首页> 外文期刊>Nature reviews Drug discovery >Upregulation of TDRD1 Promotes the Sexual Maturation in Allotetraploids Hybridized from Red Crucian Carp (Carassius auratus Red var) (female) and Common Carp (Cyprinus carpio L) (male)
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Upregulation of TDRD1 Promotes the Sexual Maturation in Allotetraploids Hybridized from Red Crucian Carp (Carassius auratus Red var) (female) and Common Carp (Cyprinus carpio L) (male)

机译:TDRD1的上调促进了从红色鲫鱼(Carassius Auratus Red Var)(女性)和常见的鲤鱼(Cyprinus carpio L)(男性)的同种异体四倍体中的性成熟

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Allotetraploid hybrids of Red Crucian Carp (Carassius auratus red var, abbreviated as RCC) (female) and common Carp (Cyprinus carpio L, abbreviated as CC) (male) is a species produced by distant hybridization. In this study, SWATH mass spectrometry (SWATH-MS) was applied for quantitative proteomics profiling of gonad tissues of allotetraploids and their parents RCC (female) and CC (male). A total of 2338 unique proteins were identified in our proteomic profiling by SWATH-MS. Gene enrichment and network analysis based on differentially expressed proteins revealed some metabolic enzymes involved in gonad growth and development of allotetraploids. Especially, the upregulated gene TDRD1 (ratio = 2.59, p = 0.02) in allotetraploids plays a significant role in spermatogenesis, which could speed up the sexual maturation during the process of gonad growth and development. Protein-protein interaction and pathway analysis further suggested that TDRD1 served as a hub protein in metabolic-related pathways and networks. It could regulate gonad development via regulating metabolic pathways in a synergistic way with surrounding regulatory factors including CS, GPIA, PGK1, and IDH2. In addition, TDRD1 could directly regulate spermatogenesis in conjunction with PIWIL1, PIWIL2, and VASA. Quantitative proteomics integrated with network analysis explored the molecular mechanism in that TDRD1 regulated sexual maturation, development, and growth of allotetraploids in a synergetic way with metabolic genes and pathways.
机译:红鲫(Carassius Auratus Red Var,缩写为RCC)(雌性)和常见的鲤鱼(缩写为CC)(男性)的同种异体四倍体杂种杂种(雌性)(男性)是遥远杂交产生的物种。在该研究中,施用SWATH质谱(SWATH-MS)用于同种异体四倍体和父母RCC(雌性)和CC(男性)的单体表倍增组织的定量蛋白质组学分析。通过SWATH-MS在我们的蛋白质组学分析中鉴定了总共2338个独特的蛋白质。基于差异表达蛋白质的基因富集和网络分析显示了一些涉及Gonad生长和同种异体一种倍增性的发育的一些代谢酶。特别是,同种异体四倍体中上调的基因TDRD1(比率= 2.59,P = 0.02)在精子发生中起着重要作用,这可以加速在Gonad生长和发育过程中的性成熟。蛋白质 - 蛋白质相互作用和途径分析进一步表明TDRD1作为代谢相关途径和网络中的枢纽蛋白。它可以通过调节代谢途径来调节Gonad开发,以协同方式具有周围的监管因素,包括Cs,GPIA,PGK1和IDH2。此外,TDRD1可以与Piwil1,Piwil2和Vasa一起直接调节精子发生。与网络分析一体化的定量蛋白质组学探讨了TDRD1调节的性成熟,发育和以代谢基因和途径的协同方式调节性成熟,发育和生长的分子机制。

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