BMP2 signaling cooperates with retinoic acid to activate a meiotic-entry transcriptional program in chicken primordial germ cells

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Abstract

The initiation of meiosis in germ cells is largely regulated by extrinsic cues from the gonadal environment, but the logic of these signals remains poorly understood in non-mammalian vertebrates. Retinoic acid has long been considered a principal meiosis-inducing signal, yet recent genetic and reconstitution studies indicate that retinoic acid alone is insufficient. In mice, bone morphogenetic protein 2 cooperates with retinoic acid to establish the oogenic program through the bone morphogenetic protein-responsive transcriptional regulator Zglp1 , but whether this regulatory logic is conserved beyond mammals is unknown. Here, using cultured chicken ( Gallus gallus ) primordial germ cells, we show that bone morphogenetic protein 2 cooperates with retinoic acid to promote a meiotic-entry transcriptional program. Retinoic acid alone induced a limited retinoic acid-responsive state, whereas combined treatment reduced the primordial germ cell program and activated early meiotic genes. The resulting transcriptome matched the premeiotic-to-meiotic-entry transition of the embryonic ovary in a single-cell atlas of chicken germ cells. We also generated a genome-edited primordial germ cell line carrying an SYCP3 promoter–green fluorescent protein reporter as a platform for dissecting meiotic-entry signals in culture. Comparative genomic analysis revealed Gallus -specific pseudogenization of ZGLP1 , which is intact in closely related galliform species. Retinoic acid and bone morphogenetic protein may therefore act through a different downstream regulator in chicken.

Article summary

Eggs and sperm are produced by meiosis, a specialized cell division that starts during embryonic development. Retinoic acid, a signal derived from vitamin A, was long thought to be enough to start meiosis, but on its own it is not. In mice, a second signal, bone morphogenetic protein 2 (BMP2), works alongside retinoic acid to push germ cells toward the egg-producing program. We asked whether birds use the same combination. Giving both signals to chicken primordial germ cells in culture switched on genes for egg development and for the first steps of meiosis; retinoic acid alone did not. Birds and mammals last shared an ancestor more than 300 million years ago, so the pairing of these two signals appears to be an old feature of vertebrate germ cells. The cells stopped short of completing meiosis, which means other signals are still missing.

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