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gene expression analysis software package iq5  (Bio-Rad)


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    Bio-Rad gene expression analysis software package iq5
    Gene Expression Analysis Software Package Iq5, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/gene+expression+analysis+software+package+iq5/iQ+5+Optical+System+Software/pm29674152-96-35-35
    Average 90 stars, based on 1 article reviews
    gene expression analysis software package iq5 - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Gene Expression:

    Article Title: An Aspergillus flavus secondary metabolic gene cluster containing a hybrid PKS-NRPS is necessary for synthesis of the 2-pyridones, leporins.
    Article Snippet: The genome of the filamentous fungus, Aspergillus flavus, has been shown to harbor as many as 56 putative secondary metabolic gene clusters including the one responsible for production of the toxic and carcinogenic, polyketide synthase (PKS)-derived aflatoxins.. Except for the production of aflatoxins, cyclopiazonic acid and several other metabolites the capability for metabolite production of most of these putative clusters is unknown.. We investigated the regulation of expression of the PKS–non-ribosomal peptide synthetase (NRPS) containing cluster 23 and determined that it produces homologs of the known 2-pyridone leporin A. Inactivation and overexpression of a cluster 23 gene encoding a putative Zn(2)-Cys(6) transcription factor (AFLA_066900, lepE) resulted in downregulation of nine and up-regulation of 8, respectively, of the fifteen SMURF-predicted cluster 23 genes thus allowing delineation of the cluster.

    Article Title: Fidelity of a simple Liberty leaf-painting assay to validate transgenic maize plants expressing the selectable marker gene, bar
    Article Snippet: Screening of gene manipulation events (transgenic, mutation/ genome editing, etc.) is a cost/labor-intensive and time-consuming process in plant science research.. While polymerase chain reaction (PCR) is the most commonly used method for screening, the process still requires efficient DNA extraction and subsequent confirmation.. However, PCR cannot predict gene expression.

    Article Title: Identification and functional analysis of the aspergillic acid gene cluster in Aspergillus flavus.
    Article Snippet: Aspergillus flavus can colonize important food staples and produce aflatoxins, a group of toxic and carcinogenic secondary metabolites.. Previous in silico analysis of the A. flavus genome revealed 56 gene clusters predicted to be involved in the biosynthesis of secondary metabolites.. A. flavus secondary metabolites produced during infection of maize seed are of particular interest, especially with respect to their roles in the biology of the fungus.

    Software:

    Article Title: An Aspergillus flavus secondary metabolic gene cluster containing a hybrid PKS-NRPS is necessary for synthesis of the 2-pyridones, leporins.
    Article Snippet: The genome of the filamentous fungus, Aspergillus flavus, has been shown to harbor as many as 56 putative secondary metabolic gene clusters including the one responsible for production of the toxic and carcinogenic, polyketide synthase (PKS)-derived aflatoxins.. Except for the production of aflatoxins, cyclopiazonic acid and several other metabolites the capability for metabolite production of most of these putative clusters is unknown.. We investigated the regulation of expression of the PKS–non-ribosomal peptide synthetase (NRPS) containing cluster 23 and determined that it produces homologs of the known 2-pyridone leporin A. Inactivation and overexpression of a cluster 23 gene encoding a putative Zn(2)-Cys(6) transcription factor (AFLA_066900, lepE) resulted in downregulation of nine and up-regulation of 8, respectively, of the fifteen SMURF-predicted cluster 23 genes thus allowing delineation of the cluster.

    Article Title: Fidelity of a simple Liberty leaf-painting assay to validate transgenic maize plants expressing the selectable marker gene, bar
    Article Snippet: Screening of gene manipulation events (transgenic, mutation/ genome editing, etc.) is a cost/labor-intensive and time-consuming process in plant science research.. While polymerase chain reaction (PCR) is the most commonly used method for screening, the process still requires efficient DNA extraction and subsequent confirmation.. However, PCR cannot predict gene expression.

    Article Title: Identification and functional analysis of the aspergillic acid gene cluster in Aspergillus flavus.
    Article Snippet: Aspergillus flavus can colonize important food staples and produce aflatoxins, a group of toxic and carcinogenic secondary metabolites.. Previous in silico analysis of the A. flavus genome revealed 56 gene clusters predicted to be involved in the biosynthesis of secondary metabolites.. A. flavus secondary metabolites produced during infection of maize seed are of particular interest, especially with respect to their roles in the biology of the fungus.

    Expressing:

    Article Title: Fidelity of a simple Liberty leaf-painting assay to validate transgenic maize plants expressing the selectable marker gene, bar
    Article Snippet: Screening of gene manipulation events (transgenic, mutation/ genome editing, etc.) is a cost/labor-intensive and time-consuming process in plant science research.. While polymerase chain reaction (PCR) is the most commonly used method for screening, the process still requires efficient DNA extraction and subsequent confirmation.. However, PCR cannot predict gene expression.

    other:

    Article Title: Transcriptome Analysis of Aspergillus flavus Reveals veA -Dependent Regulation of Secondary Metabolite Gene Clusters, Including the Novel Aflavarin Cluster
    Article Snippet: Gene expression levels at each time point were normalized (by ΔΔ C T analysis [ 32 ]) to A. flavus 18S rRNA gene expression levels utilizing the gene expression analysis software package for the Bio-Rad iQ5.



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