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Expression pattern of foxl2 and dmrt1 in gonad of Amur sturgeon Acipenser schrenckii in relation to sex differentiation

机译:Foxl2和DMRT1的表达模式在阿穆尔鲟鱼acipenser schrenckii的性别分化相关

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摘要

The mechanisms that govern sex differentiation in sturgeon are poorly understood. This study aimed to examine sexual dimorphic expression of foxl2 and dmrt1 in Amur sturgeon Acipenser schrenckii during molecular and morphological sex differentiation. Histologically, ovaries were first observed at 9 months after hatching (mah), reflected in an invaginated gonadal epithelium and the presence of germ cells just below the epithelium, whereas gonads with smooth epithelium and germ cells in the stroma were characterized as testis. Some fish showed undifferentiated gonads until 16 mah, but all sampled fish had morphologically differentiated sex by 19 mah. The full-length cDNAs of foxl2 and two types of dmrt1, dmrt1a and dmrt1b, of Amur sturgeon were isolated. The 2 types of dmrt1 cDNA had an identical structure from the 5'-UTR to the Y-rich domain, whereas the sequence downstream from this domain showed no homology and is considered to have resulted from alternative splicing. Foxl2 was principally expressed in the ovary and the 2 types of dmrt1 in the testis of 7-year-old Amur sturgeon, and much less so in various somatic tissues. Foxl2 expression was sexually dimorphic in morphologically differentiated gonads and was similarly dichotomous in the undifferentiated gonads of fish at 9 mah. In contrast, sexually dimorphic expression of dmrt1a and dmrt1b was not observed in gonads of the juvenile Amur sturgeon, but these genes showed testis-dominant expression in the adults. We suggest that foxl2 expression is closely related to ovarian differentiation and that two types of dmrt1 play a role in testis development and/or sperm formation rather than testicular differentiation. Additionally, we suggest that mRNA levels of foxl2 are an appropriate marker for sexing of sturgeon at an early developmental stage.
机译:治理鲟鱼性别差异化的机制很差。本研究旨在在分子和形态学性别分化期间检查在Amur鲟鱼acipenser schrenckii的Foxl2和Dmrt1的性二态表达。组织学上,在孵化(MAH)后9个月首次观察组织学上,反映在内皮下方的生殖细胞上,而具有光滑上皮和基质中的生物细胞的GONAD表征为睾丸。有些鱼展示了未分化的Gonads直到16毫安,但所有采样的鱼都有19毫安的形态学分化。分离FoxL2的全长CDNA和两种类型的DMRT1,DMRT1A和DMRT1B的鲟鱼。 2种类型的DMRT1 cDNA从5'-UTR到Y-富域具有相同的结构,而该结构域下游的序列显示出没有同源性,并且被认为是由替代剪接引起的。 Foxl2主要在卵巢和7岁的阿穆尔鲟鱼的睾丸中表达2种DMRT1,并且在各种体细胞组织中更少。 FOXL2表达在形态学分化的性腺中性二态性在9mAh的未分化性鱼类中类似地二分。相比之下,在青少年鲟鲟的Gonads中未观察到DMRT1a和DMRT1b的性二态表达,但这些基因在成年人中显示出睾丸显性表达。我们建议FOXL2表达与卵巢分化密切相关,两种类型的DMRT1在睾丸发育和/或精子形成中发挥作用,而不是睾丸分化。此外,我们表明FOXL2的mRNA水平是在早期发育阶段进行鲟鱼的适当标记。

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