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1.
熊成 《中国蜂业》2022,(3):49-50
<正>一、雄蜂生殖生物学研究概述精子形成发生在雄蜂幼虫期后期和预蛹期,精子分化发生在蛹期。精子形成始于胚胎形成和精巢的发育。精巢由精小管组成,精小管中充满初级精原细胞或未分化的生殖细胞。在幼虫发育的最后阶段(第5日龄),初级精原细胞经历4次有丝分裂形成16个次级精原细胞。次级精原细胞经历一系列有丝分裂成为初级精母细胞。从幼虫期后期到预蛹期,精子形成包含两轮减数分裂。第一次减数分裂发生在幼虫期后期,第二次减数分裂发生在预蛹期。  相似文献   

2.
为比较不同繁殖季节成年牦牛附睾组织结构特征变化,应用苏木精-曙红常规染色、Masson's和Gomori's特殊组织化学染色方法比较不同繁殖季节牦牛(6头繁殖期成年牦牛和9头繁殖间期成年牦牛)附睾的组织结构特点并用IPP图像分析软件进行定量分析。结果显示,与繁殖间期相比,繁殖期附睾尾间质胶原纤维和网状纤维较附睾头及附睾体明显增多;附睾头和附睾体柱状上皮厚度显著增加(P<0.05),附睾头纤毛长度增加显著(P<0.05);附睾头和附睾尾管腔内径及外径显著增高(P<0.05);但是附睾尾管腔外径繁殖期与繁殖间期相比差异不显著(P>0.05)。本研究结果表明,成年牦牛附睾管外围网状纤维与胶原纤维分布一致,二者在附睾尾较为丰富,可能与其较强的收缩能力及精子运输有关;柱状纤毛上皮高度及纤毛长度、管腔内径与外径的变化与其所处的不同繁殖季节密切相关,附睾管腔的膨大和回缩亦可能是高原地区季节性繁殖的哺乳动物中一种普遍存在的现象。  相似文献   

3.
为了探讨不同时程睡眠剥夺对雄性小鼠生殖系统的影响,试验采用轻柔刺激法分别睡眠剥夺昆明雄性小鼠24,48,72 h,镜检并计算精子活率、精子畸变率、附睾尾精子数,并进行睾丸组织病理学检查。结果表明:24 h睡眠剥夺后精子活率、附睾尾精子数、精子畸变率均无显著变化(P0.05)。小鼠的极少部分生精细胞发生变性、空泡化,大部分细胞为正常细胞,管腔中仍有大量精子,但48 h与72 h睡眠剥夺后精子活率极显著降低(P0.01),附睾尾精子数极显著降低(48 h,P0.01;72 h,P0.001),精子畸变率极显著升高(48 h,P0.01;72 h,P0.001)。48 h睡眠剥夺小鼠曲细精管的部分间质细胞发生变质水肿,少部分生精细胞发生变性、空泡化,管腔中精子数量减少;72 h睡眠剥夺小鼠生精细胞水肿、变性、空泡化明显,管腔中各级精子数量大量减少且个别精子变性水肿。说明48 h睡眠剥夺及72 h睡眠剥夺可对雄性小鼠生殖系统产生明显不良影响。  相似文献   

4.
为了阐明树鼩精子中是否存在丝氨酸/苏氨酸蛋白磷酸酶1γ2(PP1γ2)及其在附睾精子中的存在形式,进而探究PP1γ2对精子成熟和运动性的调控作用,本试验以树鼩为研究对象,采用Western blotting分析了不同条件下树鼩附睾头和附睾尾精子中PP1γ2的存在形式和磷酸化程度,探讨了双丁酰环腺苷酸(db-cAMP)、3-异丁基-1-甲基黄嘌呤(IBMX)或Ca2+对树鼩精子中PP1γ2磷酸化表达水平的影响,并进一步研究了磷酸酶抑制剂冈田酸(okadaic acid,OA)和花萼海绵诱癌素A(calyculin A,CA)对树鼩精子中PP1γ2磷酸化程度的影响及其对树鼩附睾头和附睾尾精子运动度的影响。结果显示,在树鼩附睾头和附睾尾精子中均存在PP1γ2,且在等量的附睾头和附睾尾精子蛋白中,PP1γ2在附睾尾精子的磷酸化程度远高于附睾头精子;db-cAMP、IBMX或Ca2+不改变PP1γ2的磷酸化水平;磷酸酶抑制剂OA和CA能明显提高附睾头和附睾尾中PP1γ2磷酸化的程度,且能显著提高精子(尤其是附睾头精子)的运动度(P<0.05),OA和CA的最佳作用浓度分别为1μmol/L和10 nmol/L,最佳作用时间分别为15、20 min。本研究结果表明,蛋白磷酸酶PP1γ2对树鼩精子成熟及运动性具有重要的调控作用,其主要通过磷酸化和去磷酸化的变化发挥作用。  相似文献   

5.
为了阐明树鼩精子中是否存在丝氨酸/苏氨酸蛋白磷酸酶1γ2(PP1γ2)及其在附睾精子中的存在形式,进而探究PP1γ2对精子成熟和运动性的调控作用,本试验以树鼩为研究对象,采用Western blotting分析了不同条件下树鼩附睾头和附睾尾精子中PP1γ2的存在形式和磷酸化程度,探讨了双丁酰环腺苷酸(db-cAMP)、3-异丁基-1-甲基黄嘌呤(IBMX)或Ca2+对树鼩精子中PP1γ2磷酸化表达水平的影响,并进一步研究了磷酸酶抑制剂冈田酸(okadaic acid,OA)和花萼海绵诱癌素A (calyculin A,CA)对树鼩精子中PP1γ2磷酸化程度的影响及其对树鼩附睾头和附睾尾精子运动度的影响。结果显示,在树鼩附睾头和附睾尾精子中均存在PP1γ2,且在等量的附睾头和附睾尾精子蛋白中,PP1γ2在附睾尾精子的磷酸化程度远高于附睾头精子;db-cAMP、IBMX或Ca2+不改变PP1γ2的磷酸化水平;磷酸酶抑制剂OA和CA能明显提高附睾头和附睾尾中PP1γ2磷酸化的程度,且能显著提高精子(尤其是附睾头精子)的运动度(P<0.05),OA和CA的最佳作用浓度分别为1 μmol/L和10 nmol/L,最佳作用时间分别为15、20 min。本研究结果表明,蛋白磷酸酶PP1γ2对树鼩精子成熟及运动性具有重要的调控作用,其主要通过磷酸化和去磷酸化的变化发挥作用。  相似文献   

6.
哺乳动物精子经过附睾成熟后才能获得运动及受精的能力,为解释水牛精子在附睾中的成熟过程,本研究选用性成熟期的沼泽型水牛附睾,利用乙烯吡咯烷酮包裹的硅胶微小颗粒(Percoll)梯度离心纯化分别提取附睾头、体和尾部精子,应用计算机辅助精子分析系统(CASA)检测精子活力,透射电镜观察附睾不同部位精子的超微结构,对精子进行荧光标记后,利用流式细胞仪和荧光显微镜观察检测不同部位精子质膜完整率、线粒体鞘膜电位和顶体差异。结果表明,Percoll分离得到附睾头、体和尾3部位精子的纯度达95%,不同部位精子活力分别为8.35%、20.21%和65.60%;附睾不同部位精子都存在着结构完整的精子以及相同的畸形类型,附睾尾部精子线粒体鞘高膜电位比率最高,精子质膜完整率从附睾头部到尾部逐渐升高,精子顶体完整率从附睾头部到尾部逐渐升高。本研究直观地展示了水牛附睾不同部位精子特征以及差异,为研究水牛精子成熟机理提供理论依据。  相似文献   

