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1.
The concentration of testosterone in blood plasma during the ontogenetic development of cockerels was studied in relation to the development of spermatogenic part of gonads. On the basis of the results, sexual development of cockerels can be divided into three stages. The first stage (from hatching to the age of eight to nine weeks) was characterized by a slow increase in gonad weight, by low concentration of plasma testosterone (0.4-2.0 nmol/l) and by the occurrence of spermatogonia in testes. In the course of the second stage (from the age of nine to 16 weeks) a rapid increase in the weight of testes and testosterone concentration was observed. At the end of this stage all phases of spermatogenic cycle were observed in gonads; the testosterone levels averaged to 10 nmol/l. In the course of this stage all cockerels reached sexual maturity; large individual differences in spermatogenesis development were observed. The third stage (16 weeks of age and more) was characterized by an intensive spermatogenesis, further increase in gonad weight and by typical variations of the plasma testosterone levels. The concentration of the circulating testosterone increased before the onset of the final stages of the spermatogenic cycle.  相似文献   

2.
An intersex horse exhibiting cell types of different sex chromosome constitution was subjected to further studies in order to determine whether the house was a mosaic or a chimera. Cultures of gonadal tissue and peripheral blood revealed mainly 64/XX and 64/XY cells, the former predominating in both tissues. The frequency of drumstick-bearing poly-morphonuclear neutrophils in the intersex horse was similar to that noted in normal mares. Blood type analysis using 17 naturally occurring agglutinins and hemolysins revealed partial agglutinations with three antibodies for the factors of the A system (anti-A, anti-F, and anti-I), and partial hemolysis with anti-Fr3 suggesting erythrocyte chimerism probably resulting from intrauterine interchange of blood cell precursors as noted in other domestic animals. On the other hand, the presence of XX and XY cells in cultures of gonads which in our intersex horse were apparently devoid of germ cells, would seem to indicate wholebody chimerism resulting from double fertilization or blastocyst fusion.  相似文献   

3.
Nine reproductively normal mares, 25 infertile mares and one set of heterosexual twins were examined cytogenetically using conventional giemsa staining, C-banding and G-banding. It was concluded that G-banding was necessary to identify even gross anomalies. Three (12 per cent) of the infertile mares, but none of the controls, had a chromosomal anomaly. One was 63,XO, one a 63,XO/64,XX mixoploid and one a 64,XY sex reversed male. It is argued that a cytogenetic examination is a useful diagnostic technique but that routine screening of the whole population would be uneconomic.  相似文献   

4.
Chromosomal abnormalities have been detected in five mares identified by their poor reproductive performance. All had small gonads and absent or irregular oestrous cycles. One mare was 65, XXX, two were 64, XY sex-reversal females and two were sex chromosome mosaics with karyotypes of 63, XO/64, XX/64, XY and 63, XO/64, XX respectively. This report supports the suggestion made in earlier studies that sex chromosome abnormalities may be a significant cause of sterility in the mare.  相似文献   

5.
抑制芳香化酶活性对母鸡性腺分化和性行为的影响   总被引:2,自引:0,他引:2  
为研究雌激素在鸡性腺和性行为分化过程中的作用,本试验在受精蛋孵化第3天气室注入100μL生理盐水或芳香化酶抑制剂(AI),出雏后常规饲养到8月龄性成熟,观察其性行为的表现,检测性腺结构和血清性激素水平.结果发现,AI处理获得的性反转母鸡出现雄性第二性征和雄性交配行为,性腺形态和组织学检查结果表明其性腺得到了不同程度的反转(1)完全反转母鸡右侧性腺发育成为睾丸,而左侧性腺出现不同程度的反转.两侧性腺均出现精细管结构,管径较正常窄,发育不完整,精细管内大量分布生殖细胞,右侧性腺的间质较左侧发达;(2)不完全反转母鸡的右侧性腺退化,左侧仍为完整卵巢.血清中雌二醇(E2)含量为不完全反转母鸡>正常母鸡>完全反转母鸡>正常公鸡;睾酮(T)含量为完全反转母鸡>不完全反转母鸡>正常公鸡>正常母鸡,雄性交配频率与血清T/E2的比值呈正相关.以上结果表明,在性分化前用AI阻断雌激素的合成可引起雌性性腺结构和激素分泌功能及性行为雄性化,而血清T和E2含量及其比值决定了性反转母鸡雄性交配行为的频率和强度.  相似文献   

