Identification and function analysis of steroid hormone synthesis pathway-related gene—Hsd3b in Scylla paramamosain

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Yicong Huang , Xiaojian Lai , Ziping Zhang , Bohao Peng , Xiwei Jia , Zhihua Zou , Yilei Wang
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Abstract

Mud crab (Scylla paramamosain) has become an important mariculture crab along the southeast coast of China due to its strong adaptability, delicious taste, and rich nutrition. Several vertebrate steroid hormones and their synthesis-related genes and receptors have been found in crustaceans, but there are few reports on their synthesis process and mechanism. 3-beta-hydroxysteroid dehydrogenase (HSD3B) is a member of the Short-chain Dehydrogenase/Reductase (SDR) family, and an indispensable protein in vertebrates' steroid hormone synthesis pathway. In this study, the SpHsd3b gene sequence was obtained from the transcriptome data of S. paramamosain, and its full-length open reading frame (ORF) was cloned. The spatial and temporal expression pattern of SpHsd3b was performed by quantitative real-time PCR (qRT-PCR). SpHsd3b dsRNA interference (RNAi) and HSD3B inhibitor (trilostane) were used to analyze the function of SpHSD3B. The results showed that the SpHsd3b gene has an 1113 bp ORF encoding 370 amino acids with a 3β-HSD domain. SpHSD3B has lower homology with HSD3B of vertebrates and higher homology with HSD3B of crustaceans. SpHsd3b was expressed in all examined tissues in mature crabs, and its expression was significantly higher in the testes than in the ovaries. SpHsd3b expression level was highest in the middle stage of testicular development, while its expression was higher in the early and middle stages of ovarian development. RNAi experiment and trilostane injection results showed that SpHSD3B had regulatory effects on several genes related to gonadal development and steroid hormone synthesis. 15-day trilostane suppression could also inhibit ovarian development and progesterone level of hemolymph. According to the above results, crustaceans may have steroid hormone synthesis pathways like vertebrates, and the Hsd3b gene may be involved in the gonadal development of crabs. This study provides further insight into the function of genes involved in steroid hormone synthesis in crustaceans.

类固醇激素合成途径相关基因-Hsd3b在茜草副苷元中的鉴定和功能分析
泥蟹(Scylla paramamosain)因其适应性强、味道鲜美、营养丰富,已成为我国东南沿海重要的海水养殖蟹类。在甲壳类动物体内发现了多种脊椎动物类固醇激素及其合成相关基因和受体,但有关其合成过程和机制的报道很少。3-beta-羟基类固醇脱氢酶(HSD3B)是短链脱氢酶/还原酶(SDR)家族的成员,是脊椎动物类固醇激素合成途径中不可或缺的蛋白。本研究从S. paramamosain的转录组数据中获得了SpHsd3b基因序列,并克隆了其全长开放阅读框(ORF)。利用实时定量 PCR(qRT-PCR)技术研究了 SpHsd3b 的时空表达模式。利用SpHsd3b dsRNA干扰(RNAi)和HSD3B抑制剂(曲洛司坦)分析了SpHsd3b的功能。结果显示,SpHsd3b基因有一个1113 bp的ORF,编码370个氨基酸,具有3β-HSD结构域。SpHSD3B 与脊椎动物的 HSD3B 同源性较低,而与甲壳类动物的 HSD3B 同源性较高。SpHsd3b在成熟螃蟹的所有受检组织中均有表达,其在睾丸中的表达明显高于卵巢。SpHsd3b的表达水平在睾丸发育的中期最高,而在卵巢发育的早期和中期较高。RNAi实验和注射曲洛司坦的结果表明,SpHSD3B对多个与性腺发育和类固醇激素合成相关的基因具有调控作用。抑制 15 天的曲洛坦还能抑制卵巢发育和血淋巴中的孕酮水平。根据上述结果,甲壳类动物可能与脊椎动物一样具有类固醇激素合成途径,而Hsd3b基因可能参与了螃蟹的性腺发育。这项研究进一步揭示了甲壳动物中参与类固醇激素合成的基因的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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