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性别决定与分化发育是同时涉及生命现象中两种细胞分裂(有丝分裂和减数分裂)形式的惟一的分化发育过程。对该过程中关键基因DMRT1的转录分析,发现位于鸡Z染色体上的DMRT1基因分别同时与4号染色体上的CENP C1基因、5号染色体上CD5R基因和2号染色体上37LRP/p40基因发生跨染色体剪接,由此构成了新的跨染色体剪接本DMRT1-CENP C1DMRT1-CD5RDMRT1-37LRP/p40。对其剪接位点的分析,发现两段染色体序列存在的重叠区可能在这种剪接中起着重要作用。DMRT1基因在转录过程中同时与多个染色体上基因发生多次跨染色体剪接的发现,无疑有助于对在转录水平上的多样性基因调控以及性别决定与分化发育等的认识开辟另一新途径。  相似文献   

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脊椎动物性别决定和分化的分子机制研究进展   总被引:9,自引:1,他引:8  
哺乳类性别决定是多种转录因子和生长因子相继表达和相互调控的结果。SRY的表达启动雄性通路并诱导下游雄性特异基因SOX9、AMH等的表达。FOXL2在雌性未分化性腺表达,WNT-4和DAX1也在雌性性别决定或分化时期表达,表明雌性通路也是受特定基因调控的,而并非“默认通路”。鸟类的性别也是由遗传基因决定的,EFT1(雌性)和DMRT1(雄性)可能是性别决定候选基因。爬行类为温度性别决定的典型,温度可能通过调节雌激素水平和控制性别特异遗传基因表达决定性别。大部分两栖类性别受环境因素影响,但发现DMRT1和DAX1可能与其精巢发育有关。鱼类性别决定和分化方式差异很大,多种因素(遗传基因、环境因素、类固醇激素等)参与了这一过程。从青Q鳉Y染色体定位克隆的DMY,被认为是第一个非哺乳类脊椎动物雄性性别决定基因。所有这些表明脊椎动物性别决定和分化机制是多样化的。  相似文献   

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DMRT基因家族是一个与性别决定有关的基因家族,其编码的转录因子DMRTs蛋白(除DMRT8外)均具有一个DM(double-sex and mab-3)结构域,并通过该结构域与DNA结合而发挥调控作用。目前研究表明,DMRT基因家族在性器官发育(如性别分化、性腺发育、生殖细胞发育等)与性外器官发育(如肌肉软骨发育、神经系统发育等)中均具有重要作用;同时也有学者提出DMRTs可能参与肿瘤(如前列腺癌、乳腺癌、肺癌等)的发生和发展。本文综述了以人与小鼠为主的哺乳动物DMRTs/Dmrts的结构、在性器官发育与性外器官发育中的重要功能及其与肿瘤的关系的研究进展,提示DMRT基因家族在多器官发育及多种肿瘤发生和发展及治疗等过程中可能发挥作用,能够作为深入研究肿瘤发病机制与治疗策略的候选基因。  相似文献   

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DMRT基因家族研究进展   总被引:2,自引:0,他引:2  
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奥利亚罗非鱼DMRT1和DMRT4抗体制备及组织表达谱分析   总被引:1,自引:0,他引:1  
DMRT1和DMRT4是DMRT基因家族的成员,该家族成员与果蝇的性别决定基因和线虫性别决定基因一样,所编码的蛋白质都包含一个具有DNA结合能力的保守基序,即DM结构域,并以锌指结构与特异DNA序列相结合,在性别决定和分化发育中起调控作用。采用RT-PCR方法分别从奥利亚罗非鱼卵巢和精巢中扩增克隆出DMRT1和DMRT4全长cDNA片段,构建表达载体,在大肠杆菌中表达了BMP-DMRT4和BMP-DMRT1蛋白。经Xa切割、Amylose-sepharose柱层析纯化后作为抗原免疫新西兰白兔制备了DMRT1和DMRT4多克隆抗体,并进行纯化。对纯化多抗进行Western blot分析,结果表明获得了高特异性的DMRT1和DMRT4抗体。为了观察DMRT1和DMRT4在组织中的表达谱,首先,我们通过实时荧光定量RT-PCR检测雌雄奥利亚罗非鱼多种组织mRNA的表达,仅在卵巢和脑中检测到DMRT4,在精巢中检测到DMRT1;其次,制备了多种组织匀浆蛋白,使用纯化的抗体进行Western blot分析,仅分别在卵巢和精巢中检测到DMRT4和DMRT1蛋白的表达;制备多种奥利亚罗非鱼组织切片,使用纯化的DMRT4和DMRT1多抗进行免疫组织化学分析,发现DMRT4仅在卵巢表达,而DMRT1仅在精巢表达。这些结果有助于阐明DMRT4和DMRT1的功能及在鱼类性别调控中的作用。  相似文献   

