SummaryMouse studies have been instrumental in forming our current understanding of early cell-lineage decisions; however, similar insights into the early human development are severely limited. Here, we present a comprehensive transcriptional map of human embryo development, including the sequenced transcriptomes of 1,529 individual cells from 88 human preimplantation embryos. These data show that cells undergo an intermediate state of co-expression of lineage-specific genes, followed by a concurrent establishment of the trophectoderm, epiblast, and primitive endoderm lineages, which coincide with blastocyst formation. Female cells of all three lineages achieve dosage compensation of X chromosome RNA levels prior to implantation. However, ...
textabstractX chromosome inactivation (XCI) is the mammalian mechanism that compensates for the diff...
AbstractEarly mammalian embryogenesis is controlled by mechanisms governing the balance between plur...
In human embryos, the initiation of transcription (embryonic genome activation [EGA]) occurs by the ...
SummaryMouse studies have been instrumental in forming our current understanding of early cell-linea...
Understanding lineage specification during human pre-implantation development is a gateway to improv...
Mammalian pre-implantation development is a complex process involving dramatic changes in the transc...
<p><strong>Abstract:</strong> Here, we provide fundamental insights into early human development by ...
BACKGROUND: Little is understood of the molecular mechanisms involved in the earliest cell fate deci...
Single-cell profiling techniques create opportunities to delineate cell fate progression in mammalia...
Background: Little is understood of the molecular mechanisms involved in the earliest cell fate deci...
Mammalian embryonic development is one of the most complex biological processes that involves multip...
X chromosome inactivation (XCI) is the mammalian mechanism that compensates for the difference in ge...
X chromosome inactivation (XCI) is the mammalian mechanism that compensates for the difference in ge...
Preimplantation development is a crucial step in early human development. However, the molecular bas...
Measuring gene expression in individual cells is crucial for understanding the gene regulatory netwo...
textabstractX chromosome inactivation (XCI) is the mammalian mechanism that compensates for the diff...
AbstractEarly mammalian embryogenesis is controlled by mechanisms governing the balance between plur...
In human embryos, the initiation of transcription (embryonic genome activation [EGA]) occurs by the ...
SummaryMouse studies have been instrumental in forming our current understanding of early cell-linea...
Understanding lineage specification during human pre-implantation development is a gateway to improv...
Mammalian pre-implantation development is a complex process involving dramatic changes in the transc...
<p><strong>Abstract:</strong> Here, we provide fundamental insights into early human development by ...
BACKGROUND: Little is understood of the molecular mechanisms involved in the earliest cell fate deci...
Single-cell profiling techniques create opportunities to delineate cell fate progression in mammalia...
Background: Little is understood of the molecular mechanisms involved in the earliest cell fate deci...
Mammalian embryonic development is one of the most complex biological processes that involves multip...
X chromosome inactivation (XCI) is the mammalian mechanism that compensates for the difference in ge...
X chromosome inactivation (XCI) is the mammalian mechanism that compensates for the difference in ge...
Preimplantation development is a crucial step in early human development. However, the molecular bas...
Measuring gene expression in individual cells is crucial for understanding the gene regulatory netwo...
textabstractX chromosome inactivation (XCI) is the mammalian mechanism that compensates for the diff...
AbstractEarly mammalian embryogenesis is controlled by mechanisms governing the balance between plur...
In human embryos, the initiation of transcription (embryonic genome activation [EGA]) occurs by the ...