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胰岛素样雄激素腺激素 1(IAG1)通过反馈到神经内分泌因子调节雌雄同体虾的性分化。

Insulin-like androgenic gland hormone 1 (IAG1) regulates sexual differentiation in a hermaphrodite shrimp through feedback to neuroendocrine factors.

机构信息

College of Ocean and Earth Sciences, Xiamen University, Xiamen 361102, People's Republic of China.

College of Fisheries, Jimei University, Xiamen 361021, People's Republic of China.

出版信息

Gen Comp Endocrinol. 2021 Mar 1;303:113706. doi: 10.1016/j.ygcen.2020.113706. Epub 2020 Dec 25.

Abstract

Insulin-like androgenic gland hormone (IAG) is regarded as a key sexual differentiation regulator in gonochoristic crustaceans. However, until now the knowledge concerning its functions in hermaphroditic crustaceans is scanty. Herein, we investigated the function of IAG (Lvit-IAG1) in peppermint shrimp Lysmata vittata, a species that possesses protandric simultaneous hermaphroditism (PSH) reproductive system, which is rare among crustaceans. Lvit-IAG1 was exclusively expressed in the androgenic gland. The qRT-PCR demonstrated that its mRNA expression level was relatively high at the functional male phase but decreased sharply in the subsequent euhermaphrodite phase. Both the short-term and long-term silencing experiments showed that Lvit-IAG1 negatively regulated both the gonad-inhibiting hormone (Lvit-GIH) and crustacean female sex hormone (Lvit-CFSH) expressions in the eyestalk ganglion. Besides, Lvit-IAG1 gene knockdown induced a retarded development of the appendices masculinae (AM) and male gonopores while suppressing the germ cells at the primary spermatocyte stage. Also, Lvit-IAG1 gene silencing hindered ovarian development. This in turn led to small vitellogenic oocytes and decreased expression of vitellogenin and vitellogenin receptor genes in hepatopancreas and ovarian region, respectively. Generally, this study's findings imply that Lvit-IAG1 modulated the male sexual differentiation in PSH species L. vittata, and exhibited negative feedback on Lvit-GIH and Lvit-CFSH genes expression in the species' eyestalk ganglion.

摘要

胰岛素样雄激素腺激素(IAG)被认为是雌雄同体甲壳动物中关键的性分化调节剂。然而,直到现在,有关其在雌雄同体甲壳动物中的功能的知识仍然很少。本文研究了在薄荷虾 Lysmata vittata 中 IAG(Lvit-IAG1)的功能,薄荷虾具有罕见的雄性先熟同时雌雄同体(PSH)生殖系统。Lvit-IAG1 仅在雄激素腺中表达。qRT-PCR 显示其 mRNA 表达水平在功能雄性期相对较高,但在随后的雌雄同体期急剧下降。短期和长期沉默实验表明,Lvit-IAG1 负调控眼柄神经节中的性腺抑制激素(Lvit-GIH)和甲壳动物雌性激素(Lvit-CFSH)的表达。此外,Lvit-IAG1 基因敲低会延迟雄性附肢(AM)和雄性生殖孔的发育,同时抑制初级精母细胞阶段的生殖细胞。此外,Lvit-IAG1 基因沉默会阻碍卵巢发育。这反过来又导致卵黄生成卵母细胞变小,并分别降低了肝胰腺和卵巢区域的卵黄蛋白原和卵黄蛋白原受体基因的表达。总的来说,本研究的结果表明,Lvit-IAG1 调节了 PSH 物种薄荷虾 L. vittata 的雄性性分化,并对该物种眼柄神经节中 Lvit-GIH 和 Lvit-CFSH 基因的表达表现出负反馈作用。

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