An Arabidopsis AT-hook motif nuclear protein mediates somatic embryogenesis and coinciding genome duplication
Plant somatic cells can be reprogrammed into totipotent embryonic cells that are able to form differentiated embryos in a process called somatic embryogenesis (SE), by hormone treatment or through overexpression of certain transcription factor genes, such as BABY BOOM ( BBM ). Here we show that over...
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Veröffentlicht in: | Nature communications 2021-05, Vol.12 (1), p.2508-13, Article 2508 |
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Zusammenfassung: | Plant somatic cells can be reprogrammed into totipotent embryonic cells that are able to form differentiated embryos in a process called somatic embryogenesis (SE), by hormone treatment or through overexpression of certain transcription factor genes, such as
BABY BOOM
(
BBM
). Here we show that overexpression of the
AT-HOOK MOTIF CONTAINING NUCLEAR LOCALIZED 15
(
AHL15
) gene induces formation of somatic embryos on
Arabidopsis thaliana
seedlings in the absence of hormone treatment. During zygotic embryogenesis,
AHL15
expression starts early in embryo development, and
AH15
and other
AHL
genes are required for proper embryo patterning and development beyond the globular stage. Moreover,
AHL15
and several of its homologs are upregulated and required for SE induction upon hormone treatment, and they are required for efficient
BBM
-induced SE as downstream targets of BBM. A significant number of plants derived from
AHL15
overexpression-induced somatic embryos are polyploid. Polyploidisation occurs by endomitosis specifically during the initiation of SE, and is caused by strong heterochromatin decondensation induced by
AHL15
overexpression.
Plant somatic embryogenesis (SE) can be triggered by hormone application or overexpression of certain transcription factors such as BBM. Here Karami et al. show that AHL15 is required for induction of downstream BBM targets and promotes heterochromatin decondensation and endomitosis during the induction of SE. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-021-22815-8 |