Halperin Stephen J, Gilroy Simon, Lynch Jonathan P
Department of Horticulture, The Pennsylvania State University, 102 Tyson Bldg, University Park, PA 16802, USA.
J Exp Bot. 2003 Apr;54(385):1269-80. doi: 10.1093/jxb/erg134.
The effects of salinity (NaCl) stress on growth, cytosolic Ca(2+) gradients and cytosolic pH homeostasis of root hairs of Arabidopsis thaliana are assessed here. Neither cytosolic Ca(2+) nor pH at the hair apex were significantly affected by 20 min exposure of up to 90 mM NaCl or of up to 5 mM extracellular Ca(2+). Exposure to increasing NaCl concentrations, up to 90 mM, for 2 d or 6 d reduced hair extension, and this inhibition was relieved by supplemental extracellular Ca(2+). Such extended salinity stress reduced the magnitude of the Ca(2+) gradient in the apical 12 microm of hairs at all NaCl concentrations tested (up to 90 mM), including NaCl concentrations that did not reduce hair extension. The magnitude of the tip-focused gradient was also reduced in root hairs of plants grown with low (0.5 mM) extracellular Ca(2+) when compared to those in 5 mM extracellular Ca(2+), regardless of the presence of NaCl. Up to 90 mM NaCl did not affect cytosolic pH of root hairs in any of the treatments. It is concluded that NaCl inhibition of root hair extension in the long term may operate via alterations in the tip-focused Ca(2+) gradient that regulates root hair growth. However, NaCl-induced alterations in this gradient do not always lead to detectably altered growth kinetics. Short-term signalling events in response to NaCl may operate by a means other than altering Ca(2+) at the root hair apex. Salinity stress in root hairs does not appear to be mediated by effects on cytosolic pH.
本文评估了盐度(NaCl)胁迫对拟南芥根毛生长、胞质Ca(2+)梯度和胞质pH稳态的影响。高达90 mM NaCl或高达5 mM细胞外Ca(2+)暴露20分钟,对根毛顶端的胞质Ca(2+)和pH均无显著影响。暴露于高达90 mM的递增NaCl浓度下2天或6天会减少根毛伸长,而补充细胞外Ca(2+)可缓解这种抑制作用。这种延长的盐度胁迫降低了所有测试NaCl浓度(高达90 mM)下根毛顶端12微米处Ca(2+)梯度的幅度,包括未降低根毛伸长的NaCl浓度。与5 mM细胞外Ca(2+)条件下生长的植物根毛相比,在低(0.5 mM)细胞外Ca(2+)条件下生长的植物根毛中,顶端聚焦梯度的幅度也降低了,无论是否存在NaCl。高达90 mM NaCl在任何处理中均未影响根毛的胞质pH。得出的结论是,长期来看,NaCl对根毛伸长的抑制可能是通过调节根毛生长的顶端聚焦Ca(2+)梯度的改变来实现的。然而,NaCl诱导的该梯度变化并不总是导致可检测到的生长动力学改变。响应NaCl的短期信号事件可能通过根毛顶端改变Ca(2+)以外的其他方式起作用。根毛中的盐度胁迫似乎不是由对胞质pH的影响介导的。