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Vitis OneGenE: A Causality-Based Approach to Generate Gene Networks in Sheds Light on the Laccase and Dirigent Gene Families

Overview
Journal Biomolecules
Publisher MDPI
Date 2021 Dec 24
PMID 34944388
Citations 7
Authors
Affiliations
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Abstract

The abundance of transcriptomic data and the development of causal inference methods have paved the way for gene network analyses in grapevine. Vitis OneGenE is a transcriptomic data mining tool that finds direct correlations between genes, thus producing association networks. As a proof of concept, the stilbene synthase gene regulatory network obtained with OneGenE has been compared with published co-expression analysis and experimental data, including cistrome data for MYB stilbenoid regulators. As a case study, the two secondary metabolism pathways of stilbenoids and lignin synthesis were explored. Several isoforms of laccase, peroxidase, and dirigent protein genes, putatively involved in the final oxidative oligomerization steps, were identified as specifically belonging to either one of these pathways. Manual curation of the predicted sequences exploiting the last available genome assembly, and the integration of phylogenetic and OneGenE analyses, identified a group of laccases exclusively present in grapevine and related to stilbenoids. Here we show how network analysis by OneGenE can accelerate knowledge discovery by suggesting new candidates for functional characterization and application in breeding programs.

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References
1.
Geng P, Zhang S, Liu J, Zhao C, Wu J, Cao Y . MYB20, MYB42, MYB43, and MYB85 Regulate Phenylalanine and Lignin Biosynthesis during Secondary Cell Wall Formation. Plant Physiol. 2019; 182(3):1272-1283. PMC: 7054866. DOI: 10.1104/pp.19.01070. View

2.
Wong D . Network aggregation improves gene function prediction of grapevine gene co-expression networks. Plant Mol Biol. 2020; 103(4-5):425-441. DOI: 10.1007/s11103-020-01001-2. View

3.
Savoi S, Wong D, Degu A, Herrera J, Bucchetti B, Peterlunger E . Multi-Omics and Integrated Network Analyses Reveal New Insights into the Systems Relationships between Metabolites, Structural Genes, and Transcriptional Regulators in Developing Grape Berries ( L.) Exposed to Water Deficit. Front Plant Sci. 2017; 8():1124. PMC: 5502274. DOI: 10.3389/fpls.2017.01124. View

4.
Tassoni A, Fornale S, Franceschetti M, Musiani F, Michael A, Perry B . Jasmonates and Na-orthovanadate promote resveratrol production in Vitis vinifera cv. Barbera cell cultures. New Phytol. 2005; 166(3):895-905. DOI: 10.1111/j.1469-8137.2005.01383.x. View

5.
Ohman D, Demedts B, Kumar M, Gerber L, Gorzsas A, Goeminne G . MYB103 is required for FERULATE-5-HYDROXYLASE expression and syringyl lignin biosynthesis in Arabidopsis stems. Plant J. 2012; 73(1):63-76. DOI: 10.1111/tpj.12018. View