7.
精细胞膜是一种异质结构,它在维持精子运行、活力和受精能力方面起着极为重要的作用。应用单抗隆抗体研究精子表面的抗原。可以从分子水平深入了解精细胞膜的特性。精子由睾丸的曲精细管生成,然后通过附睾头和附睾尾,最后排出。在这一过程中,精细胞是逐步发育和成熟分化的。可以用高度特异性的单克隆抗体检测这一过程中精细胞抗原位点的分布和变化以及研究精子受精被抑制的机制。  相似文献   

8.
小鼠实验性隐睾诱发生殖细胞类型变化   总被引:1,自引:0,他引:1  
利用 3 0~ 3 5日龄昆白系小鼠制作实验性隐睾 ,定期分批朴杀取样 ,检查隐睾组织学及生殖细胞群体变化 ,为生殖细胞富集及提高体内精原干细胞转基因效率提供条件和依据。结果表明 ,盆腔隐睾精子发生被阻断于精子形成阶段 ;经历 1 5d以上 ,曲细精管内精子数量较少 ;腹腔隐睾精子发生被阻断于精原细胞向精母细胞过渡阶段 ;经历 3 0 d以上 ,曲细精管仅由精原细胞、少量精母细胞及支持细胞组成。由此可知 ,制作盆腔隐睾 ,可得到含少量精子的生殖细胞群体以及主要含精原细胞的生殖细胞群体  相似文献   

9.
旨在研究高原地区小尾寒羊附睾细胞外基质相关蛋白的分布特征。应用Masson’s、Gomori’s、PAS和AB-PAS(pH=2.5)组织化学染色方法观察5只健康成年高原地区小尾寒羊附睾的组织结构特点,进而用免疫组织化学SP法观察层粘连蛋白(LN)、Ⅳ型胶原蛋白(ColⅣ)和硫酸乙酰肝素蛋白多糖(HSPG)的分布特征。高原地区小尾寒羊附睾各部分管腔为柱状纤毛上皮,附睾尾间质胶原纤维和网状纤维较附睾头及附睾体明显增多。PAS反应显示附睾头和附睾尾阳性强于附睾体,AB-PAS反应显示附睾头、体、尾阳性差异较小。免疫组织化学显示,ColⅣ在附睾头和附睾体组织中表达最强,HSPG次之,LN表达较弱,HSPG和LN的阳性表达差异不显著(P0.05);而HSPG在附睾尾组织中表达最强,LN次之,ColⅣ表达较弱,HSPG和LN的阳性表达差异不显著(P0.05)。高原地区小尾寒羊附睾尾间质胶原纤维和网状纤维的分布较附睾头和附睾体多,附睾各部分中PAS的反应强弱与附睾上皮分泌功能的变化密切相关,附睾头和附睾尾输精管的分泌功能增强。附睾头上皮基细胞ColⅣ、HSPG和LN分泌增加,且ColⅣ、HSPG和LN与血管的调节作用密切相关。  相似文献   

10.
从生殖细胞—精原细胞—精母细胞—精子细胞—精子的逐步发育过程中,细胞表面都携带抗原,并且随发育阶段与发育程度的不同其抗原数量、种类和分布发生相应改变。精子离开支持细胞进入精细管—睾丸网—睾丸输出管—附睾—附睾输出管直至射出体外,其表面抗原发生修饰(modifi cation)、被覆(coating)、插入(insertion)和丢失(loss)等方面的变化。因此研究精子表面抗原可以判断精子发育处于何种阶段和何种组织器官。应用单抗技术、免疫沉淀技术和免疫荧光技术,目前在精子表面已发现十几种抗原,大致分成白身抗原和非自身抗原两类。自身抗原是精子自身特有的,其它体细胞没有,具有组织特异性的抗原,由于血睾屏障的保护,不发生自身免疫反应。例如,睾丸炎的病人,血睾屏障被破坏,精子渗漏,引起外周血中抗精子抗体滴度升高,杀伤精子而导致雄性不育,这提示自身抗原可被人类用于制备避孕疫苗。非自身抗原来源于睾丸  相似文献   