6.
Cytogenetic and histological studies were carried out on an intersex horse which was diagnosed clinically as a cryptorchid. Surgery confirmed the horse to be a bilateral abdominal cryptorchid and histological examination revealed ovarian tissue associated with the left epididymis. Chromosome analysis of cultured cells from testicular tissue, ovarian tissue and skin revealed 64-XX and 64-XY make-up, the left gonad containing a greater preponderance of XX cells over XY cells. The external characteristics and behaviour of the horse were indistinguishable from that of a "routine" cryptorchid. Other cases of equine intersexes are reviewed and theories for the discrepancies between genetic, gonadal and phenotypic sex are discussed.  相似文献   

7.
A 4-year-old Icelandic horse, considered to be a mare, showed stallion-like behavior in a group of mares. On clinical examination, the horse turned out to have an enlarged erectable phallic clitoris. Ultrasound examination showed a normal-sized left ovary covered with numerous small follicular cysts and a compact testis-like tissue in place of the right ovary. The karyotype was normal for a mare (64,XX), and the horse was found to be negative for the Y chromosome–specific markers SRY, ZFY, and EIF1AY. This case indicates that the intersexual phenotype may be caused by autosomal recessive mutation, resulting in defects in cortisol biosynthesis rather than transferal of Y chromosome male–specific genes. This is the first report of an intersexual phenotype in an Icelandic horse that is likely to be a true hermaphrodite because of female sex chromosomes and a mixture of female and male gonads and external genitals.  相似文献   

8.
The aim of this study was a cytogenetic analysis of stallions semen to find sex chromosome aberrations and to determine if there was an association between stallion's age and aberration frequency for the sex chromosomes. Sperm samples were collected from 22 stallions of various age from 3 to 23 years. Multicolour FISH was performed on each sample, using probes for the sex chromosomes and EGFR gene, localized on 4p12 in domestic horse. A total of 26199 sperm cells were analysed (from 1 070 to 1 532 per animal). Among the analysed cells, there were 50.318% with X chromosome, 48.543% with Y chromosome and 1.139% with aberrant chromosomes. The frequency of aberrations was: sex chromosomes nullisomy (0.466%), XY aneuploidy (0.454%), XX disomy (0.146%), YY disomy (0.041%), diploidy (0.024%) and trisomy XXY (0.008%). Additionally there was a correlation between the age of an animal and the frequency of sex chromosome aberration and a significant positive correlation between age and disomy of XY, XX, YY, trisomy of XXY, autosomal disomy was seen. A Correlation between the age of a stallion and the level of nullisomy was negative. The present study demonstrated that FISH technique is a powerful method to identify sex chromosome aberrations in equine spermatozoa and might be very helpful for a breeder during a selection for the best stallion.  相似文献   

9.
Failures in the establishment of chromosomal, gonadal and phenotypic sex can cause intersexuality in dogs. Thus, diagnosis of chimaerism, mosaicism, sex reversal syndrome, and male or female pseudohermaphroditism in intersex individuals has to be based on the inspection of the chromosomes, gonads and the phenotypic appearance of the reproductive organs. In a study over two years, seven dogs of different breeds suspected to be intersexes were cytogenetically investigated. A sry-negative XX-sex reversal syndrome was diagnosed in a Jack Russel Terrier. In a mixbred dog a persistent Mullerian duct syndrome (PMDS) was found and a Border Terrier Dog showed an XX/XY chromosomal chimaerism. In further four dogs of different breeds, a female constitution of sex chromosomes was seen. As a sign of intersexuality each of these dog showed an enlarged clitoris. A differentiation between XX-sex reversal syndrome and female pseudohermaphroditism was not possible because there was no information on the internal genital tract and gonads available.  相似文献   

10.
Anatomical, behavioral, histological, endocrinological, and cytogenetic characteristics were determined in a horned intersex goat. Histology of the gonads confirmed that the goat was a true hermaphrodite. Cytogenetic analysis showed that it was a chimera (60XX/60XY). Use of laparoscopy allowed determination of characteristics of the internal gonads.  相似文献   

