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1.
半滑舌鳎养殖群体中自然性逆转伪雄鱼的发现   总被引:2,自引:1,他引:1  
利用雌性特异标记遗传性别鉴定技术,对71尾4龄半滑舌鳎的生理和遗传性别进行鉴定,结果显示32尾生理型雌鱼均能扩增出205bp的雌性特异条带;39尾生理型雄鱼,仅一尾鱼体重显著高于其他雄鱼并扩增出了雌性特异条带,因此这尾鱼遗传上为雌性,是一尾伪雄鱼。对养殖的600尾半滑舌鳎生理雄鱼大规模检测发现,养殖群体自然性逆转伪雄鱼比例为1.66%。对正常雌、雄鱼和1龄自然性逆转伪雄鱼的性腺组织学观察显示,与正常雄鱼相比,伪雄鱼性腺中也有大量的精母细胞,但数量比正常雄鱼的要略少;且未在伪雄鱼的性腺组织中观察到卵母细胞,说明半滑舌鳎性逆转发生在性腺分化期。半滑舌鳎自然性逆转现象的发现有助于解释当前半滑舌鳎养殖群体中雄性率偏高的现象,为半滑舌鳎全雌苗种生产提供了一条新的技术途径,并丰富了鱼类性别分化理论。  相似文献   

2.
利用半滑舌鳎性腺转录组测序获得的StAR基因部分序列,设计RACE引物,克隆了半滑舌鳎StAR基因的cDNA序列,全长为1 294 bp,5'端UTR为132 bp,3'端UTR为310 bp,开放阅读框(ORF)为852 bp,共编码283个氨基酸。将半滑舌鳎StAR基因与其他物种StAR基因进行氨基酸同源性分析,结果显示,半滑舌鳎StAR与塞内加尔鳎、大口黑鲈、花鲈、金头鲷的同源性都达到了85%,与虹鳟、斜带石斑鱼及日本鳗鲡的同源性分别为81%、83%和76%。雌、雄鱼不同组织StAR基因的表达分析表明,StAR基因在雄鱼性腺中高表达,在雄鱼的肝脏、脑及心脏中表达量较低,而在雄鱼的其他组织中不表达;在雌鱼肠中不表达,在其他组织(卵巢、肝脏、脾脏、脑、垂体、肌肉、心脏、肾脏)中微量表达。荧光定量PCR分析不同组织与不同时期性腺表达谱表明,雄鱼性腺中StAR基因的表达量显著高于雌、雄鱼其他各组织(P0.05),提示StAR基因对雄鱼精巢发育起重要作用。雄鱼不同时期表达谱分析结果显示,StAR基因在66天前的精巢中不表达,在150天时表达量急剧增加,至2龄时表达量最高,3龄时表达量下降,说明该基因在精巢发育成熟过程中起重要作用。原位杂交结果显示,StAR基因主要在雄鱼精巢的精子细胞中表达,而在雌鱼的卵巢中不表达。研究表明,StAR基因在半滑舌鳎精巢发育中发挥作用,且可能在精子形成中发挥重要作用。  相似文献   

3.
半滑舌鳎Dmrt1α基因的cDNA 克隆及其表达   总被引:5,自引:2,他引:3       下载免费PDF全文
  相似文献   

4.
同源克隆了半滑舌鳎Dmrt3基因的部分cDNA片段,片段长度为228 bp,NJ系统发育树显示,半滑舌鳎Dmrt3基因cDNA片段与红鳍东方鲀、青鳉以及斑马鱼的Dmrt3基因cDNA片段同源性最高,首先聚为一支。实时定量分析了Dmrt3基因在半滑舌鳎雌性和雄性个体的各组织中的表达情况,以及在高温处理和甲基睾酮处理组的雌性、雄性和伪雄鱼的性腺组织中的表达。Dmrt3基因在雌性和雄性的脑、垂体、性腺、肝脏、脾脏、心脏、肾脏7个组织中都有表达,但是表达量有差异,在精巢中的相对表达量高,Dmrt3基因在精巢的表达与其它组织中的表达差异极显著(P<0.01),而在卵巢中的表达很微弱,结果预示Dmrt3基因可能在雄性的性腺发育过程中起着重要的作用。高温处理组的雌性、雄性和伪雄鱼的性腺组织之间Dmrt3的表达无显著差异(P>0.05),但都极显著低于对照组的雄鱼(P<0.01)。高温处理组的伪雄鱼与对照组雌鱼性腺中Dmrt3的表达表达无显著差异(P>0.05)。甲基睾酮处理组的雄鱼和伪雄鱼性腺中Dmrt3的表达都显著高于对照组雄性(P<0.01)。从孵化后43 d到5月龄,Dmrt3的相对表达量很低,7月龄时表达量显著升高,9月龄时达到最高峰,12月龄时表达量下降,这也预示Dmrt3基因在半滑舌鳎性腺的发育过程中起重要作用,可能是促进生殖细胞发育的重要转录因子。  相似文献   

