Fish Proteins

鱼类蛋白质类
  • 文章类型: Journal Article
    STAT1a是参与干扰素途径的必需信号转导蛋白,在IFN-α/β和γ信号中起着至关重要的作用。关于鱼类中STAT蛋白的信息有限,特别是在印度主要鲤鱼(IMC)。本研究旨在鉴定和表征Labeorohita中的STAT1a蛋白(LrSTAT1a)。
    对LrSTAT1a转录本的全长CDS进行鉴定和测序。基于核苷酸序列进行系统发育分析。体内免疫刺激剂聚I:C用于治疗各种组织,采用实时定量聚合酶链反应(qRT-PCR)检测LrSTAT1a的表达。使用数据库中可获得的紧密结构同系物生成STAT1a蛋白的3D模型,并使用分子动力学(MD)模拟进行检查。
    LabeorohitaSTAT1a(LrSTAT1a)转录本的全长CDS由3238bp组成,编码721个氨基酸序列的多肽。基于核苷酸序列进行系统发育分析。根据我们的发现,其他脊椎动物与STAT1a具有高度的保守性。此外,我们报道,通过定量实时聚合酶链反应(qRT-PCR)测定,体内免疫刺激剂polyI:C处理各种组织导致LrSTAT1a的表达。在目前的调查中,用polyI:C处理显著增加了LrSTAT1a在几乎每个器官和组织中的表达,用大脑,肌肉,肾,和肠显示与对照相比的最高表达水平。我们通过使用已经在数据库中获得的紧密结构同源物,制作了STAT1a蛋白的3D模型。然后使用分子动力学(MD)模拟检查模型。与以前的研究一致,MD研究强调了STAT1a蛋白的重要性,其负责Src同源性2(SH2)识别。成功地将SH2保留在STAT1a结合腔内的重要H键被确定为由保守残基SER107、GLN530、SER583、LYS584、MET103和ALA106形成。
    这项研究提供了对Rohu(Labeorohita)中STAT1a蛋白的分子见解,并强调了STAT1a在鱼类先天免疫反应中的潜在作用。在其他脊椎动物中,STAT1a的高度保守性表明其在免疫反应中的关键作用。体内免疫刺激结果表明,STAT1a参与各种组织的免疫反应,用大脑,肌肉,肾,肠道反应最灵敏。3D模型和MD研究为STAT1a在免疫应答中的意义提供了进一步的证据,特别是在SH2识别。进一步的研讨须要懂得IFN通路所触及的具体机制和STAT1a在IMC免疫反响中的感化。
    UNASSIGNED: STAT1a is an essential signal transduction protein involved in the interferon pathway, playing a vital role in IFN-alpha/beta and gamma signaling. Limited information is available about the STAT protein in fish, particularly in Indian major carps (IMC). This study aimed to identify and characterize the STAT1a protein in Labeo rohita (LrSTAT1a).
    UNASSIGNED: The full-length CDS of LrSTAT1a transcript was identified and sequenced. Phylogenetic analyses were performed based on the nucleotide sequences. The in-vivo immune stimulant poly I: C was used to treat various tissues, and the expression of LrSTAT1a was determined using quantitative real-time polymerase chain reaction (qRT-PCR). A 3D model of the STAT1a protein was generated using close structure homologs available in the database and checked using molecular dynamics (MD) simulations.
    UNASSIGNED: The full-length CDS of Labeo rohita STAT1a (LrSTAT1a) transcript consisted of 3238 bp that encoded a polypeptide of 721 amino acids sequence was identified. Phylogenetic analyses were performed based on the nucleotide sequences. Based on our findings, other vertebrates share a high degree of conservation with STAT1a. Additionally, we report that the in vivo immune stimulant poly I: C treatment of various tissues resulted in the expression of LrSTAT1a as determined by quantitative real-time polymerase chain reaction (qRT-PCR). In the current investigation, treatment with poly I: C dramatically increased the expression of LrSTAT1a in nearly every organ and tissue, with the brain, muscle, kidney, and intestine showing the highest levels of expression compared to the control. We made a 3D model of the STAT1a protein by using close structure homologs that were already available in the database. The model was then checked using molecular dynamics (MD) simulations. Consistent with previous research, the MD study highlighted the significance of the STAT1a protein, which is responsible for Src homology 2 (SH2) recognition. An important H-bonding that successfully retains SH2 inside the STAT1a binding cavity was determined to be formed by the conserved residues SER107, GLN530, SER583, LYS584, MET103, and ALA106.
