Bakshi Amrita, Rai Umesh
Department of Zoology, University of Delhi, Delhi 110007, India.
Department of Zoology, University of Delhi, Delhi 110007, India.
Gen Comp Endocrinol. 2021 Sep 1;310:113821. doi: 10.1016/j.ygcen.2021.113821. Epub 2021 May 17.
The present study deals with sex-specific reproductive phase-dependent variation and sex steroids-induced transcriptional regulation of hepatic lep and lepr in nutritionally valuable spotted snakehead, Channa punctata. The data on seasonality reveals sex-specific variation in pattern of lep transcription where a high level was recorded during resting and postspawning quiescent phases in female while during resting and spawning phases in male. Unlike lep, lepr exhibited similar expression pattern along the reproductive phases in both the sexes. As compared to female, a three-fold higher expression of lep was detected in male during reproductively active phase only. However, no sexual dimorphism was evidenced in lepr either during active or quiescent phase. To explore the implication of sex steroids in regulation of leptin system, we correlated levels of plasma testosterone (T) and 17β-estradiol (E) with leptin system in males as well as females. Further, criss-cross in vivo and in vitro experiments with dihydrotestosterone (DHT) and E were conducted in male and female spotted snakehead. The leptin system was downregulated after DHT administration in both the sexes. However, with E, a marked decrease was evidenced in male only. The sex-wise variable response of leptin system to sex steroids was validated by in vitro experiments wherein liver fragments from male and female fish were incubated individually with both the sex steroids. In conclusion, sex steroids modulate hepatic leptin system differentially depending on sex and reproductive state of spotted snakehead.
本研究探讨了具有重要营养价值的斑鳢(Channa punctata)肝脏中瘦素(lep)和瘦素受体(lepr)在性别特异性生殖阶段依赖性变化以及性类固醇诱导的转录调控。季节性数据揭示了lep转录模式的性别特异性差异,雌性在静止期和产后静止期lep转录水平较高,而雄性在静止期和产卵期lep转录水平较高。与lep不同,lepr在两性的生殖阶段均表现出相似的表达模式。与雌性相比,仅在生殖活跃期雄性中检测到lep表达水平高出三倍。然而,在活跃期或静止期,lepr均未表现出性别二态性。为了探究性类固醇在瘦素系统调控中的作用,我们将雄性和雌性斑鳢的血浆睾酮(T)和17β-雌二醇(E)水平与瘦素系统进行了关联分析。此外,还对雄性和雌性斑鳢进行了二氢睾酮(DHT)和E的体内外交叉实验。两性在给予DHT后瘦素系统均被下调。然而,给予E后,仅雄性中瘦素系统显著降低。瘦素系统对性类固醇的性别特异性可变反应通过体外实验得到验证,在体外实验中,将雄性和雌性鱼的肝脏组织分别与两种性类固醇一起孵育。总之,性类固醇根据斑鳢的性别和生殖状态对肝脏瘦素系统进行不同的调节。