Asaoka Mariko, Sakamoto Shingo, Gunji Shizuka, Mitsuda Nobutaka, Tsukaya Hirokazu, Sawa Shinichiro, Hamant Olivier, Ferjani Ali
Department of Biology, Tokyo Gakugei University, Koganei-shi, Tokyo 184-8501, Japan.
Laboratoire de Reproduction et Développement des Plantes, Université de Lyon, ENS de Lyon, UCBL, INRAE, CNRS, 46 Allée d'Italie, 69364 Lyon Cedex 07, France.
Development. 2023 Feb 15;150(3). doi: 10.1242/dev.201156. Epub 2023 Feb 6.
In plants, coordinated growth is important for organ mechanical integrity because cells remain contiguous through their walls. So far, defects in inflorescence stem integrity in Arabidopsis thaliana have mainly been related to epidermal defects. Although these observations suggest a growth-limiting function at the stem cortex, deeper layers of the stem could also contribute to stem integrity. The nac secondary cell wall thickening promoting factor1 (nst1) nst3 double-mutant background is characterized by weaker vascular bundles without cracks. By screening for the cracking phenotype in this background, we identified a regulator of stem cracking, the transcription factor INDETERMINATE DOMAIN9 (IDD9). Stem cracking was not caused by vascular bundle breakage in plants that expressed a dominant repressor version of IDD9. Instead, cracking emerged from increased cell expansion in non-lignified interfascicular fiber cells that stretched the epidermis. This phenotype could be enhanced through CLAVATA3-dependent cell proliferation. Collectively, our results demonstrate that stem integrity relies on three additive mechanical components: the epidermis, which resists inner cell growth; cell proliferation in inner tissues; and growth heterogeneity associated with vascular bundle distribution in deep tissues.
在植物中,协调生长对于器官的机械完整性很重要,因为细胞通过细胞壁保持相邻。到目前为止,拟南芥花序茎完整性的缺陷主要与表皮缺陷有关。尽管这些观察结果表明茎皮层存在生长限制功能,但茎的更深层也可能有助于茎的完整性。NAC次生细胞壁加厚促进因子1(NST1)NST3双突变体背景的特征是维管束较弱且无裂缝。通过在这种背景下筛选开裂表型,我们鉴定出了一种茎开裂调节因子,即转录因子INDETERMINATE DOMAIN9(IDD9)。在表达显性抑制版本IDD9的植物中,茎开裂不是由维管束破裂引起的。相反,开裂是由于未木质化的束间纤维细胞中细胞扩张增加,从而拉伸了表皮。这种表型可以通过CLAVATA3依赖的细胞增殖得到增强。总的来说,我们的结果表明茎的完整性依赖于三个附加的机械组成部分:抵抗内部细胞生长的表皮;内部组织中的细胞增殖;以及与深层组织中维管束分布相关的生长异质性。