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1.
可口革囊星虫受精过程及早期卵裂的细胞学变化   总被引:2,自引:0,他引:2  
为探究可口革囊星虫(Phascolosoma esculenta)受精过程中精子入卵、极体排放、雌雄原核的形成与结合以及早期卵裂的特点,为胚胎发育机制研究奠定基础及指导人工育苗,显微观察了可口革囊星虫卵母细胞的形态;用荧光染色剂HOECHST33258对已固定的成熟卵及受精卵进行染色的方法,在荧光显微镜下观察了可口革囊星虫受精过程及第一与第二次卵裂的细胞学变化。成熟卵呈椭圆形,卵膜较厚,核区偏位,染色体排列整齐。在水温30℃-31℃、盐度23条件下,授精后5min-10min,精子完成入卵;授精后10min-20min,完成第一次减数分裂、释放第一极体;授精后20min-30min,完成第二次减数分裂、放出第二极体,部分受精卵的第一极体分裂为二;授精后30min-40min,雌、雄原核形成,并相互靠近向卵中央迁移;授精后40min-50min,雌、雄原核在卵中央结合成合子核;授精后50min-70min及70min-90min分别完成第一及第二次卵裂。可口革囊星虫的受精过程及早期卵裂的细胞学特点为:1)成熟卵是处在第一次减数分裂中期的初级卵母细胞,具有受精能力;2)精子入卵位点是随机的,存在多精入卵现象;3)雌、雄原核以融合方式结合成合子核;4)第一及第二次卵裂均为经裂、不等裂。  相似文献   

2.
异源四倍体鲫鲤的成熟卵子处于第二次减数分裂中期,精子通过受精孔进入卵内.精子入卵以后,受精孔立即被受精塞堵住.受精后8 min,受精卵出现明显的精子星光,同时进入第二次减数分裂后期,即将排出第二极体;13 min时,精子头部开始膨胀,趋向核化;18 min时,雌雄原核均已形成,并向胚盘中央靠近;23 min时,雌、雄原核开始接触;33 min时,雌、雄原核完全融合成为一个合子核;38 min时,受精卵开始第一次卵裂,53 min后分裂形成两个子核.该研究证明异源四倍体鲫鲤和大多数二倍体鱼一样,具有正常的受精细胞学程序,受精方式为单精受精.  相似文献   

3.
异源四倍体鲫鲤的受精细胞学   总被引:17,自引:0,他引:17  
异源四倍体鲫鲤的成熟卵子处于第二次减数分裂中期,精子通过受精孔进入卵内。精子入卵以来,受精孔立即被受精塞堵住。受精后8min,受精卵出现明显的精子星光,同时进入第二次减数分裂后期,即将排出第二极体;13min时,精子头部开始膨胀,趋向核化;18min时,雌雄原核均已形成,并向胚盘中央靠近;23min时,雌,雄原核开始接触;33min时,雌,雄原核完全融合成为一个合子核;38min时,受精卵开始第一次卵裂,53min后分裂形成两个子核。该研究证明异源四倍体鲫鲤和大多数二倍体鱼一样,具有正常的受精细胞学程序,受精方式为单精受精。  相似文献   

4.
红鲫与湘江野鲤杂交的受精细胞学研究   总被引:15,自引:0,他引:15  
吴端生  刘筠 《动物学研究》1993,14(3):277-282
红鲫成熟卵直径680—720μm;卵膜孔为精子入卵的唯一通道,包括前庭和精孔管两部分;精孔管内径约5μm。湘江野鲤精子头部直径约2.5μm。在通常情况下,红鲫卵为单精受精。尽管红鲫与湘江野鲤不同属,但杂交仍具有正常的受精细胞学程序。红鲫卵子处于第二次成熟分裂中期接受湘江野鲤精子入卵,精子入卵5min后,出现明显的精子星光;15min后,雄性原核及雌性原核形成;25min后,雌、雄性原核融合;30min后、开始卵裂,发现1个受精卵切片上有4个即将融合的原核,这可能是由于双精受精所致。  相似文献   

5.
荷包红鲫 (♀ )×湘江野鲤 (♂ )杂交产生的杂种一代 ( F1)成熟卵的直径为1 .0~ 1 .2 5mm;为单受精孔卵 ,一般只允许单个精子入卵 ;成熟卵在受精前处于第二次减数分裂中期 ;鲫鲤杂种一代的雄性部分可育 ,能产生正常的精子 ;杂种一代的受精方式为单精受精 ,具有正常的受精细胞学程序 .受精 30 s后 ,精子通过受精孔进入卵质 ;5min后 ,精子产生明显星光 ;1 5min后 ,精子头部膨大核化 ,最后形成雄性原核 ,与此同时 ,雌性原核也开始形成 ;2 5min后 ,雌、雄原核向胚盘中央靠近 ,然后彼此接触 ,最后融合为合子核 ;40 min后 ,开始第一次卵裂 ,在一个受精卵第一次卵裂中期的切片上看到了一个三极纺锤体 .  相似文献   