11.
Testes of 15 wild adult male raccoon dogs (Nyctereutes procynoides) obtained from September 2000 to April 2001 were studied to clarify seasonal changes in spermatogenesis and testicular steroidogenesis. There were marked seasonal variations in the testis weight and size with values relatively low in September and highest in March. Spermatogonia and primary spermatocytes were observed in September, while spermatogonia, spermatocytes and round spermatids were present in January, and all types of spermatogenic cells including mature spermatozoa were found in the mating season (February and March). The number of spermatogenic cells reached their peak values in February and March. In addition, steroidogenic enzymes were immunolocalized using polyclonal antisera raised against bovine adrenal cholesterol side-chain cleavage cytochrome P450 (P450scc), human placental 3beta-hydroxysteroid dehydrogenase (3 betaHSD), porcine testicular 17alpha-hydroxylase cytochrome P450 (P450c17), and human placental aromatase cytochrome P450 (P450arom). P450scc and P450c17 were identified in Leydig cells and spermatids in February, whereas these enzymes were present only in Leydig cells in September. 3betaHSD was found in Leydig cells in September and February with more intense staining in February. The localization of P450arom changed seasonally: no immunostaining in September; more extensive immunostaining in Leydig cells, Sertoli cells, and elongating spermatids in February. These results suggest that seasonal changes in the testis weight and size of wild male raccoon dogs are correlated with changes in spermatogenesis. Seasonal changes in testicular steroidogenesis suggest that the synthesis of androgen and estrogen reaches its peak in the mating season.  相似文献   

12.
The objective of this study was to investigate immunolocalization of steroidogenic enzymes 3βHSD, P450c17 and P450arom and their expression during the breeding season in wild male raccoon dogs. The testicular weight, size and seminiferous tubule diameters were measured, and histological and immunohistochemical observations of testes were performed. The messenger RNA expression (mRNA) of 3βHSD, P450c17 and P450arom was measured in the testes during the breeding season. 3βHSD was found in Leydig cells during the breeding and non‐breeding seasons with more intense staining in the breeding season. P450c17 was identified in Leydig cells and spermatids in the breeding season, whereas it was present only in Leydig cells in the non‐breeding season. The localization of P450arom changed seasonally: no immunostaining in the non‐breeding season; more extensive immunostaining in Leydig cells, Sertoli cells and elongating spermatids in the breeding season. In addition, 3βHSD, P450c17 and P450arom mRNA were also expressed in the testes during the breeding season. These results suggested that seasonal changes in testicular weight, size and seminiferous tubule diameter in the wild raccoon dog were correlated with spermatogenesis and immunoreactivity of steroidogenic enzymes and that steroidogenic enzymes may play an important role in the spermatogenesis and testicular recrudescence and regression process.  相似文献   

13.
The objective of this study was to investigate the seasonal changes in spermatogenesis and the immunolocalization of the inhibin alpha and inhibin/activin (betaA and betaB) subunits during the breeding and non-breeding seasons in the wild male ground squirrel. The testicular weight and size and seminiferous tubule diameter were measured, and histological observations of testes were performed. The sections of the testes were immunostained by the avidin-biotin-peroxidase complex method (ABC) using polyclonal antisera raised against porcine inhibin alpha, inhibin/activin betaA and inhibin/activin betaB during the breeding and non-breeding seasons. There were marked variations in testicular weight and size and seminiferous tubule diameter between the breeding and non-breeding seasons, and all types of spermatogenic cells, including spermatozoa, were found in the breeding season. In addition, immunoreactivity was also detected for the inhibin alpha, betaA and betaB subunits in Sertoli and Leydig cells during the breeding season, but immunostaining was only present for the inhibin alpha and inhibin/activin betaB subunits in Sertoli cells during the non-breeding season. These results suggest that seasonal changes in testicular weight and size and seminiferous tubule diameter of wild ground squirrels are correlated with changes in spermatogenesis, and the cellular localization of the inhibin/activin subunits showed season related changes in the breeding and non-breeding seasons.  相似文献   

