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尼罗罗非鱼中BRD家族的全基因组鉴定与特征分析()。 (注:括号内原文缺失内容未翻译)

Genome-Wide Identification and Characterization of the BRD Family in Nile Tilapia ().

作者信息

Xu Chunmei, Yu Miao, Zhang Qingqing, Ma Zhisheng, Du Kang, You Huiqin, Wei Jing, Wang Deshou, Tao Wenjing

机构信息

Key Laboratory of Freshwater Fish Reproduction and Development (Ministry of Education), Key Laboratory of Aquatic Science of Chongqing, School of Life Sciences, Southwest University, Chongqing 400715, China.

出版信息

Animals (Basel). 2022 Sep 1;12(17):2266. doi: 10.3390/ani12172266.

Abstract

The bromodomain (BRD) proteins specifically recognize the N-acetyllysine motifs, which is a key event in the reading process of epigenetic marks. BRDs are evolutionarily highly conserved. Over recent years, BRDs attracted great interest because of their important roles in biological processes. However, the genome-wide identification of this family was not carried out in many animal groups, in particular, in teleosts. Moreover, the expression patterns were not reported for any of the members in this family, and the role of the BRD family was not extensively studied in fish reproduction. In this study, we identified 16 to 120 BRD genes in 24 representative species. BRDs expanded significantly in vertebrates. Phylogenetic analysis showed that the BRD family was divided into eight subfamilies (I-VIII). Transcriptome analysis showed that BRDs in Nile tilapia () exhibited different expression patterns in different tissues, suggesting that these genes may play different roles in growth and development. Gonadal transcriptome analysis showed that most of the BRDs display sexually dimorphic expression in the gonads at 90 and 180 dah (days after hatching), including 21 testis-dominated genes (, and , etc.), and nine ovary-dominated genes (, and , etc.). Consistent with transcriptomic data, the results of qRT-PCR and fluorescence in situ hybridization showed that expression was higher in the testis than in the ovary, suggesting its critical role in the spermatogenesis of the tilapia. Male fish treated with JQ1 (BET subfamily inhibitor) displayed abnormal spermatogenesis. The numbers of germ cells were reduced, and the expression of steroidogenic enzyme genes was downregulated, while the expression of apoptosis-promoting genes was elevated in the testis tissue of treated fish. Our data provide insights into the evolution and expression of BRD genes, which is helpful for understanding their critical roles in sex differentiation and gonadal development in teleosts.

摘要

溴结构域(BRD)蛋白特异性识别N - 乙酰赖氨酸基序,这是表观遗传标记读取过程中的关键事件。BRD在进化上高度保守。近年来,由于其在生物过程中的重要作用,BRD引起了极大的关注。然而,在许多动物群体中,特别是硬骨鱼中,尚未对该家族进行全基因组鉴定。此外,该家族中任何成员的表达模式均未被报道,并且BRD家族在鱼类繁殖中的作用也未得到广泛研究。在本研究中,我们在24个代表性物种中鉴定出16至120个BRD基因。BRD在脊椎动物中显著扩张。系统发育分析表明,BRD家族分为八个亚家族(I - VIII)。转录组分析表明,尼罗罗非鱼中的BRD在不同组织中表现出不同的表达模式,这表明这些基因可能在生长和发育中发挥不同的作用。性腺转录组分析表明,大多数BRD在孵化后90天和180天在性腺中表现出性别二态性表达,包括21个睾丸优势基因(如 、 和 等)以及9个卵巢优势基因(如 、 和 等)。与转录组数据一致,qRT - PCR和荧光原位杂交结果表明, 在睾丸中的表达高于卵巢,表明其在罗非鱼精子发生中起关键作用。用JQ1(BET亚家族抑制剂)处理的雄鱼表现出异常的精子发生。生殖细胞数量减少,类固醇生成酶基因的表达下调,而处理后鱼的睾丸组织中促凋亡基因的表达升高。我们的数据为BRD基因的进化和表达提供了见解,这有助于理解它们在硬骨鱼性别分化和性腺发育中的关键作用。

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