6.
中国对虾受精过程中精卵核的细胞学变化   总被引:9,自引:0,他引:9  
中国对虾精子以其棘部顶端随机附着在卵上,精子在凝胶膜形成后,第一极体排出前入卵,精子入卵后,絮状的精核经过重建形成雄原核,中国对虾卵子排放时处于第一次成熟分裂的中期,卵子入海水时,纺锤体的长轴与质膜平行,卵子激活后,纺锤体的长轴开始旋转,旋转至纺鲑体长轴与质膜垂直时,由纺锤丝牵引着染色体向两极移动,外侧的染色体由质膜包裹形成第一极体,受膜举起后,由次级卵母细胞排放出第二极体,此后,单倍雌核重建形成雌原核,雄原核形成早于雌原核,雌雄原核于卵子中央联会形成联合核,受精后的50分钟纺锤丝牵关染色体称向两极,质膜内缢断裂形成两个细胞的胚胎。  相似文献   

7.
中华鲟受精细胞学研究   总被引:12,自引:2,他引:10  
许雁  熊全沫 《动物学报》1990,36(3):275-279
中华鲟(Acipenser sinensis Gray)的成熟卵具有一层放射膜及二层卵黄膜。在动物极有9—15个受精孔。每一受精孔有一大的入口(12.7—13.9μm直径)及一细长的受精管道(1.2—1.3μm直径)。 进入受精孔的许多精子只能按序入卵。其中只有一个精子的头部膨大核化,最后形成雄性原核。同时活跃的卵子也形成雌性原核。雌、雄原核彼此接触,最后融合成合子核,随后分成两个子核。 中华鲟的受精方式为多精入卵,单精受精。  相似文献   

8.
栉孔扇贝(♀)×虾夷扇贝( ♂ )受精细胞学观察   总被引:17,自引:0,他引:17  
采用Bouin氏液固定、石蜡包埋、切片 ,用苏木精 伊红染色 ,在光学显微镜下观察栉孔扇贝 (♀ )与虾夷扇贝 (♂ )杂交的受精细胞学过程。尽管栉孔扇贝与虾夷扇贝同科不同属 ,但它们的杂交仍具有正常的受精细胞学程序。栉孔扇贝卵子处于第一次成熟分裂中期时接受虾夷扇贝的精子入卵 ,精卵混合后 6min精子入卵 ;8~ 1 0min精核略微膨胀 ;2 5~ 3 0min排出第一极体 ;1h左右 ,雌雄原核同时形成 ;1小时 3 0分钟左右 ,雌雄原核融合 ;2h左右开始卵裂。杂交过程中的精子入卵行为较本交迟缓 ,但杂交后代仍能正常发育  相似文献   

9.
研究旨在探讨泥鳅精子受精时限及为其人工繁殖提供基础资料。采用光镜、电镜技术对泥鳅(Misgurnus anguillicaudatus)精子、卵子和不同时间段的受精卵进行了观察。结果显示:泥鳅精子头部无顶体,主要为核占据,核凹窝较浅,中段具不对称的袖套,尾部轴丝为9+2结构,无侧鳍。卵子动物极卵膜仅有一受精孔,受精孔为深凹陷、短孔道型。在20-21℃水温条件下,授精后3s,精子开始穿过精孔管或已经进入卵子;授精后5-8s,形成精子星光;授精后70s,卵子处于第二次减数分裂后期;授精后6-8min,第二极体形成,等待排出;授精后20-25min,雌雄原核融合;授精后25-30min,受精卵进入第一次有丝分裂中期;授精后40-45min,第一次有丝分裂结束,二细胞形成。研究表明:成熟卵子精孔管内口径(2.2860.364)m,而精子头部直径与其接近,单精受精;入水后150s内可受精。  相似文献   

10.
《生命科学研究》2016,(1):25-28
人工诱导雌核发育二倍化的关键是掌握极体排出和卵裂的时机,掌握该规律最直接的方式即进行受精细胞学的研究。以鞍带石斑鱼(Epinephelus lanceolatus)为父本,斜带石斑鱼(Epinephelus coioides)为母本,通过人工授精获得受精卵,收集受精后不同时刻的卵子,经Smith′s液固定、石蜡包埋、切片、苏木精-伊红染色和显微组织观察。结果表明:受精后第30~60 s精子入卵;第3 min精子星光出现;第5 min卵子排出第二极体;第7~15 min雌雄原核相互靠近,并最终融合;第15 min以后合子核开始分裂。鞍带石斑鱼精子进入斜带石斑鱼卵子的时间与多数硬骨鱼类比较没有显著差别;但是,第二极体排出及第一次卵裂的时间较早。研究展示了斜带石斑鱼与鞍带石斑鱼杂交的受精细胞学的基本发育过程,并为后续的人工诱导石斑鱼雌核发育研究提供了理论依据。  相似文献   

11.
正Dear Editor,In December 2019, a novel human coronavirus caused an epidemic of severe pneumonia(Coronavirus Disease 2019,COVID-19) in Wuhan, Hubei, China(Wu et al. 2020; Zhu et al. 2020). So far, this virus has spread to all areas of China and even to other countries. The epidemic has caused 67,102 confirmed infections with 1526 fatal cases  相似文献   

