Nie Haitao, Xu Yunlu, Zhang Yuqian, Wen Yue, Zhan Jixiang, Xia Yong, Zhou Yongkang, Wang Renping, Wu Xiaobing
Anhui Provincial Key Laboratory of the Conservation and Exploitation of Biological Resources, College of Life Sciences, Anhui Normal University, Wuhu, Anhui Province, 241000, People's Republic of China.
Alligator Research Center of Anhui Province, Xuanzhou, 242000, People's Republic of China.
BMC Zool. 2023 Jul 4;8(1):8. doi: 10.1186/s40850-023-00170-z.
The precise mechanisms of hormone action responsible for the full course of events modulating folliculogenesis in crocodilian have not been determined, although histological features have been identified.
The Alligator sinensis ovarian morphological characteristics observed at 1, 15, 30, 60, 90, and 300 days post hatching(dph) revealed that the dynamic changes in germ cells varied in different meiotic and developmental stages, confirming that the processes of folliculogenesis were protracted and asynchronous. The presence of endogenous follicle-stimulating hormone(FSH) mRNA and protein expression within the cerebrum at 1 dph, in parallel with the increase in germ cells within the germ cell nests(Nest) from 1 dph to 15 dph, suggested that endocrine regulation of the pituitary-gonad axis is an early event in oogonia division. Furthermore, the endogenous expression of FSH showed a trend of negative feedback augmentation accompanied by the exhaustion of maternal yolk E observed at 15 dph. Such significant elevation of endogenous FSH levels was observed to be related to pivotal events in the transition from mitosis to meiosis, as reflected by the proportion of oogonia during premeiosis interphase, with endogenous FSH levels reaching a peak at the earliest time step of 1 dph. In addition, the simultaneous upregulation of premeiotic marker STRA8 mRNA expression and the increase in endogenous FSH further verified the above speculation. The strongly FSHr-positive label in the oocytes within Pre-previtellogenic follicles was synchronized with the significant elevation of ovarian cAMP detected at 300 dph, which suggested that diplotene arrest maintenance during early vitellogenesis might be FSH dependent. In addition, preferential selection in asynchronous meiotic initiation has been supposed to act on somatic supportive cells and not directly on germ cells via regulation of FSH that in turn affects downstream estrogen levels. This suggestion was verified by the reciprocal stimulating effect of FSH and E on the accelerated meiotic marker SYCP3 and by the inhibited cell apoptosis demonstrated in ovarian cell culture in vitro.
The corresponding results contribute an expansion of the understanding of physiological processes and shed some light on the specific factors responsible for gonadotropin function in the early folliculogenesis of crocodilians.
尽管已经确定了组织学特征,但鳄鱼卵泡发生全过程中激素作用的确切机制尚未明确。
对孵化后1、15、30、60、90和300天(dph)的中华鳄卵巢形态特征观察发现,生殖细胞的动态变化在不同减数分裂和发育阶段有所不同,证实卵泡发生过程是漫长且异步的。孵化后1天大脑中存在内源性促卵泡激素(FSH)mRNA和蛋白表达,同时从孵化后1天到15天生殖细胞巢(Nest)内生殖细胞数量增加,这表明垂体-性腺轴的内分泌调节是卵原细胞分裂的早期事件。此外,FSH的内源性表达呈现负反馈增强趋势,同时在孵化后15天观察到母体卵黄E耗尽。观察到内源性FSH水平的显著升高与从有丝分裂向减数分裂转变的关键事件有关,以前减数分裂间期卵原细胞的比例为指标,内源性FSH水平在最早的孵化后1天达到峰值。此外,减数分裂前标记物STRA8 mRNA表达的同时上调和内源性FSH的增加进一步证实了上述推测。前卵黄生成前期卵泡内卵母细胞中强烈的FSHr阳性标记与孵化后300天检测到的卵巢cAMP显著升高同步,这表明早期卵黄生成过程中双线期停滞的维持可能依赖于FSH。此外,推测异步减数分裂起始中的优先选择作用于体细胞支持细胞,而非通过调节FSH直接作用于生殖细胞,FSH进而影响下游雌激素水平。FSH和E对加速减数分裂标记物SYCP3的相互刺激作用以及体外卵巢细胞培养中显示的细胞凋亡抑制,证实了这一推测。
相应结果有助于扩展对生理过程的理解,并为鳄鱼早期卵泡发生中促性腺激素功能的特定因素提供一些线索。