5.
克隆了半滑舌鳎(Cynoglossus semilaevis)Dmrt4基因DNA全序列,得到的序列长度为2271 bp,包含1个内含子,2个外显子,与其他鱼类的同源性在90%以上.Dmrt4基因在雌性和雄性半滑舌鳎的7个组织中都有表达,有差异表达的组织是脑、垂体和性腺,雄性的表达显著高于雌性(P<0.05).高温处理组的伪雄鱼中Dmrt4基因的表达与对照组的雌鱼没有显著差异(P>0.05),但是甲基睾酮处理组的雄鱼和伪雄鱼的表达显著高于对照组的雌鱼和雄鱼(P<0.05).Dmrt4基因的表达在胚胎发育过程中呈现先升高后降低的趋势,在原肠期表达量最高,显著高于其他几个时期(P<0.05),从尾芽形成期开始恢复到多细胞期的表达水平,之后几个时期 Dmrt4基因的表达无显著变化(P>0.05),一直到出膜前保持恒定.研究表明, Dmrt4基因是雄性中优势表达的基因,并且受雄性基激素调节,但并不是性反转的必要因素.这一研究为半滑舌鳎全雌群体的建立提供了分子水平的研究基础.  相似文献   

6.
半滑舌鳎抗缪勒氏管激素(AMH)基因的克隆及组织表达分析   总被引:2,自引:0,他引:2  
本研究克隆了半滑舌鳎(Cynoglossus semilaevis)AMH基因并对其进行表达分析。该基因cDNA序列开放阅读框长为1 563 bp,编码蛋白含520个氨基酸。该蛋白含有TGF-β超家族的特征序列,包含1个AMH-N区域和TGF-β结构域,并在C端生物活性区含有9个保守的半胱氨酸残基。系统进化分析表明,半滑舌鳎AMH和所有鱼类AMH聚为一簇,与鲽形目相似性最高。实时定量结果表明,AMH基因在半滑舌鳎不同组织中有差异表达,在正常雄鱼和伪雄鱼性腺中表达量最高。胚后不同时期性腺的实时定量结果表明,性腺分化之前AMH在精巢中相对表达量较低,70 dph(days post hatching)达到最高峰,而在卵巢中呈现先升高后下降的趋势,预示AMH基因可能在半滑舌鳎性腺发育中起重要作用。较正常雄鱼后代而言,AMH基因在伪雄鱼后代的雄鱼和伪雄鱼性腺中的表达都有升高的趋势,而在雌鱼中无明显差异,也预示其可能参与半滑舌鳎的性反转过程。  相似文献   

7.
半滑舌鳎养殖群体的性比与雌雄形态差异比较   总被引:3,自引:1,他引:2  
为研究半滑舌鳎养殖群体幼鱼阶段的性比变化,实验用分子标记法鉴定半滑舌鳎遗传性别,用组织切片方法鉴定表型性别,并比较了表型雌雄的生长差异。结果发现,在半滑舌鳎幼鱼阶段,在遗传性别上,雌雄所占比例约为1∶1,差异不显著(P>0.05)。在表型性别上,雌雄比例约为1∶3,差异极显著(P<0.01)。表型雄性中,由遗传性雄性和遗传上为雌性而表型上为雄性的"伪雄鱼"两部分组成。在养殖群体中,表型雌性、伪雄鱼和雄性三者的比例大致为1∶1∶2。养殖现场反映的雌性约占1/4的情况与本研究结果基本一致。本研究没有发现遗传上为雄性,而表型上为雌性的个体。在6~8月龄间,伪雄鱼的全长、体质量处于表型雌性与正常雄性之间,与两者均无显著差异。在相似全长范围内,雄鱼体高小于雌鱼,雄鱼的全长/体高的平均值为4.05,雌鱼的平均值为3.89,雄鱼的全长/体高比值显著大于雌鱼(P<0.05),此比值可以作为区分雌雄鱼苗种的参考。  相似文献   