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芦笋性别决定与性别分化研究进展   总被引:1,自引:0,他引:1  
从芦笋性别表现及其决定的遗传基础、性别分化途径,性别决定基因的定位以及性别分化特异表达基因的分离与分析等方面来综述芦笋性别决定与性别分化最新研究进展。目前,已构建了围绕芦笋性别决定基因M比较精细的遗传图谱,将M定位在L5染色体着丝点附近的0.63 cM区域内,并构建了含有8个跨叠克隆群的物理图谱,但由于大量重复序列的存在,跨叠克隆之间的空隙不能闭合;同时先后分离得到11个芦笋花器官发育特异表达基因,并通过序列分析和原位杂交等技术对这些基因的功能进行了分析。最后,对今后进一步研究提出了建议。  相似文献   

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王佳  罗琛 《水生生物学报》2014,38(3):548-555
DMRT家族是一个与性别决定相关的转录因子家族。为了研究家族成员之一的Dmrt3在我国重要养殖鱼类鲫胚胎发育、性别分化中的功能以及在育种中的作用,我们克隆了鲫Dmrt3基因的cDNA全长,并对Dmrt3基因在发育早期和不同组织中的表达进行了分析。结果显示:鲫Dmrt3基因cDNA全长为2182 bp,其中5¢端非编码区408 bp,3'端非编码区427 bp,开放阅读框1347 bp,编码448个氨基酸。蛋白结构预测显示DMRT3除了正常的DM结构域外,还有DMA结构域,在进化上与DMRT4和DMRT5的亲缘关系更近。巢式RT-PCR分析结果表明Dmrt3直到尾芽期才开始有微量表达,表达量在15体节期有明显增加但仍然处在一个较低的水平;在成体组织中只在精巢中检测到表达。这种表达时空模式提示Dmrt3可能在早期器官发生和雄性性腺发育调控中起作用。对Dmrt3启动子CpG岛的甲基化分析表明所检测的组织和配子中并不发生甲基化,说明这种雌雄特异性和组织特异性差异表达并不是通过对该基因启动子的差异甲基化修饰来调控的。此外,我们还发现了鲫Dmrt3的一个由逆转录产物形成的假基因pDmrt3。这些结果为进一步研究鲫Dmrt3在性别分化中的作用和评估其在鲫性别控制育种中的价值,以及分析DMRT家族的进化关系提供了基础资料。    相似文献   

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哺乳动物的性别发育大致可分为性别决定和性别分化两步,是一个由WT1/Wt1、SRY/Sry和MIS/Mis等多基因参与的级联过程,但目前对于这些基因之间的相互作用尚不清楚。在性别发育过程中持续表达的WT1/Wt1与多种伴有性别发育异常的疾病相关,其重要性表现为对多个性别发育关键基因在转录水平和转录后水平的调控。简要概述了WT1/Wt1的复杂性及其对多基因的调控作用,以期为阐明性别发育机制和基因间的相互关系提供参考。  相似文献   

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鸟类性别决定机制及性别鉴定的研究进展   总被引:1,自引:1,他引:0  
胡锐颖  李仲逵  丁小燕 《遗传》2005,27(2):297-301
鸟类的性别决定是一个多基因参与的级联调控过程。这一过程受Z染色体连锁的DMRT1基因, W染色体连锁的PKC1W和其它多种因子共同调控。本文综述了性别决定基因及其功能、性别鉴定方法等方面的研究进展。Abstract: Avian sex determination is a multiple gene regulation cascade. Genes such as the Z chromosome-linked DMRT1 gene, W chromosome-linked PKCIW gene and other factors have been demonstrated to be involved in this process. In this paper, we review the recent progress in this field. The investigation of functions of sex determinate genes and methods of sexing birds are discussed here.  相似文献   