14.
The purpose of this study was to obtain detailed quantitative information on all cell types in the testis interstitium of Korean ring-necked pheasants and to combine these data with changes in the steroidogenic function of the testis during the breeding and non-breeding seasons. For animals collected during the breeding season, their testis weights, sperm production, serum testosterone levels and leuteinizing hormone (LH)-stimulated testosterone secretion were significantly (p < 0.01) increased compared to the non-breeding season. Testes of the pheasants during the non-breeding season displayed a 98% reduction in testis volume that was associated with a decrease in the absolute volume of seminiferous tubules (98% reduction), tubular lumen (100%), interstitium (90%), blood vessels (84%), lymphatic spaces (97%), Leydig cells (79%), mesenchymal cells (51%) and myoid cells (61%) compared to the breeding season. The numbers of Leydig cells, mesenchymal cells and myoid cells per testis in the breeding season were much higher than in the non-breeding season. Although the mean volume of a Leydig cell was 74% lower in the non-breeding season, the mean volumes of myoid and mesenchymal cells remained unchanged. These results demonstrate that there are striking differences in the testicular structure of the Korean ring-necked pheasant during the breeding and non-breeding seasons. Every structural parameter of the Leydig cell was positively correlated with both testosterone serum levels and LH-stimulated testosterone secretion. The correlation of changes in hormonal status with the morphometric alterations of Leydig cells suggests that the Korean-ring necked pheasant may be used as a model to study structure-function relationships in the avian testis.  相似文献   

15.
The raccoon is a seasonal breeder with a mating season in the winter. In a previous study, adult male raccoons exhibited active spermatogenesis with high plasma testosterone concentrations, in the winter mating season. Maintenance of spermatogenesis generally requires high testosterone, which is produced by steroidogenic enzymes. However, even in the summer non-mating season, some males produce spermatozoa actively despite low plasma testosterone concentrations. To identify the factors that regulate testosterone production and contribute to differences in spermatogenetic activity in the summer non-mating season, morphological, histological and endocrinological changes in the testes of wild male raccoons should be known. In this study, to assess changes in the biosynthesis, metabolism and reactivity of testosterone, the localization and immunohistochemical staining intensity of four steroidogenic enzymes (P450scc, P450c17, 3βHSD, P450arom) and the androgen receptor (AR) were investigated using immunohistochemical methods. P450scc and P450c17 were detected in testicular tissue throughout the year. Seasonal changes in testosterone concentration were correlated with 3βHSD expression, suggesting that 3βHSD may be important in regulating the seasonality of testosterone production in raccoon testes. Immunostaining of P450arom and AR was detected in testicular tissues that exhibited active spermatogenesis in the summer, while staining was scarce in aspermatogenic testes. This suggests that spermatogenesis in the raccoon testis might be maintained by some mechanism that regulates P450arom expression in synthesizing estradiol and AR expression in controlling reactivity to testosterone.  相似文献   

16.
To compare the histological changes of the adult yak's epididymis in different breeding seasons,six adult yak testis in breeding season and nine adult yak testis in breeding interval were collected for structure investigation by HE staining,Masson's and Gomori's histochemistry methods,and IPP (Image-Pro Plus) statistics method was used to quantitative statistics.The results showed that comparing with the adult yak in the breeding interval,the epididymis ducts of adult yak in the breeding season were covered with the columnar ciliated epithelium.The collagen and reticular fiber in cauda epididymis were obviously more abundant than caput and corpus epididymitis.And the thickness of columnar epithelium cells in caput and corpus epididymitis,the length of the cilia in caput,and also the internal and external lumen diameter of caput and corpus epididymitis were all significantly increased in the breeding season (P<0.05),but the external lumen diameter of the cauda epididymis had no significant differences (P>0.05).In conclusion,the research showed that the distribution of collagen and reticular fiber in adult yak's epididymis interstitial were similar,and they were more rich in cauda epididymis,which might relate to the capacity and the sperm transport;The changes of the epithelial thickness,the length of cilia,the internal and external lumen diameter were close related to the different breeding seasons,and it might be a common phenomenon in plateau mammals that the enlargement and reduction of the epididymal duct in different breeding seasons.  相似文献   