8.
半滑舌鳎的性腺分化和温度对性别决定的影响   总被引:20,自引:2,他引:18       下载免费PDF全文
半滑舌鳎(Cynoglossus semilaevisGünther)是近年来新开发的一种理想的增养殖对象,雌性个体生长速度比雄性快2~3倍。由于温度可影响多种鱼类的性腺分化,因而探索温度对该鱼的性别决定和性腺分化的影响,获得性逆转雄性亲本,用于培育全雌后代,具有重要的应用前景和经济效益。通过石蜡组织切片,对半滑舌鳎早期性腺分化进行组织学观察。发现在24℃饲养条件下,孵化后30 d半滑舌鳎性腺开始分化,其中具有裂隙的性腺原基未来发育为卵巢,而不具裂隙的原基未来发育为精巢。在孵化后25~100 d对半滑舌鳎进行不同温度(16℃、20℃、24℃、28℃、32℃)处理,在9月龄时利用石蜡组织切片鉴定表型性别,观察温度对性腺分化的影响,结果表明,28℃和32℃高温能显著提高群体中的雄性比例,使其分别达到69.2%和66.7%;而低温16℃和20℃对性腺分化影响不大,群体中雄性比例分别为56.5%和57.1%;24℃处理群体中雌雄个体比例接近1∶1。半滑舌鳎雌性特异的遗传性别鉴定技术也检测到高温和低温处理组出现了由基因型雌性向表型雄性逆转的雄性个体。这些结果表明温度影响了半滑舌鳎性腺分化方向。  相似文献   

9.
采用RT-PCR法从大鲵(Andrias davidianus)性腺中分离获得Cyp51基因全长cDNA 1 975 bp, 5′端非编码区135 bp, 3′端非编码区331 bp,开放阅读框(ORF)1 509 bp,编码503氨基酸。生物信息学分析显示,Cyp51基因编码蛋白的二级结构含有50.20%的α-螺旋,9.96%的延伸链,3.59%的β-转角,36.25%的无规则卷曲。系统进化树显示,大鲵与两栖类中的热带爪蟾和非洲爪蟾同源性最高,与其它物种也有较高的同源性。qRT-PCR分析结果显示,Cyp51基因在卵巢、肝、肾等组织表达水平显著性高于其它各组织;性腺发育不同时期表达结果显示,Cyp51基因在1-5Y卵巢中表达显著性高于精巢,在6Y时无显著性差异;在雌性与伪雌性性腺中表达水平显著高于雄性及伪雄性性腺。结果表明Cyp51基因对大鲵的性腺分化,尤其是卵巢发育有着重要作用。  相似文献   

10.
本研究克隆了半滑舌鳎(Cynoglossus semilaevis)骨形态发生蛋白4(BMP4)基因的c DNA序列,并分析其在半滑舌鳎成鱼的组织表达分布及其在早期发育阶段的定位和表达变化趋势。结果表明,半滑舌鳎BMP4基因c DNA全长为1680 bp,包括了419 bp的5′非翻译区(5′UTR)、编码403个氨基酸的1212 bp的开放阅读框(ORF)以及49 bp的3′非翻译区(3′UTR)。同源性分析和分子进化聚类分析结果显示,半滑舌鳎与已报道慈鲷科(Cichlidae)各鱼种的同源性最高,并与之共同聚为鱼类BMP4分支。BMP4 m RNA在半滑舌鳎成鱼的13个组织中具有广泛的分布,并在鳃组织中表达量最高,其次在背鳍、软骨等组织具有中等水平的表达。此外,BMP4基因在早期胚胎发育阶段(卵裂期和原肠期)具有极高水平的表达,此后其表达水平逐渐降低;但在后期仔鱼期(孵化后3日龄和4日龄),其表达水平再次升高。整体原位杂交检测结果表明,BMP4 m RNA在早期仔鱼期主要在头部及躯干前部表达;后期仔鱼BMP4基因主要在冠状幼鳍、上下颌及胸鳍处表达;进入稚鱼期后在鳃盖骨及各鳍均有表达。上述研究结果揭示了BMP4在半滑舌鳎早期骨骼发育中的重要作用,为揭示海水硬骨鱼类骨骼发生、发育的调控机制奠定了理论基础。  相似文献   

