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1.
本文报道一例遗传性t(1匆;Yq)的家族遗 传病。经外周血淋巴细胞培养,进行G一显带、 C一显带、Q-荧光显带、Ag-NOR, X小体、Y小 体等项检查,其染色体除先证者具有正常女性 核型外,多余出Y长臂的荧光区部分,核型为 46, XX, -15 -h t(15q;Yq)。家族中的,名主 要成员中,3名男性均有一条与先证者相同的 衍生染色体,核型为46,XY,一15+t(15q; Yq) 为Y长臂部分二体型,其表型正常,并有生育能 力。现将调查分析结果报道如下。  相似文献   

2.
本文报道一例遗传性t(15q;Yq)的家族遗传病。经外周血淋巴细胞培养,进行G-显带、C-显带、Q-荧光显带、Ag-NOR、X小体、Y小体等项检查,其染色体除先证者具有正常女性核型外,多余出Y长臂的荧光区部分,核型为46,XX,—15+t(15q;Yq)。家族中的5名主要成员中,3名男性均有一条与先证者相同的衍生染色体,核型为46,XY,—15+t(15q;Yq)为Y长臂部分二体型,其表型正常,并有生育能力。现将调查分析结果报道如下。  相似文献   

3.
石貂的染色体研究   总被引:1,自引:0,他引:1  
本文对分布在我国的石貂北方亚种染色体进行了较详细的研究。结果表明2n=38,核型为14(M)+4(SM)+18(ST),XY(M,A)。C-带显示该亚种的一些染色体着丝粒区域结构异染色质弱化或消失。No,9染色体的短臂完全异染色质化;X染色体长臂丰出现插入杂色质带;Y为完全结构异染色质组成。  相似文献   

4.
三种姬鼠的染色体比较研究   总被引:5,自引:0,他引:5  
本文采用染色体分带技术(G-,C-带和银染色),对中华姬鼠(Apodemusdraco)、大林姬鼠(A.peninsulae)和大耳姬鼠(A.latronum)的核型进行了观察分析。结果表明:3种姬鼠的2n均为48。中华姬鼠的染色体均为端着丝点染色体。大林姬鼠的常规核型中,除1对中着丝点染色体(No.23)外,其余均为端着丝点染色体。大耳姬鼠的核型中,有13对端着丝点染色体,2对亚端着丝点染色体,1对亚中着丝点染色体和7对中着丝点染色体。中华姬鼠C-带核型中,所有染色体着丝点C-带都呈强阳性,异染色质非常丰富,Y染色体整条深染。在大林姬鼠C-带核型中,Nos.7,11,15,21,22着丝点C-带弱化甚至近阴性,其余染色体着丝点异染色质C-带都呈现程度不同的阳性。且Nos.2,4,7有强弱不同的端位异染色质带。X染色体着丝点区有大块的异染色质斑带出现,Y染色体整条深染。大耳姬鼠除Nos.3,4,10,12,13染色体着丝点C-带很弱外,其余染色体着丝点C-带均呈阳性,并有8对(Nos.16-23)染色体出现异染色质短臂。从总体上看,大林姬鼠和大耳姬鼠的着丝点异染色质明显比中华姬鼠的少。中华姬鼠的Ag-NOR  相似文献   

5.
一对同卵双生克氏综合征的研究   总被引:1,自引:0,他引:1  
本文报道了一对克氏综合征的双生兄弟,经血型鉴定提示为同卵双生。患者外周血淋巴细胞2n=47,性染色体为XXY;G显带和C显带标本中发现第1和第16对同源染色体的两个成员之间异染色质区的大小有显著差异,而且Y染色体长臂的异染色质区很大,这种多态性变异,在两个患者之间是相同的。据此进一步证实为同卵双生的克氏综合征,他们的核型为47,XXY,var(1)(q12,CBG30),var(16)(q11,CBG10),var(Y)(q12,CBG30)。  相似文献   

6.
家隅蛛的染色体(蜘蛛目:漏斗蛛科)   总被引:3,自引:0,他引:3  
王秀珍  梁宁 《蛛形学报》1996,5(2):141-144
报告家隅蛛的染色体数目、形态结构和性染色体组成。实验结果表明:家隅蛛的染色体数目是:雄性体细胞为43,雌体为46。性别决定机制是X_1X_2X_3O型。3个(对)X染色体是全部染色体中最小的和次最小的。所有染色体几乎都是端或亚端着丝粒染色体,这一结论被对其C-显带标本的分析所证实。6~#~14~#染色体长臂末端有明显的结构异染色质。G-显带标本中,获得了清晰的带纹。  相似文献   

