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活性氧在拟南芥萼片形态发生过程中抑制微管动力学和细胞生长异质性。

ROS inhibits microtubule dynamics and cell growth heterogeneity during Arabidopsis sepal morphogenesis.

作者信息

Burda Isabella, Brauns Fridtjof, Shipman Aaron, Shapland Emily, Hong Lilan, Roeder Adrienne

机构信息

Genetics, Genomics, and Development Graduate Program, Cornell University, Ithaca, NY 14850, USA.

Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY 14850, USA.

出版信息

bioRxiv. 2025 May 14:2025.05.09.653143. doi: 10.1101/2025.05.09.653143.

Abstract

Developing organs grow to reproducible sizes and shapes yet the growth of their constituent cells can be highly heterogeneous and fluctuating. During wild-type sepal development, the fluctuations in cell growth average such that the sepals grow to uniform sizes and shapes. The uniform size and shape of the sepals allow the flower bud to stay closed and protected until the floral organs are mature. In contrast, cell growth averaging is reduced in the mutant, and the sepals develop to variable sizes and shapes. encodes a mitochondrial i-AAA protease localized to the mitochondria. Reactive oxygen species (ROS) accumulate in mutants, and lowering ROS levels rescues the sepal size and shape variability. Here, we investigate the effects of ROS on cell growth heterogeneity and cortical microtubule dynamics. We find that elevated ROS suppresses cell growth heterogeneity and averaging. We also find that elevated ROS causes cortical microtubules to become more 'crisscrossed', as well as more stable. The growth of the cells with crisscrossed microtubules changes less in time, which impairs cell growth averaging. However, depolymerizing microtubules is insufficient to restore normal growth fluctuations. Altogether, our results suggest that ROS affects microtubule dynamics and cell growth fluctuations which are necessary for robust morphogenesis.

摘要

正在发育的器官会生长到可重复的大小和形状,然而其组成细胞的生长可能高度不均一且波动较大。在野生型萼片发育过程中,细胞生长的波动平均化,使得萼片生长到均匀的大小和形状。萼片大小和形状的一致性使花芽能够保持闭合并受到保护,直至花器官成熟。相比之下,突变体中细胞生长的平均化程度降低,萼片发育成大小和形状各异的形态。[基因名称]编码一种定位于线粒体的线粒体i-AAA蛋白酶。活性氧(ROS)在[突变体名称]突变体中积累,降低ROS水平可挽救萼片大小和形状的变异性。在此,我们研究了ROS对细胞生长异质性和皮层微管动力学的影响。我们发现,ROS水平升高会抑制细胞生长的异质性和平均化。我们还发现,ROS水平升高会使皮层微管变得更加“交叉”,且更加稳定。微管交叉的细胞生长随时间的变化较小,这损害了细胞生长的平均化。然而,使微管解聚不足以恢复正常的生长波动。总之,我们的结果表明,ROS影响微管动力学和细胞生长波动,而这对于稳健的形态发生是必要的。

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