11.
皮质醇在鱼类应对外界环境压力的过程中起到重要调控作用,而hsd11b1l和hsd11b2具有调节体内皮质醇浓度的重要功能。本研究克隆了半滑舌鳎(Cynoglossus semilaevis) hsd11b1l和hsd11b2基因的cDNA全长序列,分析了其序列特征,研究了其时空表达特征及温度响应的表达规律。结果显示,hsd11b1l cDNA全长为1650 bp,开放性阅读框长度为864 bp,编码287个氨基酸;hsd11b2 cDNA全长为4526 bp,开放性阅读框长度为1209 bp,编码402个氨基酸。半滑舌鳎不同组织和性腺发育时期的表达分析结果显示,hsd11b1l在肝脏中表达量最高,在卵巢的表达量是精巢的2倍,且在6月龄和3龄鱼的卵巢中呈现较高表达;而hsd11b2主要在精巢中表达,在6月龄鱼的精巢中表达量最高,随后表达量急剧降低,在卵巢中各个时期几乎不表达。半滑舌鳎温度响应的表达结果显示,高温(28℃)处理2个月后,与正常温度(22℃)对照组相比,hsd11b1l和hsd11b2在雄鱼中的表达量均显著降低(P<0.05);高温短期应激48h,hsd11b1l表达在雌鱼和雄鱼中均显著降低,hsd11b2表达仅在雄鱼中有显著下调(P<0.05)。本研究探讨了hsd11b1l和hsdl1b2基因在半滑舌鳎性别分化过程中的表达规律,为研究环境温度与半滑舌鳎性别分化之间的关系奠定了基础。  相似文献   

12.
为研究HIRA基因在半滑舌鳎胚胎发育中的作用及其组织差异表达,以半滑舌鳎为研究对象,采用同源克隆策略从其精巢中分离了长度为764bp的HIRA部分cDNA序列,该片段编码254个氨基酸,具有5个wD结构域。对氨基酸进行比较发现,半滑舌鳎HIRA与比较物种的氨基酸序列具有很高的同源性,与红鳍东方纯亲缘关系最近。实时定量PCR分析发现,HIRA mRNA在多细胞期到原肠胚期的表达量较高,表明HIRA对胚胎发育起重要作用;HIRA在不同组织中表达差异显著,其中在性腺中表达最高,推测HIRA在维持性腺的功能方面有一定作用。  相似文献   

13.
水温对半滑舌鳎性腺组织发育的影响   总被引:1,自引:0,他引:1  
汪娣  田永胜  陈松林 《水产学报》2012,36(2):262-271
探讨了不同温度(19,21,23,25和27 ℃)对半滑舌鳎的性腺组织发育的影响。在受精后39~106 d对半滑舌鳎进行温度控制处理,通过石蜡组织切片,对半滑舌鳎早期性腺分化发育进行组织学观察。发现在19 ℃饲养条件下,受精后46 d(pfd46)半滑舌鳎性腺原始生殖细胞数量增加,有分化成卵巢的倾向;在该条件下,pfd82半滑舌鳎性腺开始分化为精巢。pfd82时,27 ℃条件下的幼鱼卵巢中卵原细胞数目大量增殖;精巢中精小叶多而密,结缔组织间隔清晰。pfd129时,27 ℃处理的幼鱼卵巢发育到Ⅱ期,其他温度处理组仍处于Ⅰ期卵巢,但随着温度的提高,卵巢中卵母细胞数目增多,且由散乱分布变为有序的排列在卵巢小叶中;精巢中贮精囊数量增多,囊腔中精子增多。pfd142时,高温处理组幼鱼性腺发育最快,其Ⅱ期卵巢中卵母细胞数目最多,精巢中后期生精细胞偏多,精子几乎分布到各个精小叶中,且贮精囊结构发达,内纳高密度精子,在周围输精管中也分布着精子。结果表明,温度影响了半滑舌鳎性腺发育程度,二者呈现线性关系,在适当温度范围内,性腺发育速度随着温度升高而加快。  相似文献   

