Ojangu Eve-Ly, Tanner Krista, Pata Pille, Järve Kristel, Holweg Carola L, Truve Erkki, Paves Heiti
Department of Gene Technology, Tallinn University of Technology, Akadeemia tee 15, 12618 Tallinn, Estonia.
BMC Plant Biol. 2012 Jun 6;12:81. doi: 10.1186/1471-2229-12-81.
The positioning and dynamics of vesicles and organelles, and thus the growth of plant cells, is mediated by the acto-myosin system. In Arabidopsis there are 13 class XI myosins which mediate vesicle and organelle transport in different cell types. So far the involvement of five class XI myosins in cell expansion during the shoot and root development has been shown, three of which, XI-1, XI-2, and XI-K, are essential for organelle transport.
Simultaneous depletion of Arabidopsis class XI myosins XI-K, XI-1, and XI-2 in double and triple mutant plants affected the growth of several types of epidermal cells. The size and shape of trichomes, leaf pavement cells and the elongation of the stigmatic papillae of double and triple mutant plants were affected to different extent. Reduced cell size led to significant size reduction of shoot organs in the case of triple mutant, affecting bolt formation, flowering time and fertility. Phenotype analysis revealed that the reduced fertility of triple mutant plants was caused by delayed or insufficient development of pistils.
We conclude that the class XI myosins XI-K, XI-1 and XI-2 have partially redundant roles in the growth of shoot epidermis. Myosin XI-K plays more important role whereas myosins XI-1 and XI-2 have minor roles in the determination of size and shape of epidermal cells, because the absence of these two myosins is compensated by XI-K. Co-operation between myosins XI-K and XI-2 appears to play an important role in these processes.
囊泡和细胞器的定位与动态变化,进而植物细胞的生长,是由肌动蛋白 - 肌球蛋白系统介导的。拟南芥中有13种XI类肌球蛋白,它们在不同细胞类型中介导囊泡和细胞器的运输。到目前为止,已表明5种XI类肌球蛋白参与茎和根发育过程中的细胞扩张,其中3种,即XI - 1、XI - 2和XI - K,对于细胞器运输至关重要。
在双突变体和三突变体植物中同时缺失拟南芥XI类肌球蛋白XI - K、XI - 1和XI - 2,影响了几种类型表皮细胞的生长。双突变体和三突变体植物的毛状体、叶表皮细胞的大小和形状以及柱头乳头的伸长受到不同程度的影响。细胞大小减小导致三突变体的地上器官显著变小,影响抽薹形成、开花时间和育性。表型分析表明,三突变体植物育性降低是由雌蕊发育延迟或不足引起的。
我们得出结论,XI类肌球蛋白XI - K、XI - 1和XI - 2在地上表皮生长中具有部分冗余作用。肌球蛋白XI - K起更重要的作用,而肌球蛋白XI - 1和XI - 2在表皮细胞大小和形状的决定中起次要作用,因为这两种肌球蛋白的缺失可由XI - K补偿。肌球蛋白XI - K和XI - 2之间的协同作用似乎在这些过程中起重要作用。