    UNASSIGNED: This study provides molecular insights into the STAT1a protein in Rohu (Labeo rohita) and highlights the potential role of STAT1a in the innate immune response in fish. The high degree of conservation of STAT1a among other vertebrates suggests its crucial role in the immune response. The in-vivo immune stimulation results indicate that STAT1a is involved in the immune response in various tissues, with the brain, muscle, kidney, and intestine being the most responsive. The 3D model and MD study provide further evidence of the significance of STAT1a in the immune response, specifically in SH2 recognition. Further research is necessary to understand the specific mechanisms involved in the IFN pathway and the role of STAT1a in the immune response of IMC.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    背景:无论是TYRP1介导的高度保守的遗传网络,其皮肤颜色朝向最佳防御的基础,还是其突变的病理趋势都没有得到很好的理解。Ou江颜色鲤鱼(Cyprinuscarpiovar。颜色)作为模型生物,提供对遗传学有价值的见解,着色,水产养殖实践,和环境健康。这里,我们采用保守分类方法,考虑不同颜色表型,对TYRP1突变体和野生鱼类进行了皮肤转录组比较分析.
    结果:我们的结果表明,一种不寻常的颜色表型可能被TYRP1突变致敏,这是由于对皮肤中COMT介导的儿茶酚胺神经递质引起的与抗炎自身免疫系统相关的几个基因上调的结果。特别是,儿茶酚胺衍生的红色/棕色,红色与蓝色膜攻击复合体,和棕色/灰色还原的真黑素预期在再生细胞中聚集。
    结论:是,因此,结论是含有儿茶酚胺的再生细胞,膜攻击复合体,和真黑素一起可能有助于TYRP1突变体中异常(咖啡样)颜色表型的形成。
    BACKGROUND: Neither a TYRP1-mediated highly conserved genetic network underlying skin color towards optimum defense nor the pathological tendency of its mutation is well understood. The Oujiang Color Common Carp (Cyprinus carpio var. color) as a model organism, offering valuable insights into genetics, coloration, aquaculture practices, and environmental health. Here, we performed a comparative skin transcriptome analysis on TYRP1 mutant and wild fishes by applying a conservative categorical approach considering different color phenotypes.
    RESULTS: Our results reveal that an unusual color phenotype may be sensitized with TYRP1 mutation as a result of upregulating several genes related to an anti-inflammatory autoimmune system in response to the COMT-mediated catecholamine neurotransmitters in the skin. Particularly, catecholamines-derived red/brown, red with blue colored membrane attack complex, and brown/grey colored reduced eumelanin are expected to be aggregated in the regenerated cells.
    CONCLUSIONS: It is, thus, concluded that the regenerated cells with catecholamines, membrane attack complex, and eumelanin altogether may contribute to the formation of the unusual (coffee-like) color phenotype in TYRP1 mutant.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    背景:Viperin,也称为含S-腺苷-甲硫氨酸结构域的自由基蛋白2(RSAD2),是一种干扰素诱导蛋白,参与针对多种病毒的先天免疫反应。在哺乳动物中,Viperin通过将三磷酸胞苷(CTP)酶促转化为其抗病毒类似物ddhCTP以及通过与参与先天免疫信号传导和病毒在其生命周期中利用的代谢途径的宿主蛋白相互作用来发挥其抗病毒功能。然而,Viperin如何调节鱼类的抗病毒反应仍然是未知的。
    结果:为此,我们开发了一种黑头小鱼(Pimephalespromelas)克隆细胞系,其中独特的viperin基因已被CRISPR/Cas9基因组编辑敲除。为了破译鱼类Viperin对抗病毒反应的贡献及其在先天免疫反应范围之外的调节作用,我们对Viperin-/-和野生型细胞系进行了比较RNA-seq分析,这些细胞系在用重组头小牛I型干扰素刺激后.
