In higher eukaryotes, gene architecture and structural properties of promoters have emerged as significant factors influencing variation in number of transcripts (expression level) and specificity of gene expression in a tissue (expression breadth), which eventually shape the phenotype. In this study, transcriptome data of different tissue types at various developmental stages of A. thaliana, O. sativa, S. bicolor and Z. mays have been used to understand the relationship between properties of gene components and its expression. Our findings indicate that in plants, among all gene architecture and structural properties of promoters, compactness of genes in terms of intron content is significantly linked to gene expression level and breadth, ...
<div><p>Transcription initiation, essential to gene expression regulation, involves recruitment of b...
Transcription initiation, essential to gene expression regulation, involves recruitment of basal tra...
In the past few years virtually every aspect of plant gene expression has been covered by thoughtful...
In higher eukaryotes, gene architecture and structural properties of promoters have emerged as signi...
Regulation of gene expression via specific cis-regulatory promoter elements has evolved in cellular ...
Plant promoters have attracted increasing attention because of their irreplaceable role in modulatin...
Background: The understanding of the mechanisms of transcriptional regulation remains a challenge fo...
The transcription of protein encoding genes and their regulation in plant cells shows the signature ...
Recently features of gene expression profiles have been associated with structural parameters of gen...
Hexamer distribution plot shows the preferred hexamers in the promoter regions (-200 to 0) of broadl...
In both the monocot rice and the dicot Arabidopsis, highly expressed genes have more and longer intr...
It is now well known that vertebrates use multiple types of core promoter to accomplish differentiat...
Reproducibility in organ size and shape is a fundamental trait of living organisms. Themechanisms un...
<div><p>Transcription initiation, essential to gene expression regulation, involves recruitment of b...
Transcription initiation, essential to gene expression regulation, involves recruitment of basal tra...
In the past few years virtually every aspect of plant gene expression has been covered by thoughtful...
In higher eukaryotes, gene architecture and structural properties of promoters have emerged as signi...
Regulation of gene expression via specific cis-regulatory promoter elements has evolved in cellular ...
Plant promoters have attracted increasing attention because of their irreplaceable role in modulatin...
Background: The understanding of the mechanisms of transcriptional regulation remains a challenge fo...
The transcription of protein encoding genes and their regulation in plant cells shows the signature ...
Recently features of gene expression profiles have been associated with structural parameters of gen...
Hexamer distribution plot shows the preferred hexamers in the promoter regions (-200 to 0) of broadl...
In both the monocot rice and the dicot Arabidopsis, highly expressed genes have more and longer intr...
It is now well known that vertebrates use multiple types of core promoter to accomplish differentiat...
Reproducibility in organ size and shape is a fundamental trait of living organisms. Themechanisms un...
<div><p>Transcription initiation, essential to gene expression regulation, involves recruitment of b...
Transcription initiation, essential to gene expression regulation, involves recruitment of basal tra...
In the past few years virtually every aspect of plant gene expression has been covered by thoughtful...