11.
Here is reported a disorder of sex development found in the Portuguese Lusitano horse breed. The complex genital phenotype included mammary glands, abdominal testes without epididymis, connected through oviducts to pelvic hypoplastic uterine horns and fused vulvar labia majora from which protruded ventrally a penis‐like structure. This structure was presented in a reversed position, the urethral opening placed dorsally in the glans. However, it was functional both for micturition and erection. The horse exhibited female micturition posture and aggressive male‐like behaviour, including flehmen, mounting, thrusting and flagging of the tail. Plasma testosterone concentrations were below detection limits and the genetic evaluation revealed a 64, XX, SRY‐negative karyotype. Surgery consisted in the removal of abdominal gonads followed by amputation of the penis and repositioning of the urethra. This case of reversion between the chromosomal and gonadal sex, associated with mixed anatomical and behavioural phenotype, illustrates that development of the testes may occur in the absence of the SRY gene and that other genetic and cellular pathways leading to gonad differentiation should be investigated.  相似文献   

12.
牛怀异性双胎,雄性胎儿性腺发育较早,其分泌的雄性激素和缪勒氏管发育抑制因子(MIF)通过两胎膜的血管吻合支对雌性胎儿的性系统发育产生了抑制,致使其成年后不育。表现为卵巢小,无卵泡或仅有极少发育低下的卵泡;雌性生殖器官发育不全,输卵管、子宫、子宫颈、阴道前庭、阴门出现缺失或节段性发育不良;有雄性迹象如阴蒂肥大,阴毛硕长,有精巢或精囊腺遗迹;雌性个体内出现雄性组型染色体如XY,XXY等;血液激素处于低水平无波幅状态。从病史,上述各症状,累配不孕史方面实行早期诊断并加以淘汰,对生产有指导意义。  相似文献   

13.
Tortoiseshell colored tomcats are very uncommon. In most cases their phenotype is caused by an aberration of sex chromosomes. In this study, we carried out cytogenetic investigations in four tortoiseshell tomacats. In two cases, an XXY syndrome could be proven. Another tortoiseshell tomcat had an XX/XY chromosomal constitution. One tomcat showed an exclusively male XY karyotype. In two cases the testes were histologically examined. In one XXY phenotypically male cat there was no spermatogenesis present. In the tomcat with XX/XY-chimerism spermatogenesis was seen in some testicular tubules.  相似文献   

14.
黄鳝性逆转过程中性腺形态学初步观察   总被引:5,自引:0,他引:5  
试验通过对性逆转过程中雌、雄鳝以及雌雄间体鳝的性腺的形态学进行观察 ,结果显示 ,雌鳝性腺大部分含肉眼可见的卵粒 ,但各时期卵巢的卵粒大小不一。雌雄间性阶段黄鳝性腺肉眼仅见不同形态的卵粒 ,部分卵粒极少 ;组织切片既可观察到卵母细胞 ,还可发现结缔组织纵隔和在纵隔上形成的管状结构的早期精细管 ;而雄鳝阶段黄鳝性腺多呈乳白色带有黑色斑点 ,带有较多且大的黑色斑点性腺可能是卵母细胞退化凋亡痕迹 ,其切面中有较稀疏精母细胞 ,可能属早期的精巢 ;乳白色性腺中黑色斑点极少 ,精母细胞相对较密集 ,可能是成熟期的精巢。试验表明黄鳝“性逆转”在形态学上具有明显的阶段性特征  相似文献   

15.
Normal mammalian sex differentiation takes place in three genetically controlled steps: chromosomal sex determination (XX or XY), gonadal differentiation and development of the phenotypic sex. Animals are considered to be sex reversed if chromosomal sex determination and gonadal development are not in agreement. In this report, sex reversal is described in a 1.5-year-old Podenco dog that was referred because of suspected recurrent growth of a previously removed os clitoridis in the vulva. With that exception the dog was phenotypically female, but had never been in oestrus and exhibited male behaviour. Abdominal ultrasonography showed a small tubular structure dorsal to the bladder, consistent with a uterus. An ovoid structure resembling a gonad was visible between the right kidney and inguinal canal. Plasma testosterone concentrations before and after GnRH administration indicated the presence of functional testicular tissue. Two testes, each with its epididymis and ductus deferens, and a complete bicornuate uterus were removed surgically. Cytogenetic analysis of peripheral blood lymphocytes showed a normal female karyotype (78, XX). These findings are consistent with the diagnosis of an XX male. PCR analysis of genomic DNA revealed that the SRY gene was absent. In summary, this report describes the first SRY-negative XX male Podenco dog with an almost complete female phenotype despite high basal and stimulated plasma testosterone concentrations. It is hypothesized that the clinical observations in this dog may have been caused by reduced and delayed Müllerian-inhibiting substance secretion and the absence of conversion of testosterone to dihydrotestosterone due to 5α-reductase deficiency.  相似文献   

