Genome-wide identification of WD40 genes reveals a functional diversification of COP1-like genes in Rosaceae
Key message Genome-wide identification of WD40-like genes reveals a duplication of COP1-like genes, one of the key players involved in regulation of flowering time and photomorphogenesis, with strong functional diversification in Rosaceae. WD40 proteins play crucial roles in a broad spectrum of deve...
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Veröffentlicht in: | Plant molecular biology 2020-09, Vol.104 (1-2), p.81-95 |
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Sprache: | eng |
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Zusammenfassung: | Key message
Genome-wide identification of
WD40-like
genes reveals a duplication of
COP1-like
genes, one of the key players involved in regulation of flowering time and photomorphogenesis, with strong functional diversification in Rosaceae.
WD40 proteins play crucial roles in a broad spectrum of developmental and physiological processes. Here, we conducted a systematic characterization of this family of genes in
Rosa chinensis
‘Old Blush’ (OB), a founder genotype for modern rose domestication. We identified 187 rose
WD40
genes and classified them into 5 clusters and 15 subfamilies with 11 of
RcWD40
s presumably generated via tandem duplication. We found
RcWD40
genes were expressed differentially following stages of vegetative and reproductive development. We detected a duplication of
CONSTITUTIVE PHOTOMORPHOGENIC1-like
genes in rose (
RcCOP1
and
RcCOP1L
) and other Rosaceae plants. Featuring a distinct expression pattern and a different profile of cis-regulatory-elements in the transcriptional regulatory regions,
RcCOP1
seemed being evolutionarily conserved while RcCOP1L did not dimerize with RcHY5 and RcSPA4. Our data thus reveals a functional diversification of
COP1-like
genes in Rosacaeae plants, and provides a valuable resource to explore the potential function and evolution of
WD40-like
genes in Rosaceae plants. |
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ISSN: | 0167-4412 1573-5028 |
DOI: | 10.1007/s11103-020-01026-7 |