Vogel Heiko, Grieninger Gerd E, Zetsche Klaus H
Institute for Plant Physiology, Justus Liebig University Giessen, Germany.
Plant Physiol. 2002 Jul;129(3):1407-16. doi: 10.1104/pp.010983.
The unicellular green alga Acetabularia acetabulum has proven itself to be a superior model for studies of morphogenesis because of its large size and distinctive polar morphology. The giant cell forms an elongated tube (a stalk of up to 60 mm in length), which at its apical pole makes whorls of hairs, followed by one whorl of gametophores in the shape of a cap. At its basal pole, the cell extends into a rhizoid wherein the single nucleus is positioned. In this study, we have determined the level of specific messenger RNAs in the apical, middle, and basal regions using reverse transcriptase-PCR methodology. Four mRNA classes were distinguished: those that were uniformly distributed (small subunit of Rubisco, actin-1, ADP-glucose, centrin, and alpha- and beta-tubulin), those that expressed apical/basal (calmodulin-4) or basal/apical gradients (calmodulin-2 and a Ran-G protein), and those with development-specific patterns of distribution (mitogen-activated protein kinase, actin-2, and UDP-glucose-epimerase). Restoration of the apical/basal calmodulin-4 mRNA gradient after amputation of the apical region of the cell requires the nucleus and was abolished by cytochalasin D. Accumulation of actin-1 mRNA in the vicinity of the wound set by the amputation needs, likewise, the presence of the nucleus and was also inhibited by cytochalasin. This suggests that actin microfilaments of the cytoskeleton are involved in directed transport and/or anchoring of these mRNAs.
单细胞绿藻伞藻已证明自身是研究形态发生的优良模型,因为其体积大且具有独特的极性形态。巨大的细胞形成一个细长的管(长度可达60毫米的柄),在其顶端形成毛状体的轮,接着是一轮帽状的配子托。在其基部,细胞延伸成假根,单个细胞核位于其中。在本研究中,我们使用逆转录酶 - PCR方法确定了顶端、中部和基部区域中特定信使RNA的水平。区分出了四类mRNA:均匀分布的(核酮糖-1,5-二磷酸羧化酶小亚基、肌动蛋白-1、ADP - 葡萄糖、中心蛋白以及α-和β-微管蛋白)、表达顶端/基部梯度(钙调蛋白-4)或基部/顶端梯度(钙调蛋白-2和一种Ran - G蛋白)的,以及具有发育特异性分布模式的(丝裂原活化蛋白激酶、肌动蛋白-2和UDP - 葡萄糖差向异构酶)。细胞顶端区域被切除后,顶端/基部钙调蛋白-4 mRNA梯度的恢复需要细胞核,并且被细胞松弛素D消除。截肢造成的伤口附近肌动蛋白-1 mRNA的积累同样需要细胞核的存在,并且也受到细胞松弛素的抑制。这表明细胞骨架的肌动蛋白微丝参与了这些mRNA的定向运输和/或锚定。