首页> 外文学位 >Plasma biochemical changes, ovarian steroidogenesis, and ultrastructural and histological observations during preovulatory ovarian atresia in captive white sturgeon (Acipenser transmontanus Richardson).
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Plasma biochemical changes, ovarian steroidogenesis, and ultrastructural and histological observations during preovulatory ovarian atresia in captive white sturgeon (Acipenser transmontanus Richardson).

机译:圈养白色st鱼(Acipenser transmontanus Richardson)排卵前卵巢闭锁期间的血浆生化变化,卵巢类固醇生成以及超微结构和组织学观察。

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Preovulatory ovarian atresia in white sturgeon has been observed under culture conditions, and it has been associated with unseasonably high or constant temperatures during oocyte polarization phase. Our objectives were to examine histological and ultrastructural changes in the ovarian follicles of females exposed to elevated temperature at different stages of oogenesis, concomitant changes in plasma sex steroids and vitellogenin levels, and in vitro follicular steroidogenesis. Gravid white sturgeon females were exposed to warm water (≥18°C) either before or after acquisition of oocyte maturational competence while control females were held at seasonal temperature (rising from 10°C in December to 16°C in May). Ovarian follicles (morphometry, in vitro steroid production, electron microscopy and histology) and blood (plasma estradiol, E2, androgens, A, vitellogenin, VTG) were sampled with 2--4 weeks intervals. Females kept at seasonal water temperature completed oocyte development, and normal ovulatory response to hormonal treatment and production of viable larvae were demonstrated. Fish exposed to warm water prior to acquisition of maturational competence exhibited arrested germinal vesicle migration, GVM, followed by ovarian atresia. Plasma E2 and VTG declined at a significantly faster rate than control. Atresia was associated with low plasma E2; A and VTG levels. Fish exposed to warm water after acquisition of maturational competence exhibited accelerated GVM and reached pre-spawning stage. Plasma E2 and VTG in these fish decreased at a significantly faster rate than in females kept at seasonal temperature, and no ovulatory response was obtained after GnRHa injection. The temperature-sensitive stage in late oogenesis of white sturgeon appears to occur during a period of protein synthesis required for the oocytes to reach maturational competence. Morphologically, the onset of follicular atresia is manifested by hypertrophy of granulosa layer, followed by digestion of the vitelline envelope, disruption of cytoplasmic cortex, and nuclear membrane dissolution. This is followed by rapid disintegration of the yolk platelets and formation of corpora atretica. Ultrastructurally, the first sign of atresia is hypertrophy of transformed granulosa cells is associated with accumulation of cytoplasmic vacuoles filled with granular material. The transformed granulosa cells secrete the granular material and, as a result, the chorion is liquefied. Concomitantly, the oocyte undergoes GVBD, the cytoplasm cortex is distorted, and the oolema disintegrates. Phagocytosis of oocyte content is carried out by transformed granulosa although the lymphocytes also infiltrate the thecal layer and may take part in oocyte resorption.
机译:在培养条件下,已观察到白色urge鱼的排卵前卵巢闭锁,并且在卵母细胞极化阶段与温度异常高或恒定有关。我们的目标是检查在不同卵子发育阶段暴露于高温的雌性卵巢卵泡的组织学和超微结构变化,血浆性类固醇和卵黄蛋白原水平的同时变化以及体外卵泡类固醇生成。怀孕的白色white鱼母在获得卵母细胞成熟能力之前或之后暴露于温水(≥18°C)中,而对照雌性则保持在季节性温度下(从12月的10°C升高至5月的16°C)。每隔2-4周采样一次卵巢卵泡(形态,体外类固醇生成,电子显微镜和组织学)和血液(血浆雌二醇,E2,雄激素,A,卵黄蛋白原,VTG)。保持在季节性水温下的雌性完成卵母细胞的发育,并证明了对激素治疗和活幼虫产生的正常排卵反应。在获得成熟能力之前,暴露于温水中的鱼表现出生发的囊泡迁移,GVM停滞,随后是卵巢闭锁。血浆E2和VTG的下降速度明显快于对照。闭锁与血浆E2低有关。 A和VTG级别。获得成熟能力后暴露在温水中的鱼表现出加速的GVM并达到产卵前阶段。这些鱼中的血浆E2和VTG的下降速度明显快于保持在季节性温度下的雌性,并且在注射GnRHa后没有排卵反应。白st鱼卵母细胞晚期的温度敏感性阶段似乎发生在卵母细胞达到成熟能力所需的蛋白质合成期间。形态上,卵泡闭锁的开始表现为颗粒层的肥大,然后是卵黄膜包膜的消化,细胞质皮质的破坏和核膜的溶解。随后是卵黄血小板的快速崩解和闭孔体的形成。在超微结构上,闭锁的第一个迹象是转化的颗粒细胞肥大,与充满颗粒物质的细胞质液泡的积累有关。转化的颗粒细胞分泌颗粒物质,结果绒毛膜被液化。伴随地,卵母细胞经历了GVBD,细胞质皮层变形,并且尿囊瓦解。卵母细胞内容物的吞噬作用是通过转化的颗粒进行的,尽管淋巴细胞也渗透到鞘层中并且可能参与卵母细胞的吸收。

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