14.
15.
Although brook trout and the Arctic char hybrids are able to reproduce, individuals with decreased fertility or even fish that are unable to produce any gametes have been also described. Abnormal gonadal development and disturbances in the gamete production in the char hybrid offspring may be triggered by the odd chromosome number and disturbances in their pairing during meiosis. To verify this hypothesis, cytogenetic examination and the gonadal histology analysis of the brook trout x Arctic char hybrids were carried out. Diploid chromosome number in the studied char (F1) hybrids varied from 82 to 84 (FN = 99–102). Among 28 hybrids, 12 males, three females, nine intersex individuals and two sterile specimens were described. In the case of two individuals, gonads were not found. Diploid chromosome numbers in the males and intersex individuals varied from 82 to 84. Chromosome numbers in the females were 82 and 83 chromosomes. Two sterile fish exhibited karyotypes composed of 82 and 84 chromosomes. Predominance of the ovarian component in the intersex gonads and gonadal sex ratio distortion towards the males suggested hybrid females had problems with gonadal differentiation. However, the lack of the clear relationship between chromosome number and gonadal development in the studied hybrids did not support our hypothesis that odd chromosome number may be responsible for such reproductive disturbances in the hybrid individuals. We have presumed that sterility and intersexual development of the gonads may be caused by interactions between brook trout and Arctic char genes on the sex chromosomes and autosomes rather than unpairing of the parental chromosomes.  相似文献   

16.
This study investigated the effects of estrogens on sexual differentiation in sea bass (Dicentrarchus labrax L.), a gonochoristic marine teleost that under culture conditions has a histologically sexual undifferentiated period that covers most of the first year of life, after which most individuals develop as males. Sea bass that had no noticeable histological sign of sex differentiation were fed estrogens at two doses (5 or 10 mg kg-1 food) and for different periods ranging from 48 to 426 days post fertilization (DPF). Exposure to the synthetic estrogen 17-ethynylestradiol (EE2) at 10 mg kg-1 food from 60 to 260 DPF, including the sensitive period to equivalent doses of synthetic androgens previously determined for this species (126-226 DPF), significantly (p < 0.05) more than doubled the number of juvenile females to 80%, compared to the control value of 33%, and completely suppressed gonadal development in the remaining 20% of the population. This suggests that the period during which sea bass gonads exhibit high sensitivity to androgens is also very sensitive to estrogens. A comparable exposure to the natural estrogen estradiol-17 (E2) resulted in 13% of the fish having suppressed gonadal development, but induced 57% of the fish to develop gonads with germinal tissue of both sexes, suggesting a pivotal role for E2 during this sensitive period. Earlier exposure to EE2 at 10 mg kg-1 food from 48-88 DPF, significantly (p < 0.05) increased the number of females to 62% from 36% in the control group, allowing for the normal testicular development in the remaining fish. In contrast, a later chronic exposure (226-426 DPF) to E2, at either 5 or 10 mg kg-1 food, starting when the gonads showed no sign of sexual differentiation but past the critical sensitive period, had no effect on the resulting overall sex ratios, indicating that after this period responsiveness of the gonads to estrogens decreases as gonadal sexual differentiation progresses. However, the consequences of this apparently innocuous exposure were later manifested in adults, exemplified by a significant dose-dependent reduction in the number of mature males at 626 DPF, coinciding with the second reproductive season, the time when males normally reach sexual maturation in cultured sea bass. This suggests that chronic exposure to E2 past the critical sensitive period may not affect the sex ratio, but could result in alterations in the male reproductive organs. This was later verified by histological analysis which revealed a significant (p < 0.05) dose-dependent reduction of the surface of the testicular lobules in the remaining males that did not mature. Together, these experiments illustrate both readily observable and subtle effects of estrogens on sex proportions, gonadal morphology and maturation rates, providing evidence that estrogen exposure can have delayed action in a teleost in a manner similar to the effects described for mammalian species. The possible existence of effects of this latter type in adult fish could be considered when evaluating the consequences of deliberate or accidental exposure to estrogens or putative estrogenic chemicals, particularly if such exposure had taken place during sex differentiation.  相似文献   

