<p>The relationship of transcription factors (circle) and the associated functions (yellow round rectangle) were shown as overview (A) and two modules predominantly expressed in embryo (B) and endosperm (C) respectively, were shown in detail. The circles with red, green and blue colors represent the transcription factors expressed in embryo, endosperm, or both embryo and endosperm.</p
<p>Transcription factors are connected solely on the basis of the similarity of the modules that the...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
The complex interactions between transcription factors (TFs) and their target genes in a spatially a...
<p>The expressions were normalized and the red or blue lines (words) indicate the up-regulated or do...
A) Network of predicted co-occurring TFs in ESCs. Nodes in the network represent transcription facto...
<p>Schematic visualization of shared associations between transcription factors (TFs), miRNAs, and d...
<p>A proposed model of somatic embryogenesis-related gene expression networks as determined by coexp...
<p>Genes (or nodes) are connected by an edge only when a significant partial correlation with a TF w...
<p>A) Predicted transcriptional module developed from the ChipEnrich program; B) predicted transcrip...
<p>The results by qRT-PCR analysis (box plot) are compared with data obtained from microarray hybrid...
<p>Upper panels correspond to the visualization of the entire network comprising 2,450 nodes (or gen...
<p>(A) E13 network, (B) E16 network. Gene node shape code: oval and circle – protein; diamond – liga...
<p>From the co-expression network constructed using the top 25 up-regulated and 25 down-regulated di...
<p>A node represents a TF gene and an edge indicates a significant co-expression relationship betwee...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
<p>Transcription factors are connected solely on the basis of the similarity of the modules that the...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
The complex interactions between transcription factors (TFs) and their target genes in a spatially a...
<p>The expressions were normalized and the red or blue lines (words) indicate the up-regulated or do...
A) Network of predicted co-occurring TFs in ESCs. Nodes in the network represent transcription facto...
<p>Schematic visualization of shared associations between transcription factors (TFs), miRNAs, and d...
<p>A proposed model of somatic embryogenesis-related gene expression networks as determined by coexp...
<p>Genes (or nodes) are connected by an edge only when a significant partial correlation with a TF w...
<p>A) Predicted transcriptional module developed from the ChipEnrich program; B) predicted transcrip...
<p>The results by qRT-PCR analysis (box plot) are compared with data obtained from microarray hybrid...
<p>Upper panels correspond to the visualization of the entire network comprising 2,450 nodes (or gen...
<p>(A) E13 network, (B) E16 network. Gene node shape code: oval and circle – protein; diamond – liga...
<p>From the co-expression network constructed using the top 25 up-regulated and 25 down-regulated di...
<p>A node represents a TF gene and an edge indicates a significant co-expression relationship betwee...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
<p>Transcription factors are connected solely on the basis of the similarity of the modules that the...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
The complex interactions between transcription factors (TFs) and their target genes in a spatially a...