Innovation, conservation, and repurposing of gene function in root cell type development

Publication date

2021-06-10

Authors

Kajala, KaisaORCID 0000-0001-6483-7473ISNI 0000000492896421
Gouran, Mona
Shaar-Moshe, Lidor
Mason, G. Alex
Rodriguez-Medina, Joel
Kawa, Dorota
Pauluzzi, Germain
Reynoso, Mauricio
Canto-Pastor, Alex
Manzano, Concepcion

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

Plant species have evolved myriads of solutions, including complex cell type development and regulation, to adapt to dynamic environments. To understand this cellular diversity, we profiled tomato root cell type translatomes. Using xylem differentiation in tomato, examples of functional innovation, repurposing, and conservation of transcription factors are described, relative to the model plant Arabidopsis. Repurposing and innovation of genes are further observed within an exodermis regulatory network and illustrate its function. Comparative translatome analyses of rice, tomato, and Arabidopsis cell populations suggest increased expression conservation of root meristems compared with other homologous populations. In addition, the functions of constitutively expressed genes are more conserved than those of cell type/tissue-enriched genes. These observations suggest that higher order properties of cell type and pan-cell type regulation are evolutionarily conserved between plants and animals.

Keywords

cell types, evolution, exodermis, gene regulation, rice, root development, tomato, translatomes, xylem, General Biochemistry,Genetics and Molecular Biology

Citation

Kajala, K, Gouran, M, Shaar-Moshe, L, Mason, G A, Rodriguez-Medina, J, Kawa, D, Pauluzzi, G, Reynoso, M, Canto-Pastor, A, Manzano, C, Lau, V, Artur, M A S, West, D A, Gray, S B, Borowsky, A T, Moore, B P, Yao, A I, Morimoto, K W, Bajic, M, Formentin, E, Nirmal, N A, Rodriguez, A, Pasha, A, Deal, R B, Kliebenstein, D J, Hvidsten, T R, Provart, N J, Sinha, N R, Runcie, D E, Bailey-Serres, J & Brady, S M 2021, 'Innovation, conservation, and repurposing of gene function in root cell type development', Cell, vol. 184, no. 12, e19, pp. 3333-3348.e19. https://doi.org/10.1016/j.cell.2021.04.024