covain (covariance inverse) (MathWorks Inc)
Structured Review
Pinu et al., 2019 )." width="250" height="auto" />Covain (Covariance Inverse), supplied by MathWorks Inc, 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/covariance+inverse+(covain)/pmc07371031-38-0-11
Average 90 stars, based on 1 article reviews
Images
1) Product Images from "Systematic Multi-Omics Integration (MOI) Approach in Plant Systems Biology"
Article Title: Systematic Multi-Omics Integration (MOI) Approach in Plant Systems Biology
Journal: Frontiers in Plant Science
doi: 10.3389/fpls.2020.00944
Pinu et al., 2019 )." title="Summary of software tools and web applications for MOI in plant system (modified ... " property="contentUrl" width="100%" height="100%"/>
Figure Legend Snippet: Summary of software tools and web applications for MOI in plant system (modified from
Techniques Used: Software, Modification, Combined Bisulfite Restriction Analysis Assay, Expressing, Functional Assay
Related Articles
Software:Article Title: MInfer: Bridging MetaboAnalyst and Jacobian analysis for metabolomic networks. Article Snippet: Background and Objective: Metabolomic interaction networks provide critical insights into the dynamic relationships between metabolites and their regulatory mechanisms.. This study introduces MInfer, a novel computational framework that integrates outputs from MetaboAnalyst, a widely used metabolomic analysis tool, with Jacobian analysis to enhance the derivation and interpretation of these networks.. Methods: MInfer combines the comprehensive data processing capabilities of MetaboAnalyst with the mathematical modeling power of Jacobian analysis. Article Title: Systematic Multi-Omics Integration (MOI) Approach in Plant Systems Biology Article Snippet: COVAIN (Covariance inverse) , Transcriptomics Proteomics Metabolomics , Article Title: Deciphering key proteins of oil palm (Elaeis guineensis Jacq.) fruit mesocarp development by proteomics and chemometrics. Article Snippet: Received: 11 06, 2018; Revised: 10 22, 2018; Accepted: 10 25, 2018 This article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record.. Please cite this article as doi: 10.1002/elps.201800232.. This article is protected by copyright. Article Title: Untargeted metabolic profiling of winery-derived biomass waste degradation byAspergillus niger Article Snippet: BACKGROUND: Ascomycetes are capable of considerable lignocellulose degradation.. However, there is limited knowledge on the metabolic profile of their biomass degradation.. Metabolomic studies are capable of providing important biochemical information to understand and characterise fungal biomass degradation mechanisms. Modification:Article Title: MInfer: Bridging MetaboAnalyst and Jacobian analysis for metabolomic networks. Article Snippet: Background and Objective: Metabolomic interaction networks provide critical insights into the dynamic relationships between metabolites and their regulatory mechanisms.. This study introduces MInfer, a novel computational framework that integrates outputs from MetaboAnalyst, a widely used metabolomic analysis tool, with Jacobian analysis to enhance the derivation and interpretation of these networks.. Methods: MInfer combines the comprehensive data processing capabilities of MetaboAnalyst with the mathematical modeling power of Jacobian analysis. Article Title: Systematic Multi-Omics Integration (MOI) Approach in Plant Systems Biology Article Snippet: COVAIN (Covariance inverse) , Transcriptomics Proteomics Metabolomics , Article Title: Deciphering key proteins of oil palm (Elaeis guineensis Jacq.) fruit mesocarp development by proteomics and chemometrics. Article Snippet: Received: 11 06, 2018; Revised: 10 22, 2018; Accepted: 10 25, 2018 This article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record.. Please cite this article as doi: 10.1002/elps.201800232.. This article is protected by copyright. Article Title: Untargeted metabolic profiling of winery-derived biomass waste degradation byAspergillus niger Article Snippet: BACKGROUND: Ascomycetes are capable of considerable lignocellulose degradation.. However, there is limited knowledge on the metabolic profile of their biomass degradation.. Metabolomic studies are capable of providing important biochemical information to understand and characterise fungal biomass degradation mechanisms. Combined Bisulfite Restriction Analysis Assay:Article Title: MInfer: Bridging MetaboAnalyst and Jacobian analysis for metabolomic networks. Article Snippet: Background and Objective: Metabolomic interaction networks provide critical insights into the dynamic relationships between metabolites and their regulatory mechanisms.. This study introduces MInfer, a novel computational