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首页> 外文期刊>General and comparative endocrinology >De novo transcriptome analysis to search for sex-differentiation genes in the Siberian sturgeon
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De novo transcriptome analysis to search for sex-differentiation genes in the Siberian sturgeon

机译:De Novo转录组分析,以寻找西伯利亚鲟鱼中的性别分化基因

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The sturgeon family includes many species that are lucrative for commercial caviar production, some of which face critical conservation problems. The purpose of this study was to identify genes involved in gonadal sex differentiation in sturgeons, contributing to our understanding of the biological cycle of this valuable species. A high-quality de novo Siberian sturgeon gonadal transcriptome was built for this study using gonadal samples from undifferentiated fish at 3, 5, and 6 months of age; recently sex-differentiated fish at 9 months of age; and immature males and females at 14-17 months of age. Undifferentiated fish were sexed after validation of forkhead box L2 (foxl2) and cytochrome P450, family 19, subfamily A, and polypeptide 1a (cyp19a1a) as sex markers, and the transcriptomes of the 3-month-old undifferentiated fish, 5-6-month-old future females, and 5-6-month-old putative males were compared. The ovarian program was associated with strong activation of genes involved in estrogen synthesis (cyp19a1, foxl2, and estradiol 17-beta-dehydrogenase 1), stem-cell niche building and regulation, and sex-specific nerve cell development. The genes related to the stem-cell niche were: (1) the family of iroquois-class homeodomain proteins 3, 4, and 5 (irx3, irx4, irx5-1, irx5-2, and irx5-3), which are essential for somatic-germ cell interaction; (2) extracellular matrix remodeling genes, such as collagen type XXVIII alpha 1 chain and collagen type II alpha 1 chain, matrix metalloproteinases 24-1 and 24-2, and NADPH oxidase organizer 1, which, along with the somatic cells, provide architectural support for the stem-cell niche; and (3) mitogenic factors, such as lim homeobox 2, amphiregulin, G2/M phase-specific E3 ubiquitin-protein ligase, and connector enhancer of kinase suppressor of ras 2, which are up regulated in conjunction with the anti-apoptotic gene G2/M phase-specific E3 ubiquitin-protein ligase suggesting a potential involvement in regulating the number of germ cells.
机译:鲟鱼家族包括许多有利于商业鱼子酱生产的物种,其中一些面临着关键的保护问题。本研究的目的是鉴定参与鲟鱼的性爱分化的基因,有助于我们对这种有价值物种的生物学循环的理解。在本研究中,使用来自未分化鱼的Gonadal样品在3,5和6个月的时间内为这项研究建造了一种高质量的诺维西伯利亚鲟鱼会谈组;最近发生性感差异化的鱼在9个月的时间;和未成熟的男性和女性在14-17个月。未分化的鱼在验证叉头箱L2(Foxl2)和细胞色素P450,家庭19,亚家族A和多肽1a(Cyp19a1a)作为性标记,以及3个月大的未分化鱼,5-6-将月龄未来的女性和5-6个月大的推定男性进行了比较。卵巢计划与参与雌激素合成(CYP19A1,FOXL2和雌二醇17-Beta-脱氢酶1),干细胞的基础建筑和调节以及性别特异性神经细胞发育的强烈激活。与干细胞Niche有关的基因是:(1)Iroquois-Class Homodomain蛋白3,4和5(IRX3,IR​​X4,IRX5-1,IRX5-2和IRX5-3)的家族是必不可少的用于体细胞胚细胞相互作用; (2)细胞外基质改造基因,如胶原型XXVIIIα1链和胶原IIα1链,基质金属蛋白酶24-1和24-2,以及NADPH氧化酶组织机1,以及体细胞提供建筑支持茎细胞利基; (3)促进因子,例如LiM Homeobox 2,Amphiregulin,G2 / M相质特异性E3泛素 - 蛋白连接和RAS 2的激酶抑制器的连接器增强剂,其与抗凋亡基因G2相结合调节/ M相特异性E3泛素 - 蛋白质连接酶表明潜在的参与调节生殖细胞数量。

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