17.
Ultrasound approach has been used to assess morphology of the gonadal structure in the sex-reversed rainbow trout females (neomales) provided in the course of 11β-hydroxyandrostenedione treatment applied within gonadal differentiation period. Eighteen matured individuals (in range 38.0–48.6 cm of body length and 802–1644 g of body weight) were scanned using digital ultrasound apparatus (DP-6900 model) Mindray Ltd., during the spawning season. After screening, fishes were killed to validate the morphological configuration and position of the gonads in the body cavity. The favorable place for cross-sectional imaging of gonadal lobes was half of the distance between the pectoral and pelvic fins below lateral line of neomales. Most of the examined specimens (61 %) had properly shaped, paired testis. Moreover, presence of individuals with asymmetrical gonads (33 %) and one bisexual fish was confirmed. There were no differences between total volume of sampled semen and sperm motility, but statistically significantly different in sperm concentration within selected (with symmetrical and asymmetrical testis) groups of neomales. It was confirmed that ultrasonic imaging is an efficient and accurate method to determine the state of gonads of mature sex-reversed rainbow trout females during spawning season and offers the opportunity for non-invasive detection of any morphological anomalies in their gonads.  相似文献   

18.
The photoreceptors regulating photoperiodic gonadal development of ayu, Plecoglossus altivelis, are not known. In this study, we examined whether the gonads of ophthalmectomized and pinealectomized (Ex+Px) ayu respond to short photoperiod. Gonadosomatic index (GSI) and plasma levels of sex steroids were significantly increased in Ex+Px ayu kept under short photoperiod in both males and females. On the other hand, there were no significant increase in GSI and sex steroids in Ex+Px ayu kept under long photoperiod. The histological observation of the gonads revealed that oocytes undergoing final maturation in females and proliferation of germ cells in males were observed only in Ex+Px ayu kept under short photoperiod. Altogether, our results strongly suggest unknown photoreceptive organ regulates photoperiodic gonadal development of ayu.  相似文献   

19.
G蛋白偶联雌激素受体(Gper)是一种膜雌激素受体,介导雌激素的非基因组途径。为研究G蛋白偶联雌激素受体基因( cDNA全长序列,利用qRT-PCR分析其在不同组织及胚胎不同发育阶段的性腺中的表达模式,并通过来曲唑(letrozole)和Gper抑制剂G-15处理雄鳖初步分析Gper在精巢中的作用。结果显示,中华鳖 cDNA序列全长2023 bp,包含705 bp 5''非编码区、241 bp 3''非编码区和1077 bp开放阅读框,编码358个氨基酸,其氨基酸序列上有7个跨膜结构域和Asp-Arg-Tyr(DRY)三联体结构,基因编码蛋白分子量为41.084 kD,等电点为6.844。表达量变化呈相同趋势:16期表达量最高,随着性腺分化过程表达量显著降低。Letrozole处理组中2表达量明显升高;G-15处理组精巢中,精子发生与促细胞凋亡相关基因表达量显著升高。结果表明,可能参与中华鳖性腺分化早期过程,并调控雄性生殖细胞增殖。  相似文献   

20.
大西洋鲑性腺分化及热休克的影响   总被引:9,自引:2,他引:7  
大西洋鲑性腺分化发生在孵出45-63天,约495-693度日。经热休克处理获得三倍体稚鱼,性腺在分化之前明显大于正常二倍体。雌性三倍体稚鱼性腺在细胞学分化时受抑,初级卵母细胞不能发育;雄性三倍体稚鱼性腺在细胞学分化阶段生长明显减慢,初级精母细胞尚能发育。  相似文献   

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