16.
A seven-month-old male pedigree cat was brought to the Norwegian College of Veterinary Medicine for routine castration. Visual examination of the external genitalia revealed a wide genital cleft with non-fused bilaterally located testicular pouches. A large clitoris, which was penis-like with small penile spines, was seen protruding dorsally from the ventral commissure of the genital cleft. During an exploratory coeliotomy, no intra-abdominal genital structures of müllerian origin were found. The skin pouches on either side of the vulvar cleft were incised and grossly normal testicles were removed. Histology of the removed gonads showed no or very sparse spermatogenesis. The chromosomal sex was determined by karyotyping to be a normal male 38XY. Based on these findings, the diagnosis of male pseudohermaphroditism was made. The aetlology of the condition in this cat was not determined.  相似文献   

17.
采用常规细胞遗传学分析手段,对青海省西宁动物园饲养的马鹿染色体核型进行分析,结果:马鹿染色体数目为2n=68,染色体臂数NF=70(♀)、71();常染色体类型为2条中(M)着丝粒,64条近端或端(A)着丝粒;性染色体类型X为近端(A),Y为近中(sM)着丝粒;公母鹿核型式为68,XY和68XX。  相似文献   

18.
本试验旨在研究胚胎期大鼠性腺生长与分化的情况。选取12.5~15.5 dpc SD大鼠胚胎为研究对象,运用PCR技术进行大鼠胚胎性别鉴定,采用H-E技术对大鼠性腺分化形态进行观察。结果表明:12.5 d的鼠胚肾管已经开始形成,生殖嵴已经建立,此时仍无明显的性别分化形态;13.5 d的鼠胚开始出现性别分化的迹象,雄性的原始性索开始形成,雌性性腺分化比雄性稍晚,此期仍不易辨别出典型的卵巢特征结构;14.5 d的鼠胚性腺形态初步成型,此期性别明显分化,雄性的原始性索开始分化为实心原始生精小管,雌性胚胎中性腺分为两层,初步形成卵巢特征;15.5 d的鼠胚,雄性胚胎性腺中已经具有明显的曲精小管的雏形,雌性胚胎卵巢特征也开始明显。大鼠胚胎性腺从13.5 d胚龄时开始分化,15.5 d胚龄性腺特征明显。  相似文献   

19.
We studied the influence of an embryonal application of antiestrogen tamoxifen on gonad differentiation and sex dimorphism during the growth of Slovgal chickens. A single application of 500 micrograms tamoxifen to the incubated eggs before the onset of gonad differentiation induced in pullets the growth of the right gonad, which usually develops only in cockerels. Comparing the size of both gonads it is clear that the above dose of antiestrogen had the 22.31% masculinizing effect. Morphological changes observed just after hatching correlated with the testosterone concentration in plasma. The pullets masculinized by tamoxifen had a significantly higher level of male hormone. The changes in sex differentiation were reflected in the altered growth of pullet bodies. With respect to the higher growth rate and more effective feed conversion, their growth can be appreciated as masculinized. The higher body weight at the end of seven-week fattening (4.25% in comparison with the control group of pullets) was due to the higher trunk weight. The growth was stimulated by tamoxifen application also in cockerels (5.57% increase in body weight) but it was not accompanied by any changes in feed conversion.  相似文献   

20.
A 1‐year‐old Shih Tzu dog was presented for examination because of abnormal external genitalia. A residual penis with a prepuce was located in a position typical of a male. The dog had no palpable testicles or scrotum. The ultrasound examination revealed the presence of the prostate, but the gonads remained undetectable. Cytogenetic analysis performed on chromosome preparations obtained from lymphocyte culture showed two cell lines – 78,XX and 78,XY. Molecular analysis of 14 polymorphic microsatellite markers allowed us to distinguish leucocyte chimerism from whole body chimerism. The presence of 3 or 4 alleles was confirmed in DNA isolated from blood, while in DNA isolated from hair follicles only 1 or 2 alleles were detected. The case was classified as leucocyte 78,XX/78,XY chimerism. Our study showed that XX/XY leucocyte chimerism might be associated with disorder of sexual development in dogs. Furthermore, it is emphasized that the use of cytogenetic study, in combination with analysis of polymorphic markers in DNA isolated from different somatic cells, facilitates distinguishing between leucocyte and whole body chimerism.  相似文献   

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