12.
Curcumin is the yellow pigment of turmeric that interacts irreversibly forming an adduct with thioredoxin reductase (TrxR), an enzyme responsible for redox control of cell and defence against oxidative stress. Docking at both the active sites of TrxR was performed to compare the potency of three naturally occurring curcuminoids, namely curcumin, demethoxy curcumin and bis-demethoxy curcumin. Results show that active sites of TrxR occur at the junction of E and F chains. Volume and area of both cavities is predicted. It has been concluded by distance mapping of the most active conformations that Se atom of catalytic residue SeCYS498, is at a distance of 3.56 from C13 of demethoxy curcumin at the E chain active site, whereas C13 carbon atom forms adduct with Se atom of SeCys 498. We report that at least one methoxy group in curcuminoids is necessary for interation with catalytic residues of thioredoxin. Pharmacophore of both active sites of the TrxR receptor for curcumin and demethoxy curcumin molecules has been drawn and proposed for design and synthesis of most probable potent antiproliferative synthetic drugs.  相似文献   

13.
The young pistils in the melanthioid tribes, Hewardieae, Petrosavieae and Tricyrteae, are uniformly tricarpellate and syncarpous. They lack raphide idioblasts. All are multiovulate, with bitegmic ovules. The Petrosavieae are marked by the presence of septal glands and incomplete syncarpy. Tepals and stamens adhere to the ovary in the Hewardieae and the Petrosavieae but not in the Tricyrteae. Two vascular bundles occur in the stamens of the Hewartlieae and Tricyrtis latifolia. Ventral bundles in the upper part of the ovary of the Hewardieae are continuous with compound septal bundles and placental bundles in the lower part. Putative ventral bundles occur in the alternate position in the Tricyrteae and putative placental bundles in the opposite. position in the Petrosavieae. The dichtomously branched stigma in each carpel of the Tricyrteae is supplied by a bifurcated dorsal bundle.  相似文献   

14.
15.
Highlights
1. The N-terminal tail of histone H3 is specifically cleaved during EV71 infection.
2. Viral protease 3C is identified as a protease responsible for proteolytically processing the N-terminal H3 tail.
3. Our finding reveals a new epigenetic regulatory mechanism for Enterovirus 71 in virus-host interactions.  相似文献   

16.
Rasmussen’s encephalitis (RE) is a rare pediatric neurological disorder, and the exact etiology is not clear. Viral infection may be involved in the pathogenesis of RE, but conflicting results have reported. In this study, we evaluated the expression of both Epstein-Barr virus (EBV) and human herpes virus (HHV) 6 antigens in brain sections from 30 patients with RE and 16 control individuals by immunohistochemistry. In the RE group, EBV and HHV6 antigens were detected in 56.7% (17/30) and 50% (15/30) of individuals, respectively. In contrast, no detectable EBV and HHV6 antigen expression was found in brain tissues of the control group. The co-expression of EBV and HHV6 was detected in 20.0% (6/30) of individuals. In particular, a 4-year-old boy had a typical clinical course, including a medical history of viral encephalitis, intractable epilepsy, and hemispheric atrophy. The co-expression of EBV and HHV6 was detected in neurons and astrocytes in the brain tissue, accompanied by a high frequency of CD8+ T cells. Our results suggest that EBV and HHV6 infection and the activation of CD8+ T cells are involved in the pathogenesis of RE.  相似文献   

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18.
Shen  Jia-Yuan  Li  Man  Xie  Lyu  Mao  Jia-Rong  Zhou  Hong-Ning  Wang  Pei-Gang  Jiang  Jin-Yong  An  Jing 《中国病毒学》2021,36(1):145-148
正Dear Editor,Chikungunya virus (CHIKV), an arbovirus in the family of Togaviridae, genus Alphavirus, is transmitted by the A.aegyptii or A. albopictus mosquito, and causes disease in humans characterized by fever, rash, and arthralgia (Silva and Dermody 2017; Suhrbier 2019). It was first reported in 1953 in Tanzania, and caused only a few outbreaks and sporadic cases in Africa and Asia in last century. However, in the epidemic in 2004, CHIKV acquired mutations that conferred enhanced transmission by the A. albopictus mosquito(Schuffenecker et al. 2006). Since then, it has successively caused outbreaks in Africa, the Indian Ocean, South East Asia, the South America, and Europe (Zeller et al. 2016).  相似文献   

19.
In conclusion, the novel visual RT-LAMP assay is a simple, rapid, and sensitive approach for detection of SARS-CoV-2, and it is ready for application in primary care and community hospitals or health care centers, and even patients' own houses in response to the current SARS-CoV-2 epidemic because the assay does not require sophisticated equipment and skilled personnel. Furthermore, it is also ready to be used in fields for screening samples from wild animals and environments to facilitate the identification of potential intermediate hosts that mediate the cross-species transmission of SARS-CoV-2 from bats to humans.  相似文献   

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