    结论:我们的结果表明,Viperin对典型的I型IFN不产生正反馈,而是通过下调特定的促炎基因和上调NF-κB途径的阻遏因子而充当炎症反应的负调节因子。它似乎也在调节代谢过程中发挥作用,包括一种碳代谢,骨形成,细胞外基质组织和细胞粘附。
    BACKGROUND: Viperin, also known as radical S-adenosyl-methionine domain containing protein 2 (RSAD2), is an interferon-inducible protein that is involved in the innate immune response against a wide array of viruses. In mammals, Viperin exerts its antiviral function through enzymatic conversion of cytidine triphosphate (CTP) into its antiviral analog ddhCTP as well as through interactions with host proteins involved in innate immune signaling and in metabolic pathways exploited by viruses during their life cycle. However, how Viperin modulates the antiviral response in fish remains largely unknown.
    RESULTS: For this purpose, we developed a fathead minnow (Pimephales promelas) clonal cell line in which the unique viperin gene has been knocked out by CRISPR/Cas9 genome-editing. In order to decipher the contribution of fish Viperin to the antiviral response and its regulatory role beyond the scope of the innate immune response, we performed a comparative RNA-seq analysis of viperin-/- and wildtype cell lines upon stimulation with recombinant fathead minnow type I interferon.
    CONCLUSIONS: Our results revealed that Viperin does not exert positive feedback on the canonical type I IFN but acts as a negative regulator of the inflammatory response by downregulating specific pro-inflammatory genes and upregulating repressors of the NF-κB pathway. It also appeared to play a role in regulating metabolic processes, including one carbon metabolism, bone formation, extracellular matrix organization and cell adhesion.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    缺铁在全世界都很普遍,补充充足的铁或提高铁的生物利用度是解决缺铁问题的根本策略。在这里,我们探索了一种新的铁补充剂,以鲤鱼鱼鳞胶原蛋白肽(SCSCP)和FeCl2·4H2O为原料制备了鲤鱼鱼鳞铁螯合物(SCSCP-Fe),研究了外界环境和模拟胃肠消化环境对SCSCP-Fe稳定性的影响以及肽铁螯合物在消化过程中的结构变化。体外促进铁吸收的结果表明,SCSCP-Fe的铁生物有效性高于FeSO4。通过分子动力学和LC-MS/MS技术从SCSCP序列中筛选并合成了两种潜在的高铁螯合肽DTSGGYDEY(DY)和LQGSNEIEIR(LR)。FTIR结果表明,DY和LR对Fe2+的结合位点为羧基,氨基,和肽上酰胺基团上的氮原子。ITC结果表明,DY和LR与Fe2+的螯合反应主要以静电相互作用为主。分别以1:2和1:1的化学计量比形成螯合物。DY和LR均具有一定的促进铁吸收的能力。DY-Fe螯合物的转运可能是三个途径的组合:PepT1载体途径,细胞旁路,和内吞作用,而LR-Fe螯合物以二价金属离子转运蛋白为主。本研究有望为鲤鱼鳞片的高值化利用和新型铁补充剂的开发提供理论参考和技术支持。
    Iron deficiency is widespread throughout the world, supplementing sufficient iron or improving the bioavailability of iron is the fundamental strategy to solve the problem of iron scarcity. Herein, we explored a new form of iron supplement, iron chelates of silver carp scales (SCSCP-Fe) were prepared from collagen peptide of silver carp scales (SCSCP) and FeCl2·4H2O, the effects of external environment and simulated gastrointestinal digestive environment on the stability of SCSCP-Fe and the structural changes of peptide iron chelates during digestion were investigated. The results of in vitro iron absorption promotion showed that the iron bioavailability of SCSCP-Fe was higher than that of FeSO4. Two potential high iron chelating peptides DTSGGYDEY (DY) and LQGSNEIEIR (LR) were screened and synthesized from the