Highly expressed cell wall genes contribute to robustness of sepal size.

Plant signaling & behavior Pub Date : 2025-12-01 Epub Date: 2024-12-31 DOI:10.1080/15592324.2024.2446858
Diego A Hartasánchez, Mathilde Dumond, Nelly Dubrulle, Françoise Monéger, Arezki Boudaoud
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Abstract

Reproducibility in organ size and shape is a fascinating trait of living organisms. The mechanisms underlying such robustness remain, however, to be elucidated. Taking the sepal of Arabidopsis as a model, we investigated whether variability of gene expression plays a role in variation of organ size and shape. Previous work from our team identified cell-wall related genes as being enriched among the genes whose expression is highly variable. We then hypothesized that the variation of measured morphological parameters in cell-wall related single knockout mutants could be correlated with the variation in gene expression of the corresponding gene (the knocked-out gene) in wild-type plants. We analyzed sepal size and shape from 16 cell-wall mutants and found that sepal size variability correlates positively, not with gene expression variation, but with mean gene expression of the corresponding gene in wild type. These findings support a contribution of cell-wall related genes to the robustness of sepal size.

高表达的细胞壁基因有助于萼片大小的稳健性。
器官大小和形状的可重复性是生物体的一个迷人特征。然而,这种稳健性背后的机制仍有待阐明。以拟南芥萼片为模型,研究了基因表达的变异性是否在器官大小和形状的变化中起作用。我们团队之前的工作发现细胞壁相关基因在表达高度可变的基因中富集。然后,我们假设细胞壁相关单敲除突变体中测量到的形态参数的变化可能与野生型植物中相应基因(敲除基因)的基因表达变化有关。我们分析了16个细胞壁突变体的萼片大小和形状,发现野生型的萼片大小变异与相应基因的平均基因表达量呈正相关,而与基因表达量的变化无关。这些发现支持细胞壁相关基因对萼片大小稳健性的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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