Perera I Y, Heilmann I, Boss W F
Department of Botany, North Carolina State University, Raleigh, NC 27695, USA.
Proc Natl Acad Sci U S A. 1999 May 11;96(10):5838-43. doi: 10.1073/pnas.96.10.5838.
The internodal maize pulvinus responds to gravistimulation with differential cell elongation on the lower side. As the site of both graviperception and response, the pulvinus is an ideal system to study how organisms sense changes in orientation. We observed a transient 5-fold increase in inositol 1,4,5-trisphosphate (IP3) within 10 s of gravistimulation in the lower half of the pulvinus, indicating that the positional change was sensed immediately. Over the first 30 min, rapid IP3 fluctuations were observed between the upper and lower halves. Maize plants require a presentation time of between 2 and 4 h before the cells on the lower side of the pulvinus are committed to elongation. After 2 h of gravistimulation, the lower half consistently had higher IP3, and IP3 levels on the lower side continued to increase up to approximately 5-fold over basal levels before visible growth. As bending became visible after 8-10 h, IP3 levels returned to basal values. Additionally, phosphatidylinositol 4-phosphate 5-kinase activity in the lower pulvinus half increased transiently within 10 min of gravistimulation, suggesting that the increased IP3 production was accompanied by an up-regulation of phosphatidylinositol 4, 5-bisphosphate biosynthesis. Neither IP3 levels nor phosphatidylinositol 4-phosphate 5-kinase activity changed in pulvini halves from vertical control plants. Our data indicate the involvement of IP3 and inositol phospholipids in both short- and long-term responses to gravistimulation. As a diffusible second messenger, IP3 provides a mechanism to transmit and amplify the signal from the perceiving to the responding cells in the pulvinus, coordinating a synchronized growth response.
玉米节间叶枕通过下侧细胞的差异伸长对重力刺激作出反应。作为重力感知和反应的部位,叶枕是研究生物体如何感知方向变化的理想系统。我们观察到,在重力刺激后10秒内,叶枕下半部分的肌醇1,4,5 -三磷酸(IP3)瞬间增加了5倍,这表明位置变化被立即感知到。在最初的30分钟内,观察到叶枕上半部分和下半部分之间IP3迅速波动。玉米植株在叶枕下侧细胞开始伸长之前需要2至4小时的呈现时间。重力刺激2小时后,下半部分的IP3始终较高,并且在下侧可见生长之前,IP3水平持续增加至比基础水平高约5倍。在8 - 10小时后弯曲变得明显时,IP3水平恢复到基础值。此外,重力刺激10分钟内,叶枕下半部分的磷脂酰肌醇4 -磷酸5 -激酶活性瞬间增加,这表明IP3产量的增加伴随着磷脂酰肌醇4,5 -二磷酸生物合成的上调。来自垂直对照植株的叶枕两半部分的IP3水平和磷脂酰肌醇4 -磷酸5 -激酶活性均未发生变化。我们的数据表明IP3和肌醇磷脂参与了对重力刺激的短期和长期反应。作为一种可扩散的第二信使,IP3提供了一种机制,将信号从叶枕中的感知细胞传递并放大到反应细胞,从而协调同步的生长反应。