A MITE insertion abolishes the AP3-3 self-maintenance regulatory loop in apetalous flowers of Nigella damascena

Author:

Conde e Silva Natalia1ORCID,Leguilloux Martine1,Bellec Arnaud2ORCID,Rodde Nathalie2ORCID,Aubert Juliette1ORCID,Manicacci Domenica1ORCID,Damerval Catherine1ORCID,Berges Helene2ORCID,Deveaux Yves1ORCID

Affiliation:

1. Université Paris-Saclay, INRAE, CNRS, AgroParisTech, Génétique Quantitative et Evolution-Le Moulon, IDEEV , 12 route 128, 91190 Gif-sur-Yvette , France

2. French Plant Genomic Resource Center, INRA-CNRGV , 24 Chemin de Borde Rouge-Auzeville, CS 52627, 31326 Castanet Tolosan Cedex , France

Abstract

Abstract MADS-box transcription factors are important regulators of floral organ identity through their binding to specific motifs, termed CArG, in the promoter of their target genes. Petal initiation and development depend on class A and B genes, but MADS-box genes of the APETALA3 (AP3) clade are key regulators of this process. In the early diverging eudicot Nigella damascena, an apetalous [T] morph is characterized by the lack of expression of the NdAP3-3 gene, with its expression being petal-specific in the wild-type [P] morph. All [T] morph plants are homozygous for an NdAP3-3 allele with a Miniature Inverted-repeat Transposable Element (MITE) insertion in the second intron of the gene. Here, we investigated to which extent the MITE insertion impairs regulation of the NdAP3-3 gene. We found that expression of NdAP3-3 is initiated in the [T] morph, but the MITE insertion prevents its positive self-maintenance by affecting the correct splicing of the mRNA. We also found specific CArG features in the promoter of the NdAP3-3 genes with petal-specific expression. However, they are not sufficient to drive expression only in petals of transgenic Arabidopsis, highlighting the existence of Nigella-specific cis/trans-acting factors in regulating AP3 paralogs.

Funder

Institut Diversité, Ecologie et Evolution du Vivant

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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