framework that integrates outputs from MetaboAnalyst, a widely used metabolomic analysis tool, with Jacobian analysis to enhance the derivation and interpretation of these networks.. Methods: MInfer combines the comprehensive data processing capabilities of MetaboAnalyst with the mathematical modeling power of Jacobian analysis. Article Title: Systematic Multi-Omics Integration (MOI) Approach in Plant Systems Biology Article Snippet: COVAIN (Covariance inverse) , Transcriptomics Proteomics Metabolomics , Article Title: Deciphering key proteins of oil palm (Elaeis guineensis Jacq.) fruit mesocarp development by proteomics and chemometrics. Article Snippet: Received: 11 06, 2018; Revised: 10 22, 2018; Accepted: 10 25, 2018 This article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record.. Please cite this article as doi: 10.1002/elps.201800232.. This article is protected by copyright. Article Title: Untargeted metabolic profiling of winery-derived biomass waste degradation byAspergillus niger Article Snippet: BACKGROUND: Ascomycetes are capable of considerable lignocellulose degradation.. However, there is limited knowledge on the metabolic profile of their biomass degradation.. Metabolomic studies are capable of providing important biochemical information to understand and characterise fungal biomass degradation mechanisms. Expressing:Article Title: MInfer: Bridging MetaboAnalyst and Jacobian analysis for metabolomic networks. Article Snippet: Background and Objective: Metabolomic interaction networks provide critical insights into the dynamic relationships between metabolites and their regulatory mechanisms.. This study introduces MInfer, a novel computational framework that integrates outputs from MetaboAnalyst, a widely used metabolomic analysis tool, with Jacobian analysis to enhance the derivation and interpretation of these networks.. Methods: MInfer combines the comprehensive data processing capabilities of MetaboAnalyst with the mathematical modeling power of Jacobian analysis. Article Title: Systematic Multi-Omics Integration (MOI) Approach in Plant Systems Biology Article Snippet: COVAIN (Covariance inverse) , Transcriptomics Proteomics Metabolomics , Article Title: Deciphering key proteins of oil palm (Elaeis guineensis Jacq.) fruit mesocarp development by proteomics and chemometrics. Article Snippet: Received: 11 06, 2018; Revised: 10 22, 2018; Accepted: 10 25, 2018 This article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record.. Please cite this article as doi: 10.1002/elps.201800232.. This article is protected by copyright. Article Title: Untargeted metabolic profiling of winery-derived biomass waste degradation byAspergillus niger Article Snippet: BACKGROUND: Ascomycetes are capable of considerable lignocellulose degradation.. However, there is limited knowledge on the metabolic profile of their biomass degradation.. Metabolomic studies are capable of providing important biochemical information to understand and characterise fungal biomass degradation mechanisms. Functional Assay:Article Title: MInfer: Bridging MetaboAnalyst and Jacobian analysis for metabolomic networks. Article Snippet: Background and Objective: Metabolomic interaction networks provide critical insights into the dynamic relationships between metabolites and their regulatory mechanisms.. This study introduces MInfer, a novel computational framework that integrates outputs from MetaboAnalyst, a widely used metabolomic analysis tool, with Jacobian analysis to enhance the derivation and interpretation of these networks.. Methods: MInfer combines the comprehensive data processing capabilities of MetaboAnalyst with the mathematical modeling power of Jacobian analysis. Article Title: Systematic Multi-Omics Integration (MOI) Approach in Plant Systems Biology Article Snippet: COVAIN (Covariance inverse) , Transcriptomics Proteomics Metabolomics , Article Title: Deciphering key proteins of oil palm (Elaeis guineensis Jacq.) fruit mesocarp development by proteomics and chemometrics. Article Snippet: Received: 11 06, 2018; Revised: 10 22, 2018; Accepted: 10 25, 2018 This article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record.. Please cite this article as doi: 10.1002/elps.201800232.. This article is protected by copyright. Article Title: Untargeted metabolic profiling of winery-derived biomass waste degradation byAspergillus niger Article Snippet: BACKGROUND: Ascomycetes are capable of considerable lignocellulose degradation.. However, there is limited knowledge on the metabolic profile of their biomass degradation.. Metabolomic studies are capable of providing important biochemical information to understand and characterise fungal biomass degradation mechanisms. |