Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A high-resolution map of transcription in the yeast genome

View through CrossRef
There is abundant transcription from eukaryotic genomes unaccounted for by protein coding genes. A high-resolution genome-wide survey of transcription in a well annotated genome will help relate transcriptional complexity to function. By quantifying RNA expression on both strands of the complete genome of Saccharomyces cerevisiae using a high-density oligonucleotide tiling array, this study identifies the boundary, structure, and level of coding and noncoding transcripts. A total of 85% of the genome is expressed in rich media. Apart from expected transcripts, we found operon-like transcripts, transcripts from neighboring genes not separated by intergenic regions, and genes with complex transcriptional architecture where different parts of the same gene are expressed at different levels. We mapped the positions of 3′ and 5′ UTRs of coding genes and identified hundreds of RNA transcripts distinct from annotated genes. These nonannotated transcripts, on average, have lower sequence conservation and lower rates of deletion phenotype than protein coding genes. Many other transcripts overlap known genes in antisense orientation, and for these pairs global correlations were discovered: UTR lengths correlated with gene function, localization, and requirements for regulation; antisense transcripts overlapped 3’ UTRs more than 5’ UTRs; UTRs with overlapping antisense tended to be longer; and the presence of antisense associated with gene function. These findings may suggest a regulatory role of antisense transcription in S. cerevisiae . Moreover, the data show that even this well studied genome has transcriptional complexity far beyond current annotation.
Title: A high-resolution map of transcription in the yeast genome
Description:
There is abundant transcription from eukaryotic genomes unaccounted for by protein coding genes.
A high-resolution genome-wide survey of transcription in a well annotated genome will help relate transcriptional complexity to function.
By quantifying RNA expression on both strands of the complete genome of Saccharomyces cerevisiae using a high-density oligonucleotide tiling array, this study identifies the boundary, structure, and level of coding and noncoding transcripts.
A total of 85% of the genome is expressed in rich media.
Apart from expected transcripts, we found operon-like transcripts, transcripts from neighboring genes not separated by intergenic regions, and genes with complex transcriptional architecture where different parts of the same gene are expressed at different levels.
We mapped the positions of 3′ and 5′ UTRs of coding genes and identified hundreds of RNA transcripts distinct from annotated genes.
These nonannotated transcripts, on average, have lower sequence conservation and lower rates of deletion phenotype than protein coding genes.
Many other transcripts overlap known genes in antisense orientation, and for these pairs global correlations were discovered: UTR lengths correlated with gene function, localization, and requirements for regulation; antisense transcripts overlapped 3’ UTRs more than 5’ UTRs; UTRs with overlapping antisense tended to be longer; and the presence of antisense associated with gene function.
These findings may suggest a regulatory role of antisense transcription in S.
cerevisiae .
Moreover, the data show that even this well studied genome has transcriptional complexity far beyond current annotation.

Related Results

British Food Journal Volume 49 Issue 8 1947
British Food Journal Volume 49 Issue 8 1947
In the good old days, before civilisation and artificial eating habits caught up with mankind, the majority of people in the world got all the Vitamin B and protein their bodies ne...
Regulation of mitochondrial gene expression in the yeast, Saccharomyces cerevisiae
Regulation of mitochondrial gene expression in the yeast, Saccharomyces cerevisiae
In order to elucidate the mechanisms governing mitochondrial (mt) transcription the yeast Saccharomyces cerevisiae, we examined the nuclear-mt stringent and upshift responses. In i...
Scent of a killer: How killer yeast boost its dispersal
Scent of a killer: How killer yeast boost its dispersal
Vector-borne parasites often manipulate hosts to attract uninfected vectors. For example, parasites causing malaria alter host odor to attract mosquitoes. Here we discuss the ecolo...
CRABTREE POZİTİF VE CRABTREE NEGATİF MAYA TÜRLERİNDE GCR1 GENİNİN IN SILICO ANALİZİ
CRABTREE POZİTİF VE CRABTREE NEGATİF MAYA TÜRLERİNDE GCR1 GENİNİN IN SILICO ANALİZİ
The use of fermentation in the presence of oxygen and at high glucose concentrations is referred to as the Crabtree effect. Yeast species that have the Crabtree effect are called C...
AMINO ACID PROFILING OF YEAST CREAM; A POTENTIAL PROTEIN ENRICHED INGREDIENT FOR POULTRY FEED
AMINO ACID PROFILING OF YEAST CREAM; A POTENTIAL PROTEIN ENRICHED INGREDIENT FOR POULTRY FEED
Yeast cream, an extremely good source of single cell protein (SCP), is formed as a by-product after the fermentation of molasses by Saccharomyces cerevisiae in bioethanol industry....
Integrative Physical and Genetic Mapping of the Chickpea Genome for Fine Mapping and Analysis of Agronomic Traits
Integrative Physical and Genetic Mapping of the Chickpea Genome for Fine Mapping and Analysis of Agronomic Traits
Chickpea is the third most important pulse crop in the world and ranks first in the Middle East; however, it has been subjected to only limited research in modern genomics. In the ...

Back to Top