppression significantly affected the expression of genes linked to gametogenesis and the reproductive cycle. Our findings highlight ER's crucial, yet complex and sex-specific roles in gonadal development in bivalves, emphasizing the need for further detailed studies.

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雌激素受体敲除表明其在马尼拉蛤蜊 Ruditapes philippinarum 的性腺发育调节中发挥作用
雌激素受体(ER)是一种依赖配体的转录因子,对脊椎动物的繁殖至关重要。然而,人们对雌激素受体在双壳类动物中的作用还不甚了解,对其是否具有与脊椎动物类似的调节繁殖的功能也一直存在争议。为了研究ER的功能,我们进行了一项为期21天的RNA干扰实验,重点研究其在双壳类动物性腺发育中的作用。组织学分析表明,抑制ER会显著抑制雌性双壳贝的卵巢发育,相反,则会促进雄性双壳贝的性腺发育。此外,ER抑制后,雌雄性腺中的17β-雌激素(E2)水平都明显降低。对ER干扰后的睾丸和卵巢进行的RNA-seq转录组分析显示,Vtg、CYP17、3β-HSD和17β-HSD等关键基因的表达发生了变化。这些基因参与了雌激素信号通路和类固醇激素的生物合成。此外,ER抑制还极大地影响了与配子发生和生殖周期相关的基因的表达。我们的研究结果突显了ER在双壳类动物性腺发育过程中的关键作用,但其作用复杂且具有性别特异性,强调了进一步详细研究的必要性。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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