Haley A, Russell A J, Wood N, Allan A C, Knight M, Campbell A K, Trewavas A J
Institute of Cell and Molecular Biology, University of Edinburgh, United Kingdom.
Proc Natl Acad Sci U S A. 1995 May 9;92(10):4124-8. doi: 10.1073/pnas.92.10.4124.
Mechanical signals are important influences on the development and morphology of higher plants. Using tobacco transformed with the Ca(2+)-sensitive luminescent protein aequorin, we recently reported the effects of mechanical signals of touch and wind on the luminescence and thus intracellular calcium of young seedlings. When mesophyll protoplasts are isolated from these transgenic tobacco plants and mechanically stimulated by swirling them in solution, cytoplasmic Ca2+ increases immediately and transiently up to 10 microM, and these transients are unaffected by an excess of EGTA in the medium. The size of the transient effect is related to the strength of swirling. Epidermal strips isolated from transgenic tobacco leaves and containing only viable guard cells and trichomes also respond to the strength of swirling in solution and can increase their cytoplasmic Ca2+ transiently up to 10 microM. Finally, the moss Physcomitrella patens containing recombinant aequorin exhibits transient increases in cytoplasmic Ca2+ up to 5 microM when swirled in solution. This effect is strongly inhibited by ruthenium red. Our data indicate that the effect of mechanical stimulation can be found in a number of different cell types and in a lower plant as well as tobacco and suggest that mechanoperception and the resulting increase in cytoplasmic Ca2+ may be widespread.
机械信号对高等植物的发育和形态具有重要影响。我们最近利用转染了对Ca(2+)敏感的发光蛋白水母发光蛋白的烟草,报道了触摸和风的机械信号对幼苗发光以及细胞内钙的影响。当从这些转基因烟草植株中分离出叶肉原生质体并通过在溶液中旋转来进行机械刺激时,细胞质Ca2+会立即短暂增加至10微摩尔,并且这些瞬变不受培养基中过量乙二醇双四乙酸(EGTA)的影响。瞬变效应的大小与旋转强度有关。从转基因烟草叶片分离出的仅含有活保卫细胞和毛状体的表皮条也对溶液中的旋转强度作出反应,并且其细胞质Ca2+可短暂增加至10微摩尔。最后,含有重组水母发光蛋白的小立碗藓在溶液中旋转时,其细胞质Ca2+会短暂增加至5微摩尔。这种效应受到钌红的强烈抑制。我们的数据表明,机械刺激的效应在多种不同细胞类型以及低等植物和烟草中都能发现,这表明机械感受以及由此导致的细胞质Ca2+增加可能很普遍。