首页> 外文期刊>The Journal of Comparative Neurology >Expression of tachykinin3 tachykinin3 and related reproductive markers in the brain of the African cichlid fish Astatotilapia burtoni Astatotilapia burtoni
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Expression of tachykinin3 tachykinin3 and related reproductive markers in the brain of the African cichlid fish Astatotilapia burtoni Astatotilapia burtoni

机译:Tachykinin 3 Tachykinin 3的表达及相关的生殖标志在非洲辣椒状鱼Astatotilapia Burtoni Astototilapia Burtoni的大脑中

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ABSTRACT Neurokinin B, encoded by the tachykinin3 gene, plays a crucial role in regulating reproduction in mammals via KNDy neurons and interaction with GnRH. Previous work in teleost fishes has focused on hypothalamic tac3 expression for its role in reproduction, but detailed studies on extra‐hypothalamic tac3 expression are limited. Here, we identified two tac3 genes in the social African cichlid fish Astatotilapia burtoni , only one of which produces a functional protein containing the signature tachykinin motif. In situ hybridization for tac3a mRNA identified cell populations throughout the brain. Numerous tac3a cells lie in several thalamic and hypothalamic nuclei, including periventricular nucleus of posterior tuberculum, lateral tuberal nucleus (NLT), and nucleus of the lateral recess (NRL). Scattered tac3 ‐expressing cells are also present in telencephalic parts, such as ventral (Vv) and supracomissural (Vs) part of ventral telencephalon. In contrast to other teleosts, tac3 expression was absent from the pituitary. Using double‐fluorescent staining, we localized tac3a ‐expressing cells in relation to GnRH and kisspeptin cells. Although no GnRH‐ tac3a colabeled cells were observed, dense GnRH fibers surround and potentially synapse with tac3a cells in the preoptic area. Only minimal (5%) colabeling of tac3a was observed in kiss2 cells. Despite tac3a expression in many nodes of the mesolimbic reward system, it was absent from tyrosine hydroxylase (TH)‐expressing cells, but tac3a cells were located in areas with dense TH fibers. The presence of tac3a ‐expressing cells throughout the brain, including in socially relevant brain regions, suggest more diverse functions beyond regulation of reproductive physiology that may be conserved across vertebrates.
机译:摘要由Tachykin3基因编码的Neurokinin B,在通过克罗尼核元和GNRH的相互作用中对哺乳动物的繁殖进行调节至关重要的作用。以前在紧邻鱼类的工作中的重点是下丘脑TAC 3表达其在繁殖中的作用,但对超丘脑TAC3表达的详细研究有限。在这里,我们在社会非洲辣椒状鱼Astatotilapia Burtoni中鉴定了两种TAC3基因,其中只有其中一个产生含有特征Tachykinin主题的功能性蛋白质。原位杂交对于TAC3A mRNA鉴定在整个大脑中的细胞群。许多TAC3A细胞位于几个丘脑和下丘脑核,包括后核核心,侧腺细胞核,侧面结核核(NLT)和侧凹槽(NRL)的细胞核。散射的TAC3 -Expressing细胞也存在于椎间椎间裂缝中,例如腹侧瞳孔的腹侧(VV)和Supracishural(VS)部分。与其他电解相比,垂体中没有TAC 3表达。使用双荧光染色,我们局限于与GNRH和Kisspeptin细胞相关的Tac3a-xexpressing细胞。虽然没有观察到GNRH-TAC3A COLABELED细胞,但致密的GNRH纤维环绕和潜在地突触PETOPTIC区域中的TAC3A细胞。在Kiss2细胞中仅观察到TAC3a的最小(& 5%)COLABELING。尽管在培养基奖励系统的许多节点中表达了TAC3A表达,但是从酪氨酸羟化酶(TH) - 抑制细胞中不存在,但是TAC3A细胞位于具有致密纤维的区域。在整个大脑中存在TAC3A的细胞,包括在社会相关的大脑区域中,表明更多样化的功能超越了可能在脊椎动物上的生殖生理的调节。

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