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Hsu, C.-w.

Publications and source records attributed to Hsu, C.-w..

2 recordsLinked to original sources

Zebrafish Foxl2l functions in proliferating germ cells for female meiotic entry

AbstractZebrafish sex differentiation is a complicated process and the detailed mechanism has not been fully understood. Here we characterized a transcription factor, Foxl2l, that participates in female oogenesis. We show that it is expressed specifically in proliferating germ cells in juvenile gonads and mature ovaries. We have used CRISPR-Cas9 to generate zebrafish deficient in foxl2l expression. Zebrafish with foxl2l-/- are all males, and this female-to-male sex reversal cannot be reversed by tp53 mutation, indicating this sex reversal is unrelated to cell death. We have generated transgenic fish expressing GFP under the control of foxl2l promoter to track the development of foxl2l+-germ cells, which failed to enter meiosis and were accumulated as cystic cells. Our RNA-seq analysis also showed the reduced expression of genes in meiosis and oogenesis among other affected pathways. All together, we show that zebrafish Foxl2l is a nuclear factor controlling the expression of meiotic and oogenic genes, and its deficiency leads to defective meiotic entry and the accumulation of premeiotic germ cells. HighlightsO_LIZebrafish foxl2l is expressed only in proliferating germ cells in juvenile gonads and mature ovaries. C_LIO_LIFoxl2l is a nuclear factor that promotes expression of genes involved in meiosis and oogenesis. C_LIO_LIZebrafish depleted of foxl2l lack meiotic oocytes in juveniles and become all males in adults. C_LIO_LIMutation of foxl2l leads to the accumulation of premeiotic germ cells. C_LI

developmental biology↗

Zebrafish Foxl2l suppresses stemness and directs feminization of germline progenitors

Zebrafish is an important organism for genetic studies, but its germ cell types and the mechanism of sex differentiation remain elusive. Here, we conducted a single-cell transcriptomic profiling and charted a developmental trajectory going from germline stem cells, through early, committed, and late progenitors, to pre-meiotic and meiotic cells. A transcription factor, Foxl2l, is expressed in the progenitors committed to the ovary fate. CRISPR-Cas9-mediated mutation of foxl2l produced 100% male fish with normal fertility. Another single-cell profiling of foxl2l-/- germ cells reveals the arrest of early progenitors. Concomitantly the expression of nanos2 (stem cell marker) and id1 (transcription repressor in stem cells) was elevated together with an increase of nanos2+ germ cell in foxl2l mutants, indicating the reversion to the stem cell state. Thus, we have identified developmental stages of germ cells in juvenile zebrafish and demonstrated that Foxl2l drives zebrafish germ cell progenitors toward feminization and prevents them from reverting back to the stem cell state.

developmental biology↗