SCSCP sequence by molecular dynamics and LC-MS/MS techniques. The FTIR results displayed that the binding sites of DY and LR for Fe2+ were the carboxyl group, the amino group, and the nitrogen atom on the amide group on the peptide. ITC results indicated that the chelation reactions of DY and LR with Fe2+ were mainly dominated by electrostatic interactions, forming chelates in stoichiometric ratios of 1:2 and 1:1, respectively. Both DY and LR had a certain ability to promote iron absorption. The transport of DY-Fe chelate may be a combination of the three pathways: PepT1 vector pathway, cell bypass, and endocytosis, while LR-Fe chelate was dominated by bivalent metal ion transporters. This study is expected to provide theoretical reference and technical support for the high-value utilization of silver carp scales and the development of novel iron supplements.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    缺氧已成为限制水产养殖发展的最关键因素之一。鲤鱼(Carassiusauratus)是中国广泛食用的鱼类,对低氧环境具有优异的耐受性。然而,cru鱼缺氧适应和耐受的分子机制尚不清楚。与对照相比,T-SOD增加,CAT,GSH-Px,T-AOC,ALT,AST活性和MDA,TCHO,和TG含量,低氧胁迫后,TP和ATP含量降低。基于RNA-seq,2479个差异表达(DE)mRNA和60个DEmiRNA,和许多参与HIF信号通路的DEmRNA(HIF-1α,epo,vegfa,andho),厌氧代谢(hk1/hk2,pfk,gapdh,pk,和ldh)和免疫应答(nlrp12,cxcr1,cxcr4,ccr9和cxcl12)在缺氧暴露后显著上调。综合分析发现,预测igfbp1、hsp70和hk2受novel_867、dre-miR-125c-3p/novel_173、dre-miR-181b-5p、和dre-miR-338-5p/dre-miR-17a-3p,分别,MAPK信号通路显著富集DEmiRNAs,FoxO信号通路,和糖酵解/糖异生。表达分析表明,vegfa的mRNA水平,epo,ho,hsp70,hsp90aa.1,igfbp1,ldh,hk1,pfk,pk,gapdh表现出显著的增长,而sdh和mdh在H3h下调,H12h,H24h组与对照组比较。此外,研究发现,hk2是dre-miR-17a-3p的靶标,过表达dre-miR-17a-3p显著降低了hk2的表达水平,而在dre-miR-17a-3p沉默后获得相反的结果。这些结果有助于我们了解cru鱼耐缺氧的分子机制。
    Hypoxia has become one of the most critical factors limiting the development of aquaculture. Crucian carp (Carassius auratus) is widely consumed fish in China, with excellent tolerance to hypoxic environment. However, the molecular mechanisms underlying hypoxia adaptation and tolerance in crucian carp remain unclear. Compared with the control, increased T-SOD, CAT, GSH-Px, T-AOC, ALT, and AST activities and MDA, TCHO, and TG contents, and decreased TP and ATP contents were observed after hypoxia stress. Based on RNA-seq, 2479 differentially expressed (DE) mRNAs and 60 DE miRNAs were identified, and numerous DE mRNAs involved in HIF signaling pathway (hif-1α, epo, vegfa, and ho), anaerobic metabolism (hk1/hk2, pfk, gapdh, pk, and ldh) and immune response (nlrp12, cxcr1, cxcr4, ccr9, and cxcl12) were significantly upregulated after hypoxia exposure. Integrated analysis found that ho, igfbp1, hsp70, and hk2 were predicted to be regulated by novel_867, dre-miR-125c-3p/novel_173, dre-miR-181b-5p, and dre-miR-338-5p/dre-miR-17a-3p, respectively, and targets of DE miRNAs were significantly enriched in MAPK signaling pathway, FoxO signaling pathway, and glycolysis/gluconeogenesis. Expression analysis showed that the mRNA levels of vegfa, epo, ho, hsp70, hsp90aa.1, igfbp1, ldh, hk1, pfk, pk, and gapdh exhibited a remarkable increase, whereas sdh and mdh were downregulated in the H3h, H12h, and H24h groups compared with the control. Furthermore, research found that hk2 is a target of dre-miR-17a-3p, overexpression of dre-miR-17a-3p significantly decreased the expression level of hk2, while the opposite results were obtained after dre-miR-17a-3p silencing. These results contribute to our understanding of the molecular mechanisms of hypoxia tolerance in crucian carp.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

