Department of Biology, Bartram Hall, University of Florida, Gainesville, FL, USA. bmoore2 @ tulane.edu
Sex Dev. 2010;4(1-2):62-72. doi: 10.1159/000277934. Epub 2010 Jan 22.
Paracrine factor signaling regulates many aspects of vertebrate gonadal development. We investigated key ovarian and testicular morphological markers of the American alligator (Alligator mississippiensis) during the first 5 months post-hatching and correlated gonadal development with mRNA expression levels of a suite of regulatory factors. In both sexes, we observed significant morphology changes, including ovarian follicle assembly and meiotic progression of testicular germ cells. Concomitant with these changes were sexually dimorphic and ontogenetically variable mRNA expressions. In ovaries, FOXL2, aromatase, and follistatin mRNA expression was greater than in testes at all ages. At one week after hatching, we observed ovarian medullary remodeling in association with elevated activin/inhibin beta A subunit, follistatin, and aromatase mRNA expressions. Three and 5 months following hatching and concomitant with follicle assembly, ovaries showed increased mRNA expression levels of GDF9 and the mitotic factor PCNA. In testes, the activin/inhibin alpha and beta B subunit transcript levels were greater than in ovaries at all ages. Elevated testicular expression of GDF9 mRNA levels at 5 months after hatching aligned with increased spermatogenic activity. We propose that the mRNA expression levels and concomitant morphological changes observed here affect the establishment of alligator reproductive health and later fertility.
旁分泌因子信号调节脊椎动物性腺发育的许多方面。我们在孵化后前 5 个月研究了美洲鳄(Alligator mississippiensis)的卵巢和睾丸形态学关键标志物,并将性腺发育与一系列调节因子的 mRNA 表达水平相关联。在两性中,我们观察到了显著的形态变化,包括卵巢卵泡的组装和睾丸生殖细胞的减数分裂进展。伴随这些变化的是性别二态性和个体发育变化的 mRNA 表达。在卵巢中,FOXL2、芳香酶和卵泡抑素的 mRNA 表达在所有年龄段都高于睾丸。在孵化后一周,我们观察到卵巢髓质重塑与激活素/抑制素βA 亚基、卵泡抑素和芳香酶 mRNA 表达升高有关。在孵化后 3 个月和 5 个月时,伴随着卵泡的组装,卵巢显示出 GDF9 和有丝分裂因子 PCNA 的 mRNA 表达水平增加。在睾丸中,激活素/抑制素α和βB 亚基的转录水平在所有年龄段均高于卵巢。孵化后 5 个月睾丸中 GDF9 mRNA 水平的升高与精子发生活性的增加一致。我们提出,这里观察到的 mRNA 表达水平和伴随的形态变化影响了鳄鱼生殖健康的建立和以后的生育能力。