17.
The platelet-derived growth factor (PDGF) system is expressed and can exert its biological role in the male reproductive system including the maintenance of morphological structure and function of the epididymis. The aim of this study was to clarify the relationship between the PDGF system and seasonal changes in morphology of the wild ground squirrel epididymis during the breeding and nonbreeding seasons. Hematoxylin-eosin (HE) staining was used to observe the epididymal morphology and histology. Immunohistochemistry and Western blotting were performed to detect the immunoreactivities of PDGF-A and B and PDGFR-α. Significant seasonal changes in epididymal morphology were observed in the breeding and nonbreeding seasons. The proportions of the three compartments (interstitial tissue, epithelium and lumen of the duct) revealed distinct variances. Strong immunostaining of PDGF-A was present in the myoid cell and on the sperm in the breeding season, whereas there was a faint signal in the myoid cell in the nonbreeding season. PDGFR-α was expressed in all cell types of the epithelium throughout the whole seasonal cycle, and immunostaining of PDGFR-α in the breeding season was significantly stronger compared with that of the nonbreeding season. PDGF-B was not detected in the epididymis of wild ground squirrels. These results suggested that seasonal morphological changes in epididymis were correlated with immunoreactivities of PDGF-A and its receptor PDGFR-α and that PDGF-A and PDGFR-α might function as paracrine, autocrine or apocrine factors in wild ground squirrels.  相似文献   

18.
The seasonal spermatogenesis and localization of inhibin/activin subunits (alpha, betaA, betaB) in the testes of wild ground squirrel has been previously described; however, the expression pattern of activin receptors and cytoplasmic signaling SMADs has not been detected in any seasonal breeders. The objective of this study was to investigate the abundance and cellular localization of activin signaling components in testes of the wild ground squirrel during the breeding and nonbreeding seasons. The immunolocalizations of ActRIIB (activin type II receptor B) and activin-related SMADs (phospho-SMAD2/3, SMAD4 and SMAD7) were observed by immunohistochemistry. Total proteins were extracted from testicular tissues in the breeding and nonbreeding seasons and were used for Western blotting analysis for ActRIIB and SMADs. Immunoreactivities of activin signaling components were greater in the testes of the breeding season, and then decreased to a relatively low level in the nonbreeding season. ActRIIB and related SMADs were widely spread in the active testes, while spermatogonia were the predominant cellular sites of activin signal transduction during arrested spermatogenesis. The dynamic regulation of activin type II receptor and SMADs indicated that the activin signal pathway played an important paracrine role in seasonal spermatogenesis of the wild ground squirrel. Furthermore, the distinct localizations and immunoreactivity of ActRIIB and SMADs might suggest different functions of activin in seasonal spermatogenesis.  相似文献   

19.
The objective of this study was to investigate reproductive characteristics of stallions at a tropical zone in the breeding and non-breeding seasons. The following parameters were assessed: testicular volume; semen quality; and serum concentrations of LH, FSH, and testosterone; in addition to the percentages of germ cells and proportions of germ cells/Sertoli cells by testicular cytology in stallions. Semen was collected from eight adult stallions twice a week during a 12-week period in both seasons (6?weeks before and 6?weeks after the summer and winter solstices). Jugular blood samples were collected periodically for hormone analysis by radioimmunoassay during the same periods. Testicular measures and cytological samples were taken at the end of each period. Mean concentration of testosterone was significantly higher (P?=?0.04) during the breeding season and the proportion of Sertoli cells/100 germ cells in cytological smears was significantly lower during the breeding season (P?=?0.0001). Effects of season were not significant either for testicular volume or for any semen parameter (P?>?0.05). Seasonal changes in the mean concentrations of LH and FSH were not observed (P?>?0.05). There were also no significant differences in the mean percentages of germ cell types between both seasons (P?>?0.05). Lack of seasonal differences in the testicular volume and semen parameters of tropical stallions are probably due to the small variation in duration of natural light between the observed periods, slightly under 3?h.  相似文献   

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