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Khurchabilig, A.

Publications and source records attributed to Khurchabilig, A..

2 recordsLinked to original sources

Early transcriptional divergence underlies cell fate bias in bovine embryos

Developmental plasticity, or the ability of early embryonic cells to contribute to multiple lineages, is traditionally considered equal among sister blastomeres during early cleavage. However, divergence may occur earlier than expected. We performed single-cell RNA sequencing of bovine embryos from the 2- to 8-cell stages to examine transcriptional asymmetry. While gene expression was uniform at the 2-cell stage, variability increased at the 4-cell stage and became pronounced by the 8-cell stage. At this stage, blastomeres showed heterogeneity in MAPK pathway genes (e.g., RAC1, MAPK14) and the trophectoderm marker CDX2. These differences were associated with blastomere size; larger blastomeres more frequently initiated cavity formation, a functional marker of trophectoderm fate. Our findings suggest that both molecular and physical asymmetries contribute to early lineage bias, and that developmental plasticity may be lost in an asynchronous, cell-specific manner before visible morphological events such as compaction.

developmental biology↗

Compatibility of time-lapse dry incubator on in vitro production of bovine embryos

Embryo culture is crucial to achieve successful outcomes in assisted reproductive technology (ART) for cattle. This study explored the innovative use of dry incubators integrated with time-lapse monitoring systems for bovine embryo culture, building on their advantages in human medicine, such as reduced contamination risk, stable temperature control, and lower gas consumption. Our research demonstrates the feasibility of this approach, showing that although the osmotic pressure gradually increases over the culture period, it remains below the critical threshold for developmental impairment. Embryos cultured in dry incubators exhibited morphokinetics comparable to those cultured in conventional humidified time-lapse incubators. Furthermore, RNA-seq revealed that the transcriptomic profiles of blastocysts cultured in dry incubators closely matched those of blastocysts cultured in humidified incubators. These findings highlight the significant potential of dry incubators with time-lapse monitoring systems for the in vitro production of bovine embryos, marking a promising advancement in assisted reproductive technologies for the livestock industry and research setting.

developmental biology↗