Laboratoire Reproduction et Développement des Plantes, Université de Lyon, ENS de Lyon, UCB Lyon 1, CNRS, INRAE, INRIA, 69364 Lyon Cedex 07, France.
Centre for BioSystems Science and Engineering, Indian Institute of Science, 560012 Bengaluru, India.
Development. 2024 Jun 1;151(11). doi: 10.1242/dev.202810. Epub 2024 Jun 10.
Stem cell homeostasis in the shoot apical meristem involves a core regulatory feedback loop between the signalling peptide CLAVATA3 (CLV3), produced in stem cells, and the transcription factor WUSCHEL, expressed in the underlying organising centre. clv3 mutant meristems display massive overgrowth, which is thought to be caused by stem cell overproliferation, although it is unknown how uncontrolled stem cell divisions lead to this altered morphology. Here, we reveal local buckling defects in mutant meristems, and use analytical models to show how mechanical properties and growth rates may contribute to the phenotype. Indeed, clv3 mutant meristems are mechanically more heterogeneous than the wild type, and also display regional growth heterogeneities. Furthermore, stereotypical wild-type meristem organisation, in which cells simultaneously express distinct fate markers, is lost in mutants. Finally, cells in mutant meristems are auxin responsive, suggesting that they are functionally distinguishable from wild-type stem cells. Thus, all benchmarks show that clv3 mutant meristem cells are different from wild-type stem cells, suggesting that overgrowth is caused by the disruption of a more complex regulatory framework that maintains distinct genetic and functional domains in the meristem.
茎尖分生组织中的干细胞稳态涉及到由干细胞产生的信号肽 CLAVATA3(CLV3)和在下方组织中心表达的转录因子 WUSCHEL 之间的核心调节反馈环。clv3 突变体分生组织表现出大量的过度生长,这被认为是由干细胞过度增殖引起的,尽管尚不清楚无控制的干细胞分裂如何导致这种形态改变。在这里,我们揭示了突变体分生组织中的局部屈曲缺陷,并使用分析模型表明机械性质和生长速率如何有助于表型。事实上,clv3 突变体分生组织比野生型更具有异质性,并且也表现出区域生长异质性。此外,在突变体中失去了典型的野生型分生组织组织,其中细胞同时表达不同的命运标记。最后,突变体分生组织中的细胞对生长素有反应,表明它们在功能上与野生型干细胞不同。因此,所有的基准都表明 clv3 突变体分生组织细胞与野生型干细胞不同,这表明过度生长是由破坏维持分生组织中不同遗传和功能域的更复杂的调节框架引起的。