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Sex-determination mechanisms in birds and mammals evolved independently for more than 300 million years. Unlike mammals, sex determination in birds operates through a ZZ/ZW sex chromosome system, in which the female is the heterogametic sex. However, the molecular mechanism remains to be elucidated. Comparative gene mapping revealed that several genes on human chromosome 9 (HSA 9) have homologs on the chicken Z chromosome (GGA Z), indicating the common ancestry of large parts of GGA Z and HSA 9. Based on chromosome homology maps, we isolated a Z-linked chicken ortholog of DMRT1, which has been implicated in XY sex reversal in humans. Its location on the avian Z and within the sex-reversal region on HSA 9p suggests that DMRT1 represents an ancestral dosage-sensitive gene for vertebrate sex-determination. Z dosage may be crucial for male sexual differentiation/determination in birds.  相似文献   

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The signal for somatic sex determination in mammals, Caenorhabditis elegans and Drosophila melanogaster is chromosomal, but the overall mechanisms do not appear to be conserved between the phyla. However it has been found quite recently that the C. elegans sex-determining gene Mab-3 contains a domain highly homologous to the Drosophila sex-determining gene doublesex (dsx) and shares a similar role. These data suggest that at least some aspects of the regulation of sex determination might be conserved. In humans, a doublesex-related gene (DMRT1) was identified at less than 30 kb from the critical region for sex reversal on chromosome 9p24 (TD9). In order to get insights into the role of DMRT1 in sex determination/differentiation, we have isolated DMRT1 mouse homologue (Dmrt1) and analysed its expression pattern. The gene is expressed in the genital ridges of both sexes during the sex-determining switch and it shows male/female dimorphism at late stages of sex differentiation.  相似文献   

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Unlike mammals, birds have a ZZ male/ZW female sex-determining system. In most birds, the Z is large and gene rich, whereas the W is small and heterochromatic, but the ancient group of ratite birds are characterized by sex chromosomes that are virtually homomorphic. Any gene differentially present on the ratite Z and W is therefore a strong candidate for a sex-determining role. We have cloned part of the candidate bird sex-determining gene DMRT1 from the emu, a ratite bird, and have shown that it is expressed during the stages of development corresponding to gonadal differentiation in the chicken. The gene maps to the distal region of the Z short arm and is absent from the large W chromosome. Because most sequences on the emu W chromosome are shared with the Z, the Z-specific location constitutes strong evidence that differential dosage of DMRT1 is involved in sex determination in all birds. The sequence of emu DMRT1 has 88% homology with chicken DMRT1 and 65% with human DMRT1. Unexpectedly, an unexpressed 270-bp region in intron 3 of emu DMRT1 showed 90% homology with a sequence in the corresponding intron of human DMRT1. This extraordinarily high conservation across 300 million years of evolution suggests an important function, perhaps involved in control of DMRT1 expression and vertebrate sex determination.  相似文献   

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Genes related to the Drosophila melanogaster doublesex and Caenorhabditis elegans mab-3 genes are conserved in human. They are identified by a DNA-binding homology motif, the DM domain, and constitute a gene family (DMRTs). Unlike the invertebrate genes, whose role in the sex-determination process is essentially understood, the function of the different vertebrate DMRT genes is not as clear. Evidence has accumulated for the involvement of DMRT1 in male sex determination and differentiation. DMRT2 (known as terra in zebrafish) seems to be a critical factor for somitogenesis. To contribute to a better understanding of the function of this important gene family, we have analyzed DMRT1, DMRT2, and DMRT3 from the genome model organism Fugu rubripes and the medakafish, a complementary model organism for genetics and functional studies. We found conservation of synteny of human chromosome 9 in F. rubripes and an identical gene cluster organization of the DMRTs in both fish. Although expression analysis and gene linkage mapping in medaka exclude a function for any of the three genes in the primary step of male sex determination, comparison of F. rubripes and human sequences uncovered three putative regulatory regions that might have a role in more downstream events of sex determination and human XY sex reversal.  相似文献   

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