7.
采用限制酶AluI显带、CA_(?)/DA/DAPI荧光染色和常规C带技术研究了家猪染色体着丝粒结构异染色质,结果表明:着丝粒结构异染色质至少可被区分为3类,并且在染色体组内各有其特异的染色体分布。将家猪染色体DA/DAPI荧光带和限制酶AluI显带与人类染色体比较,发现家猪13—18号端着丝粒染色体显带特征与人染色体1,9、16、Y一致。提示家猪13—18号端着丝粒区结构异染色质存在与人类随体DNA相似的DNA组成。  相似文献   

8.
以Giemsa C带技术处理串叶松香草根尖细胞染色体(2n=14),全部着丝点及第5和第7对染色体短臂端部显稳定的C带,第6对染色体长臂有两条明显的居间带,其他居间带小而不稳定(重复率不高)。间期细胞核染色体呈Rable构型,其着丝点一极最多出现20个染色中心。统计分析表明,靠近着丝点的短臂端带区和居间带区异染色质有易与着丝点区异染色质融合的倾向。分裂中期Giemsa C带数目与间期染色中心数目存在数量对应关系。  相似文献   

9.
远缘杂种孤雌生殖系Giemsa C—带的遗传稳定性分析   总被引:5,自引:1,他引:4  
颜春洪  谷明光 《遗传学报》1997,24(2):170-177
利用GiemsaC-显带方法发现在玉米自交系自330和二倍体多年生类玉米远缘杂交孤雌生殖后代中出现广泛的C-带结构异染色质变异,表现为C-带数目和分布位置的变化以及异配型C-带的出现。这种变异不仅存在于表型不稳定的早代孤雌系中,而且还存在于表型稳定的高代系中。造成这种变异的原因可能是因为远缘种质的引入影响到遗传平衡进而引起染色体发生结构重排并引起染色质的变化,这种变化与玉米染色体组中非同源染色体间存在的同源片段和因此造成的减数分裂过程中非同源染色体配对有着直接的关系。这些研究对于认识孤雌生殖育种的理论基础和应用价值具有重要意义。  相似文献   

10.
毛冠鹿种内异染色质变化与染色体多态   总被引:1,自引:0,他引:1  
采用原代和传代培养方法对8头毛冠鹿(Elaphodus cephalophus)的皮肤细胞进行了染色体研究,发现了一种核型与以前所报道的几种核型不一致,确定为一新核型。在该核型中,染色体众数2n=47,2条X染色体异型,一条为端着丝粒,另一条为近端着丝粒。C-带显示该核型中异染色质除了分布在2条X染色体长臂中之外,在第一对大的端着丝粒染色体中的一条近着丝粒区出现一异染色质“柄”。结合C-带及薄层扫描结果对毛冠鹿种内常染色体、性染色体中异染色质的含量和分布与染色体多态的关系进行了探讨。  相似文献   

11.
刘淑敏  高春生等 《遗传学报》1993,20(1):7-11,T001
本文对一例男性性腺发育不全伴有22p 标记染色体的患者及其家庭成员进行了分子细胞及临床细胞遗传学研究,结果表明,该家系中共有6名成员有22p 染色体,它们来源于先证者的外祖母。标记染色体的p 部分几乎与22q等大,C-带呈深染,G-,R-带在p 中间分别可见一条较窄的浅,深带型,Ag-显带在p+末端见到较大的银染区,部分p 出现双NOR,型分析未见其它,D,G组或Y染色体重排,rRNA基因的染色体原位杂交银颗粒沿整个p 分布,其数目是正常D,G组染色体短臂上平均数的3.9倍,家系研究表明,在6例22p 携带者中,2例女性具有多次自然流产史,4例男性中除一例年龄12岁末见明显性腺异常外,其余3人均有不同程度性腺或外生殖器异常,结合文献,我们认为此家系中22p 可能与上述异常表型存在着一定的关系。  相似文献   