  • 文章类型: Journal Article
    为了提高我们对硬骨鱼生殖生理学的认识,我们鉴定了六个四川bream(Sinibramataeniatus)卵黄蛋白原基因(vtg1-6),并表征了它们的序列结构。我们将它们分为Ⅰ型(vtg1、4、5和6),Ⅱ型(vtg2)和Ⅲ型(vtg3)基于其亚结构域结构的差异。vtgs的启动子序列具有多个雌激素反应元件,它们的丰度似乎与vtg基因表达对雌激素的反应性相关。基因表达分析表明,川鱼卵黄发生涉及异合成和自合成途径。主要途径来源于肝脏。药物治疗实验表明,17β-雌二醇(E2)紧密调节肝脏中vtgmRNA的水平。用含有100μg/gE2的饮食喂养鱼三周显着诱导vtg基因表达和卵巢发育,导致卵黄发生更早。此外,观察到vtg转录的启动需要E2与其受体结合,这一过程主要由川鱼的雌激素受体α介导。这项研究的发现为硬骨鱼卵黄蛋白原基因家族的分子信息提供了新的见解,从而有助于调节养殖鱼类的性腺发育。
    To enhance our understanding of teleost reproductive physiology, we identified six Sichuan bream (Sinibrama taeniatus) vitellogenin genes (vtg1-6) and characterized their sequence structures. We categorized them into type Ⅰ (vtg1,4,5 and 6), type Ⅱ (vtg2) and type Ⅲ (vtg3) based on differences in their subdomain structure. The promoter sequence of vtgs has multiple estrogen response elements, and their abundance appears to correlate with the responsiveness of vtg gene expression to estrogen. Gene expression analyses revealed that the vitellogenesis of Sichuan bream involves both heterosynthesis and autosynthesis pathways, with the dominant pathway originating from the liver. The drug treatment experiments revealed that 17β-estradiol (E2) tightly regulated the level of vtg mRNA in the liver. Feeding fish with a diet containing 100 μg/g E2 for three weeks significantly induced vtg gene expression and ovarian development, leading to an earlier onset of vitellogenesis. Additionally, it was observed that the initiation of vtg transcription required E2 binding to its receptor, a process primarily mediated by estrogen receptor alpha in Sichuan bream. The findings of this study provide novel insights into the molecular information of the vitellogenin gene family in teleosts, thereby contributing to the regulation of gonadal development in farmed fish.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    蛋白酶体26S亚基,非ATP酶9(psmd9)在精子发生过程中对鱼精蛋白的平衡和核仁结构的稳定性起着重要作用。在这项研究中,我们克隆了半舌兰的psmd9,并分析了其表达模式。PSMD9在C.semilaevis的Z染色体上鉴定,它被认为是精子发生的一个有趣的候选基因。qRT-PCR和FISH实验表明psmd9基因在睾丸中显著高表达。值得注意的是,男性鱼睾丸中psmd9的表达水平明显高于假性鱼。为了进一步探讨psmd9在精子发生中的作用,雄性睾丸细胞系被用作实验材料。psmd9-RNAi和过表达实验结果表明,psmd9与精子发生相关基因dnd1、cfap69、dnah3和dnajb13有协同作用,但对ccne2有拮抗作用。我们的发现为理解psmd9在半毛精子发生调控网络中的作用提供了科学依据。
