The Grapevine Expression Atlas Reveals a Deep Transcriptome Shift Driving the Entire Plant into a Maturation Program

Author:

Fasoli Marianna1,Dal Santo Silvia1,Zenoni Sara1,Tornielli Giovanni Battista1,Farina Lorenzo2,Zamboni Anita1,Porceddu Andrea3,Venturini Luca1,Bicego Manuele4,Murino Vittorio5,Ferrarini Alberto1,Delledonne Massimo1,Pezzotti Mario1

Affiliation:

1. Dipartimento di Biotecnologie, Università degli Studi di Verona, 37134 Verona, Italy

2. Dipartimento di Informatica e Sistemistica Antonio Ruberti, Università degli Studi di Roma La Sapienza, 00185 Rome, Italy

3. Dipartimento di Scienze Agronomiche e Genetica Vegetale Agraria, Università degli Studi di Sassari, 07100 Sassari, Italy

4. Dipartimento di Informatica, Università degli Studi di Verona, 37134 Verona, Italy

5. Istituto Italiano di Tecnologia, 16163 Genoa, Italy

Abstract

Abstract We developed a genome-wide transcriptomic atlas of grapevine (Vitis vinifera) based on 54 samples representing green and woody tissues and organs at different developmental stages as well as specialized tissues such as pollen and senescent leaves. Together, these samples expressed ∼91% of the predicted grapevine genes. Pollen and senescent leaves had unique transcriptomes reflecting their specialized functions and physiological status. However, microarray and RNA-seq analysis grouped all the other samples into two major classes based on maturity rather than organ identity, namely, the vegetative/green and mature/woody categories. This division represents a fundamental transcriptomic reprogramming during the maturation process and was highlighted by three statistical approaches identifying the transcriptional relationships among samples (correlation analysis), putative biomarkers (O2PLS-DA approach), and sets of strongly and consistently expressed genes that define groups (topics) of similar samples (biclustering analysis). Gene coexpression analysis indicated that the mature/woody developmental program results from the reiterative coactivation of pathways that are largely inactive in vegetative/green tissues, often involving the coregulation of clusters of neighboring genes and global regulation based on codon preference. This global transcriptomic reprogramming during maturation has not been observed in herbaceous annual species and may be a defining characteristic of perennial woody plants.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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