Next Article in Journal
4-Hydroxy-1α,25-Dihydroxyvitamin D3: Synthesis and Structure–Function Study
Next Article in Special Issue
New Frontiers in Potato Breeding: Tinkering with Reproductive Genes and Apomixis
Previous Article in Journal
Is Neonatal Uterine Bleeding Involved in Early-Onset Endometriosis?
Previous Article in Special Issue
GmTCP40 Promotes Soybean Flowering under Long-Day Conditions by Binding to the GmAP1a Promoter and Upregulating Its Expression
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Molecular Evolution of RAMOSA1 (RA1) in Land Plants

1
Fellow of Consejo Nacional de Investigaciones Científicas y Técnicas de la República Argentina (CONICET), Instituto de Agrobiotecnología del Litoral, Universidad Nacional del Litoral, CONICET, CCT-Santa Fe, Ruta Nacional N° 168 Km 0, s/n, Paraje el Pozo, Santa Fe S3000, Argentina
2
Member of Consejo Nacional de Investigaciones Científicas y Técnicas de la República Argentina (CONICET), Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, Ciudad Universitaria, Paraje El Pozo, Santa Fe S3000, Argentina
3
Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, Ciudad Universitaria, Paraje El Pozo, Santa Fe S3000, Argentina
4
Fellow of Agencia Nacional de Promoción de la Investigación, el Desarrollo Tecnológico y la Innovación, Instituto de Agrobiotecnología del Litoral, Universidad Nacional del Litoral, CONICET, CCT-Santa Fe, Ruta Nacional N° 168 Km 0, s/n, Paraje el Pozo, Santa Fe S3000, Argentina
5
Member of Consejo Nacional de Investigaciones Científicas y Técnicas de la República Argentina (CONICET), Instituto de Agrobiotecnología del Litoral, Universidad Nacional del Litoral, FCA, CONICET, CCT-Santa Fe, Ruta Nacional N° 168 Km 0, s/n, Paraje el Pozo, Santa Fe S3000, Argentina
*
Author to whom correspondence should be addressed.
Biomolecules 2024, 14(5), 550; https://doi.org/10.3390/biom14050550
Submission received: 16 March 2024 / Revised: 29 April 2024 / Accepted: 30 April 2024 / Published: 3 May 2024
(This article belongs to the Special Issue Molecular Plant Reproduction: From Cells to Nature)

Abstract

RAMOSA1 (RA1) is a Cys2-His2-type (C2H2) zinc finger transcription factor that controls plant meristem fate and identity and has played an important role in maize domestication. Despite its importance, the origin of RA1 is unknown, and the evolution in plants is only partially understood. In this paper, we present a well-resolved phylogeny based on 73 amino acid sequences from 48 embryophyte species. The recovered tree topology indicates that, during grass evolution, RA1 arose from two consecutive SUPERMAN duplications, resulting in three distinct grass sequence lineages: RA1-like A, RA1-like B, and RA1; however, most of these copies have unknown functions. Our findings indicate that RA1 and RA1-like play roles in the nucleus despite lacking a traditional nuclear localization signal. Here, we report that copies diversified their coding region and, with it, their protein structure, suggesting different patterns of DNA binding and protein–protein interaction. In addition, each of the retained copies diversified regulatory elements along their promoter regions, indicating differences in their upstream regulation. Taken together, the evidence indicates that the RA1 and RA1-like gene families in grasses underwent subfunctionalization and neofunctionalization enabled by gene duplication.
Keywords: zinc finger; embryophyte; phylogeny; paralogs; collinearity; nuclear localization; secondary structure; divergent motifs; promoter zinc finger; embryophyte; phylogeny; paralogs; collinearity; nuclear localization; secondary structure; divergent motifs; promoter

Share and Cite

MDPI and ACS Style

Bellino, C.; Herrera, F.E.; Rodrigues, D.; Garay, A.S.; Huck, S.V.; Reinheimer, R. Molecular Evolution of RAMOSA1 (RA1) in Land Plants. Biomolecules 2024, 14, 550. https://doi.org/10.3390/biom14050550

AMA Style

Bellino C, Herrera FE, Rodrigues D, Garay AS, Huck SV, Reinheimer R. Molecular Evolution of RAMOSA1 (RA1) in Land Plants. Biomolecules. 2024; 14(5):550. https://doi.org/10.3390/biom14050550

Chicago/Turabian Style

Bellino, Carolina, Fernando E. Herrera, Daniel Rodrigues, A. Sergio Garay, Sofía V. Huck, and Renata Reinheimer. 2024. "Molecular Evolution of RAMOSA1 (RA1) in Land Plants" Biomolecules 14, no. 5: 550. https://doi.org/10.3390/biom14050550

APA Style

Bellino, C., Herrera, F. E., Rodrigues, D., Garay, A. S., Huck, S. V., & Reinheimer, R. (2024). Molecular Evolution of RAMOSA1 (RA1) in Land Plants. Biomolecules, 14(5), 550. https://doi.org/10.3390/biom14050550

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop