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Review
. 2024 Feb;41(1):60-67.
doi: 10.2108/zs230054.

Ovarian Follicle Development in Ascidians

Affiliations
Review

Ovarian Follicle Development in Ascidians

Honoo Satake et al. Zoolog Sci. 2024 Feb.

Abstract

Ovarian follicle development is an essential process for continuation of sexually reproductive animals, and is controlled by a wide variety of regulatory factors such as neuropeptides and peptide hormones in the endocrine, neuroendocrine, and nervous systems. Moreover, while some molecular mechanisms underlying follicle development are conserved, others vary among species. Consequently, follicle development processes are closely related to the evolution and diversity of species. Ciona intestinalis type A (Ciona rubusta) is a cosmopolitan species of ascidians, which are the closest relative of vertebrates. However, unlike vertebrates, ascidians are not endowed with the hypothalamus-pituitary-gonadal axis involving pituitary gonadotropins and sexual steroids. Combined with the phylogenetic position of ascidians as the closest relative of vertebrates, such morphological and endocrine features suggest that ascidians possess both common and species-specific regulatory mechanisms in follicle development. To date, several neuropeptides have been shown to participate in the growth of vitellogenic follicles, oocyte maturation of postvitellogenic follicles, and ovulation of fully mature follicles in a developmental stage-specific fashion. Furthermore, recent studies have shed light on the evolutionary processes of follicle development throughout chordates. In this review, we provide an overview of the neuropeptidergic molecular mechanism in the premature follicle growth, oocyte maturation, and ovulation in Ciona, and comparative views of the follicle development processes of mammals and teleosts.

Keywords: Ciona intestinalis Type A; ascidian; follicle; maturation; ovulation; peptide.

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References

    1. Adams BA, Tello JA, Erchegyi J, Warby C, Hong DJ, Akinsanya KO, et al. (2003) Six novel gonadotropin-releasing hormones are encoded as triplets on each of two genes in the protochordate, Ciona intestinalis. Endocrinology 144: 1907–1919
    1. Aoyama M, Kawada T, Fujie M, Hotta K, Sakai T, Sekiguchi T, et al. (2008) A novel biological role of tachykinins as an up-regulator of oocyte growth: identification of an evolutionary origin of tachykininergic functions in the ovary of the ascidian, Ciona intestinalis. Endocrinology 149: 4346–4356
    1. Aoyama M, Kawada T, Satake H (2012) Localization and enzymatic activity profiles of the proteases responsible for tachykinin-directed oocyte growth in the protochordate, Ciona intestinalis. Peptides 34: 186–192
    1. Azumi K, Sabau SV, Fujie M, Usami T, Koyanagi R, Kawashima T, et al. (2007) Gene expression profile during the life cycle of the urochordate Ciona intestinalis. Dev Biol 308: 572–582
    1. Bassett JH, van der Spek A, Logan JG, Gogakos A, Bagchi-Chakraborty J, Williams AJ, et al. (2015) Thyrostimulin Regulates Osteoblastic Bone Formation During Early Skeletal Development. Endocrinology 156: 3098–3113

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