    Proteasome 26S Subunit, Non-ATPase 9 (psmd9) plays an important role in the balance of protamine and the stability of the nucleolar structure during spermatogenesis. In this study, we cloned the psmd9 of Cynoglossus semilaevis and analyzed its expression pattern. psmd9 was identified on the Z chromosome of C. semilaevis, which is considered an interesting candidate gene for spermatogenesis. qRT-PCR and FISH experiments showed that the psmd9 gene was significantly highly expressed in the testes. It is worth noting that the expression level of psmd9 in male fish testes is significantly higher than that in pseudomales. In order to further explore the role of psmd9 in spermatogenesis, a male testicular cell line was used as the experimental material. The results of the psmd9-RNAi and overexpression experiments showed that psmd9 had a synergistic effect with spermatogenesis-related genes dnd1, cfap69, dnah3 and dnajb13, but had an antagonistic effect with ccne2. Our findings offer a scientific foundation for comprehending the role of psmd9 in the spermatogenesis regulatory network of C. semilaevis.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    Salmosalar的先天免疫反应,由模式识别受体(PRR)介导,对于抵御病原体至关重要。这项研究检查了DDX41蛋白作为环状二核苷酸的胞浆/核传感器的功能,RNA,和侵入性细胞内细菌的DNA。调查确定了存在,养护,和ddx41基因在S.salar中的功能表达。在计算机模拟预测和实验验证中,在S.salar的5号染色体上确定了一个ddx41基因,与人类对应物具有83.92%的同源性。鲑鱼头肾的转录组学分析证实了基因转录的完整性。通过质谱的蛋白质组鉴定表征了具有99.99%统计置信度的三种独特肽。系统发育分析表明,物种之间具有显着的进化保守性。在由沙门氏菌双胞次体和沙门氏菌肾杆菌感染的SHK-1细胞中的功能基因表达分析表明DDX41的显着上调,与促炎细胞因子水平增加以及irf3和干扰素信号通路的激活有关。体内研究证实了DDX41在免疫反应中的激活,特别是当S.salar被沙门氏菌挑战时,强调其增强抗病性的潜力。这是第一个将DDX41通路确定为S.salar先天免疫应答中的关键成分的研究,为今后的鲑鱼抗病性研究奠定基础。
    The innate immune response in Salmo salar, mediated by pattern recognition receptors (PRRs), is crucial for defending against pathogens. This study examined DDX41 protein functions as a cytosolic/nuclear sensor for cyclic dinucleotides, RNA, and DNA from invasive intracellular bacteria. The investigation determined the existence, conservation, and functional expression of the ddx41 gene in S. salar. In silico predictions and experimental validations identified a single ddx41 gene on chromosome 5 in S. salar, showing 83.92% homology with its human counterpart. Transcriptomic analysis in salmon head kidney confirmed gene transcriptional integrity. Proteomic identification through mass spectrometry characterized three unique peptides with 99.99% statistical confidence. Phylogenetic analysis demonstrated significant evolutionary conservation across species. Functional gene expression analysis in SHK-1 cells infected by Piscirickettsia salmonis and Renibacterium salmoninarum indicated significant upregulation of DDX41, correlated with increased proinflammatory cytokine levels and activation of irf3 and interferon signaling pathways. In vivo studies corroborated DDX41 activation in immune responses, particularly when S. salar was challenged with P. salmonis, underscoring its potential in enhancing disease resistance. This is the first study to identify the DDX41 pathway as a key component in S. salar innate immune response to invading pathogens, establishing a basis for future research in salmonid disease resistance.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    生殖细胞的鉴定和表达对于研究鱼类性别相关机制具有重要意义。Vasa基因,编码ATP依赖性RNA解旋酶,被认为是生殖细胞的分子标记,在生殖细胞发育中起着至关重要的作用。asotusasotus,是中国重要的淡水经济鱼类,显示出明显的性别二态性,女性的生长速度比男性快。然而,这些性别差异背后的分子机制,特别是涉及这种鱼的vasa基因的分子机制仍然知之甚少。在这项工作中,通过RT-PCR和cDNA末端快速扩增(RACE)获得了asotus的vasa基因序列。