Bisgrove Sherryl R, Lee Yuh-Ru Julie, Liu Bo, Peters Nick T, Kropf Darryl L
Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6.
Plant Cell. 2008 Feb;20(2):396-410. doi: 10.1105/tpc.107.056846. Epub 2008 Feb 15.
Microtubules function in concert with associated proteins that modify microtubule behavior and/or transmit signals that effect changes in growth. To better understand how microtubules and their associated proteins influence growth, we analyzed one family of microtubule-associated proteins, the END BINDING1 (EB1) proteins, in Arabidopsis thaliana (EB1a, EB1b, and EB1c). We find that antibodies directed against EB1 proteins colocalize with microtubules in roots, an observation that confirms previous reports using EB1-GFP fusions. We also find that T-DNA insertion mutants with reduced expression from EB1 genes have roots that deviate toward the left on vertical or inclined plates. Mutant roots also exhibit extended horizontal growth before they bend downward after tracking around an obstacle or after a 90 degrees clockwise reorientation of the root. These observations suggest that leftward deviations in root growth may be the result of delayed responses to touch and/or gravity signals. Root lengths and widths are normal, indicating that the delay in bend formation is not due to changes in the overall rate of growth. In addition, the genotype with the most severe defects responds to low doses of microtubule inhibitors in a manner indistinguishable from the wild type, indicating that microtubule integrity is not a major contributor to the leftward deviations in mutant root growth.
微管与相关蛋白协同发挥作用,这些蛋白可改变微管行为和/或传递影响生长变化的信号。为了更好地理解微管及其相关蛋白如何影响生长,我们在拟南芥中分析了一类微管相关蛋白,即末端结合蛋白1(EB1)蛋白(EB1a、EB1b和EB1c)。我们发现,针对EB1蛋白的抗体与根中的微管共定位,这一观察结果证实了先前使用EB1 - GFP融合蛋白的报道。我们还发现,EB1基因表达降低的T - DNA插入突变体的根在垂直或倾斜平板上向左偏斜。突变根在绕过障碍物或根顺时针重新定向90度后向下弯曲之前,也表现出水平生长延长。这些观察结果表明,根生长向左偏斜可能是对触摸和/或重力信号反应延迟的结果。根的长度和宽度正常,表明弯曲形成的延迟不是由于整体生长速率的变化。此外,具有最严重缺陷的基因型对低剂量微管抑制剂的反应与野生型无异,这表明微管完整性不是突变根生长向左偏斜的主要原因。