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Updated: Apr 19, 2026

In Ovo Intravascular Injection in Chicken Embryos
Published on: June 3, 2022
Spatial and temporal action of chicken primordial germ cells during initial migration
Kyung Soo Kang1, Hyung Chul Lee1, Hyun Jeong Kim1
1Department of Agricultural BiotechnologyCollege of Agriculture and Life Sciences, and Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul 151-921, KoreaDepartment of Animal Science and TechnologyChung-Ang University, Anseong 456-756, KoreaGraduate School of International Agricultural Technology and Institute of Green-Bio Science and TechnologySeoul National University, Pyeongchang-gun, Gangwon-do, Seoul 232-916, Korea.
Abstract:
In most animals, primordial germ cells (PGCs) originate from an extragonadal region and migrate across the embryo to the gonads, where they differentiate and function. During their migration, PGCs move passively by morphogenetic movement of the embryo or move actively through signaling molecules. To uncover the underlying mechanism of first-phase PGC migration toward the germinal crescent in chickens, we investigated the spatial and temporal action of PGCs during primitive streak formation. Exogenously transplanted PGCs migrated toward the anterior region of the embryo and the embryonic gonads when they were transplanted into the subgerminal cavity, but not into the posterior marginal zone, in Eyal-Giladi and Kochav stage X embryos. These results indicate that for passive migration toward the anterior region the initial location of PGCs should be the central region. Notably, although PGCs and DF-1 cells migrated passively toward the anterior region, only PGCs migrated to the germinal crescent, where endogenous PGCs mainly reside, by active movement. In a live-imaging experiment with green fluorescence protein-expressing transgenic embryos, exogenous PGCs demonstrated markedly faster migration when they reached the anterior one-third of the embryo, while somatic cells showed epiblast movement with constant speed. Also, migrating PGCs exhibited successive contraction and expansion indicating their active migration. Our results suggest that chicken PGCs use sequential passive and active forces to migrate toward the germinal crescent.