并使用qRT-PCR和原位杂交方法分析其在胚胎和组织中的表达。还对幼虫鱼进行来曲唑(LT)处理,以研究其对基因的影响。结果表明,Savasa的开放阅读框(ORF)为1989bp,编码662个氨基酸。SaVasa蛋白包含DEAD-box蛋白家族特有的10个保守结构域,与丝虫的序列同一性最高,为95.92%。在胚胎中,Savasa在早期胚胎中从双细胞期到囊胚期高度表达,从胃动期到心跳期呈逐渐下降的趋势。此外,Savasa最初是在双细胞阶段的卵裂沟结束时检测到的,后来随着胚胎发育浓缩成四个对称的细胞簇。在胃肠病阶段,Savasa阳性细胞增加并开始向胚胎的背侧迁移。在组织中,Savasa主要在卵巢中表达,在其他检测到的组织中几乎没有表达或表达较低。此外,Savasa在卵巢I-V期卵母细胞中表达,以及睾丸中的精原细胞和精母细胞,暗示生殖细胞的特定表达模式。此外,在鱼的关键性腺分化期间,LT以浓度依赖性方式显着上调Savasa的表达。值得注意的是,LT治疗后120dph,高浓度组的睾丸和卵巢中Savasa表达最低。总的来说,来自基因结构的发现,蛋白质序列,系统发育分析,RNA表达模式,对LT的反应表明Savasa是母系遗传的,具有保守的特征,作为S.asotus生殖细胞的潜在标记基因,并可能参与LT诱导的鱼类早期胚胎发育和性腺发育过程。这将为进一步研究生殖细胞标记物的应用以及沙门菌性别差异的分子机制奠定基础。
    The identification and expression of germ cells are important for studying sex-related mechanisms in fish. The vasa gene, encoding an ATP-dependent RNA helicase, is recognized as a molecular marker of germ cells and plays a crucial role in germ cell development. Silurus asotus, an important freshwater economic fish species in China, shows significant sex dimorphism with the female growing faster than the male. However, the molecular mechanisms underlying these sex differences especially involving in the vasa gene in this fish remain poorly understood. In this work, the vasa gene sequence of S. asotus (named as Savasa) was obtained through RT-PCR and rapid amplification of cDNA end (RACE), and its expression in embryos and tissues was analyzed using qRT-PCR and an in situ hybridization method. Letrozole (LT) treatment on the larvae fish was also conducted to investigate its influence on the gene. The results revealed that the open reading frame (ORF) of Savasa was 1989 bp, encoding 662 amino acids. The SaVasa protein contains 10 conserved domains unique to the DEAD-box protein family, showing the highest sequence identity of 95.92% with that of Silurus meridionalis. In embryos, Savasa is highly expressed from the two-cell stage to the blastula stage in early embryos, with a gradually decreasing trend from the gastrula stage to the heart-beating stage. Furthermore, Savasa was initially detected at the end of the cleavage furrow during the two-cell stage, later condensing into four symmetrical cell clusters with embryonic development. At the gastrula stage, Savasa-positive cells increased and began to migrate towards the dorsal side of the embryo. In tissues, Savasa is predominantly expressed in the ovaries, with almost no or lower expression in other detected tissues. Moreover, Savasa was expressed in phase I-V oocytes in the ovaries, as well as in spermatogonia and spermatocytes in the testis, implying a specific expression pattern of germ cells. In addition, LT significantly upregulated the expression of Savasa in a concentration-dependent manner during the key gonadal differentiation period of the fish. Notably, at 120 dph after LT treatment, Savasa expression was the lowest in the testis and ovary of the high concentration group. Collectively, findings from gene structure, protein sequence, phylogenetic analysis, RNA expression patterns, and response to LT suggest that Savasa is maternally inherited with conserved features, serving as a potential marker gene for germ cells in S.asotus, and might participate in LT-induced early embryonic development and gonadal development processes of the fish. This would provide a basis for further research on the application of germ cell markers and the molecular mechanisms of sex differences in S. asotus.