Back to Search Start Over

Oak genome reveals facets of long lifespan.

Authors :
Plomion C
Aury JM
Amselem J
Leroy T
Murat F
Duplessis S
Faye S
Francillonne N
Labadie K
Le Provost G
Lesur I
Bartholomé J
Faivre-Rampant P
Kohler A
Leplé JC
Chantret N
Chen J
Diévart A
Alaeitabar T
Barbe V
Belser C
Bergès H
Bodénès C
Bogeat-Triboulot MB
Bouffaud ML
Brachi B
Chancerel E
Cohen D
Couloux A
Da Silva C
Dossat C
Ehrenmann F
Gaspin C
Grima-Pettenati J
Guichoux E
Hecker A
Herrmann S
Hugueney P
Hummel I
Klopp C
Lalanne C
Lascoux M
Lasserre E
Lemainque A
Desprez-Loustau ML
Luyten I
Madoui MA
Mangenot S
Marchal C
Maumus F
Mercier J
Michotey C
Panaud O
Picault N
Rouhier N
Rué O
Rustenholz C
Salin F
Soler M
Tarkka M
Velt A
Zanne AE
Martin F
Wincker P
Quesneville H
Kremer A
Salse J
Source :
Nature plants [Nat Plants] 2018 Jul; Vol. 4 (7), pp. 440-452. Date of Electronic Publication: 2018 Jun 18.
Publication Year :
2018

Abstract

Oaks are an important part of our natural and cultural heritage. Not only are they ubiquitous in our most common landscapes <superscript>1</superscript> but they have also supplied human societies with invaluable services, including food and shelter, since prehistoric times <superscript>2</superscript> . With 450 species spread throughout Asia, Europe and America <superscript>3</superscript> , oaks constitute a critical global renewable resource. The longevity of oaks (several hundred years) probably underlies their emblematic cultural and historical importance. Such long-lived sessile organisms must persist in the face of a wide range of abiotic and biotic threats over their lifespans. We investigated the genomic features associated with such a long lifespan by sequencing, assembling and annotating the oak genome. We then used the growing number of whole-genome sequences for plants (including tree and herbaceous species) to investigate the parallel evolution of genomic characteristics potentially underpinning tree longevity. A further consequence of the long lifespan of trees is their accumulation of somatic mutations during mitotic divisions of stem cells present in the shoot apical meristems. Empirical <superscript>4</superscript> and modelling <superscript>5</superscript> approaches have shown that intra-organismal genetic heterogeneity can be selected for <superscript>6</superscript> and provides direct fitness benefits in the arms race with short-lived pests and pathogens through a patchwork of intra-organismal phenotypes <superscript>7</superscript> . However, there is no clear proof that large-statured trees consist of a genetic mosaic of clonally distinct cell lineages within and between branches. Through this case study of oak, we demonstrate the accumulation and transmission of somatic mutations and the expansion of disease-resistance gene families in trees.

Details

Language :
English
ISSN :
2055-0278
Volume :
4
Issue :
7
Database :
MEDLINE
Journal :
Nature plants
Publication Type :
Academic Journal
Accession number :
29915331
Full Text :
https://doi.org/10.1038/s41477-018-0172-3