12.
Summary We have used a recombinant DNA clone derived from the Y-specific 3,4-kb repeats for in situ chromosome hybridization and Southern blotting analysis to identify a case of de novo Y;18 translocation. The proband has a chromosome complement of 46,XY and a variant chromosome 18 with a Q-bright and C-positive short arm. The father has a normal male karyotype of 46,XY. The mother has a female karyotype of 46,XX and an unusually large Q-bright satellite on one chromosome 22. In situ hybridization with the 3,4-kb probe to the metaphase preparations of family members indicated that the additional Q-bright material in the proband's variant chromosome 18 derived from the Y chromosome of his father, and not from the variant chromosome 22 of his mother. On Southern hybridization, the proband had approximately twice the amount of 3,4-kb repeats per cell as his father. These observations suggest a de novo genetic rearrangement in the proband which probably occurred during the father's spermatogenesis.  相似文献   

13.
Genomic single-copy DNA fragments were used to characterize an undetected chromosome translocation in an individual whose metaphase chromosome analysis revealed apparent monosomy 21. Eight RFLPs detected by six probes were used to identify homologous sequences from chromosome 21 in DNA digests from the proband and her parents. These family studies showed that the proband was disomic for the distal region of 21q. Reverse banding and in situ hybridization of chromosome 21-specific probes to metaphase chromosomes from the proband revealed a de novo translocation with breakpoints at 5p13 or 14 and 21q11 or 21. In situ hybridization permitted orientation of the translocated portion of chromosome 21 on the derivative chromosome 5 and, in conjunction with molecular analysis and previous mapping studies, refined the physical map for the long arm of chromosome 21.  相似文献   

14.
人14p+标记染色体的分子细胞遗传学研究   总被引:2,自引:1,他引:1  
程在玉  符生苗 《遗传学报》1989,16(4):331-334
一例23岁女性患者因近五、六年来出现胡须、四肢多毛及偶有月经不规则而就诊。细胞遗传学检查发现一个短臂明显增大的亚中着丝粒的14号标记染色体14p ·p 区域GTG显带呈浅染,C-带暗染,都呈均匀的染色区。硝酸银染色在p 远侧端显现一个Ag-NOR,其大小与正常近端着丝粒染色体的无明显差异。应用~3H标记的7.3 kb长的rRNA基因探针进行染色体原位杂交,自显影银颗粒沿整个p 区域分布,p 上的银颗粒数是正常近端着丝粒染色体短臂上银颗粒平均数的5倍。这些结果排除了Y或其他染色体参加的重排形成p 的可能性,并表明Ag-NOR的大小或NOR的数目并不一定与rRNA基因的数量成正比。研究Dp 或Gp 类型的染色体变异,对了解人二倍体细胞内rRNA基因表达的调控有重要意义。  相似文献   

15.
Summary A phenotypically normal male with azoospermia was found to have a translocation between the short arm of the Y chromosome and the distal long arm of a chromosome 4. By cytogenetic analysis it could not be determined whether the translocation was reciprocal, nor whether it was balanced. In situ DNA hybridization with two pseudoautosomal and one Y-specific probe demonstrated that the breakpoint was on distal Yp and that there was Y chromosome material on 4q. Thus the translocation was reciprocal and could be characterized as t(Y;4)(pll;q32). There was no evidence for loss of Y-DNA sequences as judged by Southern blotting with Y-DNA probes. Thus the translocation may be balanced. We conclude that DNA hybridization can be used to refine considerably the cytogenetic analysis of such translocations.  相似文献   

16.
Clinical consequences of a human non-fluorescent Y chromosome (Ynf)   总被引:1,自引:0,他引:1  
A new case of ambiguous genitalia and immature tissue in the left gonad is presented. Cytogenetic findings with various techniques demonstrated that the distal two-thirds of the long arm of the Y chromosome is deleted. Q-banding showed a non-fluorescent Y; three positive bands were however noted when the DA/DAPI technique was applied. After a review of the literature, it was concluded that the non-fluorescent Y chromosome (Ynf) when inherited from generation to generation is a heteromorphism in normal males. However, in our case, where the proband's Y is lacking the fluorescent segment, a simple deletion does not appear to adequately explain the DA/DAPI positive bands. Possibly, a deletion followed by a structural rearrangement of the non-fluorescent segment had occurred de novo. The highly Y-specific DNA sequences present in the fluorescent segment are absent in these patients. The abnormal development in these cases is due to the presence of the 45,X cell line. The gene responsible for spermatogenesis has been localized to the non-fluorescent region in the long arm of the Y chromosome. Furthermore, it is concluded that two types of non-fluorescent Y chromosomes can be found in the population; one is a normal inherent heteromorphic variant, while the other appears to be an abnormality, especially in cases with azoospermia. Such distinctions should clearly be established prior to genetic counseling for patients with so called Ynf or del (Yd).  相似文献   

