Ühlken Christine, Horvath Beatrix, Stadler Ruth, Sauer Norbert, Weingartner Magdalena
Molekulare Pflanzenphysiologie and Erlangen Center of Plant Science, Friedrich-Alexander Universität Erlangen-Nürnberg, D-91058, Erlangen, Germany.
Plant J. 2014 Apr;78(1):107-20. doi: 10.1111/tpj.12455. Epub 2014 Mar 12.
Plant development requires accurate coordination of gene expression, both in actively dividing meristematic cells and differentiated cells. Cell fate establishment and maintenance, among others, are mediated by chromatin organization complexes that determine the stable transcriptional states of specific cell types. Here, we focus on MAIN-LIKE1 (MAIL1), one of three homologs of MAINTENANCE OF MERISTEMS (MAIN), which form a plant-specific gene family in Arabidopsis thaliana. We show that MAIL1 encodes a ubiquitously expressed nuclear protein. A mail1 loss-of-function mutant developed short primary roots, in which the meristematic cells accumulated DNA double-strand breaks and underwent massive cell death. In addition, mail1 mutant showed also cell differentiation defects in root and shoot tissues, and developed disorganized callus-like structures. The genetic interaction between main and mail1 mutants suggests that they act in the same pathway, and that both are essential for maintaining correct cell division acitivity in meristematic cells, while MAIL1 has an additional function in differentiating cells.
植物发育需要在活跃分裂的分生组织细胞和分化细胞中精确协调基因表达。细胞命运的建立和维持等过程由染色质组织复合物介导,这些复合物决定了特定细胞类型的稳定转录状态。在这里,我们聚焦于MAIN-LIKE1(MAIL1),它是拟南芥中维持分生组织(MAIN)三个同源物之一,它们在拟南芥中形成一个植物特有的基因家族。我们发现MAIL1编码一种普遍表达的核蛋白。一个mail1功能缺失突变体形成了短的初生根,其中分生组织细胞积累了DNA双链断裂并经历了大量细胞死亡。此外,mail1突变体在根和茎组织中也表现出细胞分化缺陷,并形成了无序的愈伤组织样结构。main和mail1突变体之间的遗传相互作用表明它们在同一途径中起作用,并且两者对于维持分生组织细胞中正确的细胞分裂活性都是必不可少的,而MAIL1在分化细胞中具有额外的功能。