Literature DB >> 23792279

Phenotypic characterization and in vitro propagation and transplantation of the Nile tilapia (Oreochromis niloticus) spermatogonial stem cells.

Samyra Maria Santos Nassif Lacerda1, Guilherme Mattos Jardim Costa, Mariana de Araújo da Silva, Paulo Henrique Almeida Campos-Junior, Tânia Mara Segatelli, Marco Túlio Diniz Peixoto, Rodrigo Ribeiro Resende, Luiz Renato de França.   

Abstract

In association with in vitro culture and transplantation, isolation of spermatogonial stem cells (SSCs) is an excellent approach for investigating spermatogonial physiology in vertebrates. However, in fish, the lack of SSC molecular markers represents a great limitation to identify/purify these cells, rendering it difficult to apply several valuable biotechnologies in fish-farming. Herein, we describe potential molecular markers, which served to phenotypically characterize, cultivate and transplant Nile tilapia SSCs. Immunolocalization revealed that Gfra1 is expressed exclusively in single type A undifferentiated spermatogonia (Aund, presumptive SSCs). Likewise, the expression of Nanos2 protein was observed in Aund cells. However, Nanos2-positive spermatogonia have also been identified in cysts with two to eight germ cells that encompass type A differentiated spermatogonia (Adiff). Moreover, we also established effective primary culture conditions that allowed the Nile tilapia spermatogonia to expand their population for at least one month while conserving their original undifferentiated (stemness) characteristics. The maintenance of Aund spermatogonial phenotype was demonstrated by the expression of early germ cell specific markers and, more convincingly, by their ability to colonize and develop in the busulfan-treated adult Nile tilapia recipient testes after germ cell transplantation. In addition to advancing our knowledge on the identity and physiology of fish SSCs, these findings provide the first step in establishing a system that will allow fish SSCs expansion in vitro, representing an important progress towards the development of new biotechnologies in aquaculture, including the possibility of producing transgenic fish.
Copyright © 2013 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Gfra1; Nanos2; Nile tilapia (Oreochromis niloticus); Spermatogonial stem cells; Spermatogonial transplantation; Stem cell markers

Mesh:

Substances:

Year:  2013        PMID: 23792279     DOI: 10.1016/j.ygcen.2013.06.013

Source DB:  PubMed          Journal:  Gen Comp Endocrinol        ISSN: 0016-6480            Impact factor:   2.822


  12 in total

1.  Extracellular matrix remodeling of the testes through the male reproductive cycle in Teleostei fish.

Authors:  Julio Cesar de Oliveira Santana; Irani Quagio-Grassiotto
Journal:  Fish Physiol Biochem       Date:  2014-08-21       Impact factor: 2.794

2.  Transcriptomes of testis and pituitary from male Nile tilapia (O. niloticus L.) in the context of social status.

Authors:  Michelle Thönnes; Rebecca Prause; Berta Levavi-Sivan; Frank Pfennig
Journal:  PLoS One       Date:  2022-05-11       Impact factor: 3.752

3.  Transcriptome analysis reveals differentially expressed genes associated with germ cell and gonad development in the Southern bluefin tuna (Thunnus maccoyii).

Authors:  Ido Bar; Scott Cummins; Abigail Elizur
Journal:  BMC Genomics       Date:  2016-03-10       Impact factor: 3.969

4.  INSL3 stimulates spermatogonial differentiation in testis of adult zebrafish (Danio rerio).

Authors:  L H C Assis; D Crespo; R D V S Morais; L R França; J Bogerd; R W Schulz
Journal:  Cell Tissue Res       Date:  2015-06-16       Impact factor: 5.249

5.  Gene delivery to Nile tilapia cells for transgenesis and the role of PI3K-c2α in angiogenesis.

Authors:  Fernanda Maria Policarpo Tonelli; Samyra Maria Dos Santos Nassif Lacerda; Marcela Santos Procópio; Breno Luiz Sales Lemos; Luiz Renato de França; Rodrigo Ribeiro Resende
Journal:  Sci Rep       Date:  2017-03-20       Impact factor: 4.379

6.  Meagre Argyrosomus regius (Asso, 1801) Stem Spermatogonia: Histological Characterization, Immunostaining, In Vitro Proliferation, and Cryopreservation.

Authors:  Rosa Zupa; Nicola A Martino; Giuseppina Marzano; Maria E Dell'Aquila; Aldo Corriero
Journal:  Animals (Basel)       Date:  2020-05-14       Impact factor: 2.752

7.  Molecular characterization and expression patterns of Nanog gene validating its involvement in the embryonic development and maintenance of spermatogonial stem cells of farmed carp, Labeo rohita.

Authors:  Swagat K Patra; Chakrpani Vemulawada; Meenati M Soren; Jitendra K Sundaray; Manoj K Panda; Hirak K Barman
Journal:  J Anim Sci Biotechnol       Date:  2018-06-11

Review 8.  Spermatogonial Stem Cells in Fish: Characterization, Isolation, Enrichment, and Recent Advances of In Vitro Culture Systems.

Authors:  Xuan Xie; Rafael Nóbrega; Martin Pšenička
Journal:  Biomolecules       Date:  2020-04-22

9.  Pou5f1 and Nanog Are Reliable Germ Cell-Specific Genes in Gonad of a Protogynous Hermaphroditic Fish, Orange-Spotted Grouper (Epinephelus coioides).

Authors:  Chaoyue Zhong; Meifeng Liu; Yuhao Tao; Xi Wu; Yang Yang; Tong Wang; Zining Meng; Hongyan Xu; Xiaochun Liu
Journal:  Genes (Basel)       Date:  2021-12-29       Impact factor: 4.096

10.  Isolation and Characterization of Highly Pure Type A Spermatogonia From Sterlet (Acipenser ruthenus) Using Flow-Cytometric Cell Sorting.

Authors:  Xuan Xie; Tomáš Tichopád; Galina Kislik; Lucie Langerová; Pavel Abaffy; Radek Šindelka; Roman Franěk; Michaela Fučíková; Christoph Steinbach; Mujahid Ali Shah; Ivo Šauman; Fan Chen; Martin Pšenička
Journal:  Front Cell Dev Biol       Date:  2021-12-10
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