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FT -like genes in Cannabis and hops: sex specific expression and copy-number variation may explain flowering time variation
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Abstract
Cannabis sativa
is a fascinating, yet under-researched, species. To facilitate the global expansion of
C. sativa
cultivation a greater understanding of flowering time control is crucial. The
PEBP
gene family consists of universal promoters and repressors of flowering, with homologs of
FLOWERING LOCUS T
(
FT
) being highly conserved key regulators of flowering.
FT
encodes florigen, and balancing the florigen and anti-florigen signals is key for fine-tuning a crop’s flowering to local climatic conditions. Here, we provide an in-depth characterisation of the
PEBP
gene family in
C. sativa
and the closely related species
H. lupulus.
Phylogenetic analysis reveals expansion of
FT
and
TFL1/CEN
clades in the Cannabaceae. The retention of the duplicated
PEBP
genes likely has functional significance with divergent sequences and expression patterns hinting at signatures of sub-functionalisation. We speculate that duplicated
PEBP
genes have been crucial to the evolution of photoperiod insensitivity and sexually dimorphic flowering in
C. sativa
and harnessing the available genetic variation for these traits will be key for establishing this future crop.
Title: FT
-like genes in Cannabis and hops: sex specific expression and copy-number variation may explain flowering time variation
Description:
Abstract
Cannabis sativa
is a fascinating, yet under-researched, species.
To facilitate the global expansion of
C.
sativa
cultivation a greater understanding of flowering time control is crucial.
The
PEBP
gene family consists of universal promoters and repressors of flowering, with homologs of
FLOWERING LOCUS T
(
FT
) being highly conserved key regulators of flowering.
FT
encodes florigen, and balancing the florigen and anti-florigen signals is key for fine-tuning a crop’s flowering to local climatic conditions.
Here, we provide an in-depth characterisation of the
PEBP
gene family in
C.
sativa
and the closely related species
H.
lupulus.
Phylogenetic analysis reveals expansion of
FT
and
TFL1/CEN
clades in the Cannabaceae.
The retention of the duplicated
PEBP
genes likely has functional significance with divergent sequences and expression patterns hinting at signatures of sub-functionalisation.
We speculate that duplicated
PEBP
genes have been crucial to the evolution of photoperiod insensitivity and sexually dimorphic flowering in
C.
sativa
and harnessing the available genetic variation for these traits will be key for establishing this future crop.
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