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    缺氧是水生生态系统中一个全球性的环境问题。在本研究中,进行了综合分析,以评估缺氧对生理反应的影响(血液学,皮质醇,生物化学,hif基因表达和HIF途径)杂种st鱼(Acipenserschrenckii‰×Acipenserbaerii‰)。共有180只杂种st鱼成虫暴露于7.00±0.2mg/L的溶解氧(DO)水平(对照,N),3.5±0.2mg/L(中度缺氧,MH)或1.00±0.1mg/L(严重缺氧,SH)并在1小时取样,缺氧后6h和24h。结果表明,SH组缺氧后6h和24h红细胞(RBC)计数和血红蛋白(HGB)浓度显著升高。随着DO水平的降低,血清皮质醇浓度逐渐升高。此外,几个血清生化参数(AST,AKP,HBDB,LDH,GLU,SH组在24h时TP和T-Bil)显着改变。HIF是在缺氧中起主要调节因子作用的转录激活因子。在这项研究中,首次在杂种st中鉴定并鉴定了完整的六个hif基因。缺氧后,六个st鱼hif基因中有五个在g中显著差异表达,尤其是hif-1α和hif-3α,变化超过20倍,表明它们在适应杂交st鱼缺氧中的重要作用。一项荟萃分析表明,HIF途径,适应低氧环境的主要途径,在缺氧攻击后24小时在杂种st的肝脏中被激活。我们的研究表明缺氧,特别是重度缺氧(1.00±0.1mg/L),可能会对杂交st鱼造成相当大的压力。这些结果揭示了它们对缺氧耐受性的适应机制和潜在的生物标志物。协助水产养殖和保护工作。
    Hypoxia is a globally pressing environmental problem in aquatic ecosystems. In the present study, a comprehensive analysis was performed to evaluate the effects of hypoxia on physiological responses (hematology, cortisol, biochemistry, hif gene expression and the HIF pathway) of hybrid sturgeons (Acipenser schrenckii ♂ × Acipenser baerii ♀). A total of 180 hybrid sturgeon adults were exposed to dissolved oxygen (DO) levels of 7.00 ± 0.2 mg/L (control, N), 3.5 ± 0.2 mg/L (moderate hypoxia, MH) or 1.00 ± 0.1 mg/L (severe hypoxia, SH) and were sampled at 1 h, 6 h and 24 h after hypoxia. The results showed that the red blood cell (RBC) counts and the hemoglobin (HGB) concentration were significantly increased 6 h and 24 h after hypoxia in the SH group. The serum cortisol concentrations gradually increased with the decrease in the DO levels. Moreover, several serum biochemical parameters (AST, AKP, HBDB, LDH, GLU, TP and T-Bil) were significantly altered at 24 h in the SH group. The HIFs are transcription activators that function as master regulators in hypoxia. In this study, a complete set of six hif genes were identified and characterized in hybrid sturgeon for the first time. After hypoxia, five out of six sturgeon hif genes were significantly differentially expressed in gills, especially hif-1α and hif-3α, with more than 20-fold changes, suggesting their important roles in adaptation to hypoxia in hybrid sturgeon. A meta-analysis indicated that the HIF pathway, a major pathway for adaptation to hypoxic environments, was activated in the liver of the hybrid sturgeon 24 h after the hypoxia challenge. Our study demonstrated that hypoxia, particularly severe hypoxia (1.00 ± 0.1 mg/L), could cause considerable stress for the hybrid sturgeon. These results shed light on their adaptive mechanisms and potential biomarkers for hypoxia tolerance, aiding in aquaculture and conservation efforts.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

公众号