The Tomato Guanylate-Binding Protein SlGBP1 Enables Fruit Tissue Differentiation by Maintaining Endopolyploid Cells in a Non-Proliferative State

生物 内复制 突变体 细胞命运测定 转录组 细胞分裂 细胞生物学 细胞分化 基因 遗传学 细胞 细胞周期 表型 细胞生长 基因表达 转录因子
作者
Constance Musseau,Joana Jorly,Stéphanie Gadin,Iben Sørensen,Catherine Deborde,Stéphane Bernillon,Jean‐Philippe Mauxion,Isabelle Atienza,Annick Moing,Martine Lemaire‐Chamley,Jocelyn K. C. Rose,Christian Chevalier,Christophe Rothan,Lucie Fernandez,Frédéric Gévaudant
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:32 (10): 3188-3205 被引量:28
标识
DOI:10.1105/tpc.20.00245
摘要

Cell fate maintenance is an integral part of plant cell differentiation and the production of functional cells, tissues, and organs. Fleshy fruit development is characterized by the accumulation of water and solutes in the enlarging cells of parenchymatous tissues. In tomato (Solanum lycopersicum), this process is associated with endoreduplication in mesocarp cells. The mechanisms that preserve this developmental program, once initiated, remain unknown. We show here that analysis of a previously identified tomato ethyl methanesulfonate-induced mutant that exhibits abnormal mesocarp cell differentiation could help elucidate determinants of fruit cell fate maintenance. We identified and validated the causal locus through mapping-by-sequencing and gene editing, respectively, and performed metabolic, cellular, and transcriptomic analyses of the mutant phenotype. The data indicate that disruption of the SlGBP1 gene, encoding GUANYLATE BINDING PROTEIN1, induces early termination of endoreduplication followed by late divisions of polyploid mesocarp cells, which consequently acquire the characteristics of young proliferative cells. This study reveals a crucial role of plant GBPs in the control of cell cycle genes, and thus, in cell fate maintenance. We propose that SlGBP1 acts as an inhibitor of cell division, a function conserved with the human hGBP-1 protein.

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