17.
We describe an unusual marker chromosome Y. This marker is present in 5% of the lymphocytes of a dysgenetic woman showing a mosaic karyotype 45,X/46,XY/ 47,XY+mar. Q-banding revealed that the marker was morphologically identical to the Y chromosome of the patient but presented the primary constriction in the heterochromatic region. C-banding confirmed that the heterochromatic region was C-positive; furthermore, it showed two spots in the euchromatic region in a position corresponding to that of the centromere in the normal Y Fluorescence in situ hybridization with the centromere-specific probe pDP 97 and the pancentromeric alpha-satellite probe 2730 failed to detect any signal at the primary constriction site. To improve the characterization of the marker chromosome, hybridization was performed using pDP 105, a probe located on the short arm of the Y chromosome, together with chromosome-Y- specific paint-hybridizing to the single sequence spanning the Y short arm. In both cases, positive signals telomeric to the inactive centromere were observed. Possible mechanisms resulting in the formation of the marker chromosome are discussed.  相似文献   

18.
Wild populations of Akodon azarae comprise females with a karyotype indistinguishable from that of males. These individuals were formerly assumed to be Xx, the x being an X chromosome with a deletion of most of its long arm. By using a DNA probe derived from the testis-determining region of the human Y chromosome (comprising a candidate gene for the testis-determining factor, Y-linked zinc finger [ZFY]), we demonstrate that A. azarae gonosomally variant females are XY and not Xx. The ZFY sequences in A. azarae are amplified and located in two different families of EcoRI fragments derived from Y-chromosome DNA. No rearrangement or change in the state of methylation of ZFY or ZFX (X-linked zinc finger) sequences were found in XY females. We propose that sex reversal in A. azarae may be mediated by a gene or genes other than ZFX or ZFY.  相似文献   

19.
A derivative Y chromosome was found in a 55-year-old man with Lambert-Eaton paraneoplasic pseudomyastheniform disease. Small testicles, azoospermia were noticed and hormonal level values were as in the Klinefelter syndrome. A 45,X/46,XYp+ mosa?cism was described on peripheral blood lymphocytes. Cytogenetic investigations with R-G-C- and Q-banding have been performed. In situ hybridization with the GMGY 10 DNA probe showed two copies of proximal Yp sequences. Southern blot analyses were performed using the Y DNA probes 27a, 47z, 64a7, 50f2 disclosing specific Yp and Yq sequences from the pseudoautosomal boundary to the Yq proximal portion. The der(Y) has been defined as a dicentric isochromosome for the long arm with one active and one apparently suppressed centromere. The breakpoint leading to the der(Y), has been located in the pairing segment of the Y short arm (i.e. Yp11.32). So the der(Y) was interpreted as a psu dic(Y) (qter-->cen-->p11.32 ::p11.32-->qter). There was thus an almost complete duplication of the Y chromosome.  相似文献   

20.
Summary Three cases of Y chromosomal aberrations were studied using a panel of Y-specific DNA sequences from both Yp and euchromatic Yq. One case was a phenotypic male fetus with a Y-derived marker chromosome. The short arm of this chromosome was intact, but most of its long arm was missing. The second case had a 46,Xyq- karyotype with portions of euchromatic Yq, including the spermatogenesis region, missing. The third case was a phenotypic female with a 46,XXp+ karyotype. The extra material on the Xp+ chromosome was derived from the heterochromatic, and part of the euchromatic, portion of Yq. Application of X-specific DNA sequences demonstrated that the distal portion of the short arm of the translocation X chromosome was deleted (Xpter—p22.3). The three examples demonstrate the importance of diagnostic DNA analysis in cases of marker chromosomes, and X and Y chromosomal aberrations. In addition, the findings in the patients facilitate further deletion mapping of euchromatic Yq.  相似文献   

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