Department of Biology and Biotechnology, Worcester Polytechnic Institute, Worcester, Massachusetts 01609, USA.
Plant Cell. 2010 Jun;22(6):1868-82. doi: 10.1105/tpc.109.073288. Epub 2010 Jun 4.
Class XI myosins are plant specific and responsible for cytoplasmic streaming. Because of the large number of myosin XI genes in angiosperms, it has been difficult to determine their precise role, particularly with respect to tip growth. The moss Physcomitrella patens provides an ideal system to study myosin XI function. P. patens has only two myosin XI genes, and these genes encode proteins that are 94% identical to each other. To determine their role in tip growth, we used RNA interference to specifically silence each myosin XI gene using 5' untranslated region sequences. We discovered that the two myosin XI genes are functionally redundant, since silencing of either gene does not affect growth or polarity. However, simultaneous silencing of both myosin XIs results in severely stunted plants composed of small rounded cells. Although similar to the phenotype resulting from silencing of other actin-associated proteins, we show that this phenotype is not due to altered actin dynamics. Consistent with a role in tip growth, we show that a functional, full-length fusion of monomeric enhanced green fluorescent protein (mEGFP) to myosin XI accumulates at a subcortical, apical region of actively growing protonemal cells.
肌球蛋白 XI 是植物特有的,负责细胞质流动。由于被子植物中肌球蛋白 XI 基因数量众多,因此很难确定其确切的作用,特别是在尖端生长方面。苔藓植物Physcomitrella patens 提供了一个研究肌球蛋白 XI 功能的理想系统。P. patens 只有两个肌球蛋白 XI 基因,这些基因编码的蛋白质彼此之间有 94%的相似度。为了确定它们在尖端生长中的作用,我们使用 RNA 干扰技术,使用 5'非翻译区序列特异性地沉默每个肌球蛋白 XI 基因。我们发现,这两个肌球蛋白 XI 基因在功能上是冗余的,因为沉默任意一个基因都不会影响生长或极性。然而,同时沉默两个肌球蛋白 XI 会导致植物严重矮化,由小而圆的细胞组成。虽然类似于沉默其他肌动蛋白相关蛋白导致的表型,但我们表明这种表型不是由于肌动蛋白动力学的改变引起的。与尖端生长中的作用一致,我们表明,单体增强型绿色荧光蛋白 (mEGFP) 与肌球蛋白 XI 的功能性全长融合在活跃生长的原丝体细胞的亚皮层、顶端区域积累。