Hématy Kian, Sado Pierre-Etienne, Van Tuinen Ageeth, Rochange Soizic, Desnos Thierry, Balzergue Sandrine, Pelletier Sandra, Renou Jean-Pierre, Höfte Herman
Laboratoire de Biologie Cellulaire, UR501, Institut Jean-Pierre Bourgin, Institut National de la Recherche Agronomique Centre de Versailles, Route de St Cyr, 78026 Versailles, France.
Curr Biol. 2007 Jun 5;17(11):922-31. doi: 10.1016/j.cub.2007.05.018.
A major challenge is to understand how the walls of expanding plant cells are correctly assembled and remodeled, often in the presence of wall-degrading micro-organisms. Plant cells, like yeast, react to cell-wall perturbations as shown by changes in gene expression, accumulation of ectopic lignin, and growth arrest caused by the inhibition of cellulose synthesis.
We have identified a plasma-membrane-bound receptor-like kinase (THESEUS1), which is present in elongating cells. Mutations in THE1 and overexpression of a functional THE1-GFP fusion protein did not affect wild-type (WT) plants but respectively attenuated and enhanced growth inhibition and ectopic lignification in seedlings mutated in cellulose synthase CESA6 without influencing the cellulose deficiency. A T-DNA insertion mutant for THE1 also attenuated the growth defect and ectopic-lignin production in other but not all cellulose-deficient mutants. The deregulation of a small number of genes in cesA6 mutants depended on the presence of THE1. Some of these genes are involved in pathogen defense, in wall crosslinking, or in protecting the cell against reactive oxygen species.
The results show that THE1 mediates the response of growing plant cells to the perturbation of cellulose synthesis and may act as a cell-wall-integrity sensor.
一个主要挑战是了解正在扩张的植物细胞壁如何在常常存在降解细胞壁的微生物的情况下正确组装和重塑。植物细胞与酵母一样,会对细胞壁扰动做出反应,表现为基因表达变化、异位木质素积累以及纤维素合成受抑制导致的生长停滞。
我们鉴定出一种存在于正在伸长细胞中的质膜结合类受体激酶(THESEUS1)。THE1突变以及功能性THE1-GFP融合蛋白的过表达对野生型(WT)植物没有影响,但分别减弱和增强了纤维素合酶CESA6突变的幼苗中的生长抑制和异位木质化,且不影响纤维素缺乏情况。THE1的T-DNA插入突变体也减弱了其他但并非所有纤维素缺乏突变体中的生长缺陷和异位木质素产生。cesA6突变体中少数基因的失调取决于THE1的存在。其中一些基因参与病原体防御、细胞壁交联或保护细胞免受活性氧的侵害。
结果表明,THE1介导生长中的植物细胞对纤维素合成扰动的反应,可能作为一种细胞壁完整性传感器。