Messerli Mark A, Robinson Kenneth R
Department of Biological Sciences, Purdue University, West Lafayette, IN 47907-1392, USA.
Planta. 2003 May;217(1):147-57. doi: 10.1007/s00425-003-0972-0. Epub 2003 Feb 12.
Two mechanisms have been proposed as the primary control of oscillating tip growth in Lilium longiflorum Thunb. pollen tubes: changes in cell wall strength (Holdaway-Clarke et al. 1997) or alternatively, changes in turgor pressure (Messerli et al. 2000). Here we have modified the ionic and osmotic concentrations of the growth medium to test predictions derived from both models. Raising the [Ca2+]o tenfold above normal reduced the amplitude of the [Ca2+]i oscillations and growth oscillations while it raised the basal [Ca2+]i and growth rate such that the average growth rate did not change. Raising the [H+] of the growth medium tenfold reversibly decreased and sometimes eliminated the [Ca2+]i and growth oscillations without changing the average growth rate. Lowering the [H+] tenfold led to irregular frequency and amplitude [Ca2+]i oscillations, reduced the average growth rate of tubes and led to cell bursting in 33% of tubes. Addition of 50 mM H+ buffer, MES, to prevent pH changes in the cell wall increased the period, amplitude and duration of both [Ca2+]i and growth oscillations. Changing the [K+]o did not markedly effect [Ca2+]i oscillations. Reducing the osmolarity of the medium led to transient large-amplitude [Ca2+]i and growth oscillations while reducing large-amplitude oscillations over long periods. In many different conditions under which growth still occurs, lily pollen tubes maintain growth oscillations, albeit with modified frequency, amplitude and duration. We conclude that modifications to both proposed models are necessary to explain oscillating growth in this system.
对于麝香百合花粉管振荡顶端生长的主要调控机制,已提出两种假说:细胞壁强度的变化(Holdaway-Clarke等人,1997年),或者膨压的变化(Messerli等人,2000年)。在此,我们改变了生长培养基的离子浓度和渗透压,以检验从这两种模型得出的预测。将胞外钙离子浓度提高至正常水平的十倍,会降低胞内钙离子振荡和生长振荡的幅度,同时提高胞内钙离子基础水平和生长速率,使得平均生长速率不变。将生长培养基的氢离子浓度提高十倍,会使胞内钙离子和生长振荡可逆地降低,有时甚至消除,而平均生长速率不变。将氢离子浓度降低十倍,会导致胞内钙离子振荡的频率和幅度不规则,降低花粉管的平均生长速率,并导致33%的花粉管细胞破裂。添加50 mM的氢离子缓冲剂MES以防止细胞壁pH值变化,会增加胞内钙离子和生长振荡的周期、幅度和持续时间。改变胞外钾离子浓度对胞内钙离子振荡没有显著影响。降低培养基的渗透压会导致短暂的大幅度胞内钙离子和生长振荡,同时在长时间内降低大幅度振荡。在许多仍能发生生长的不同条件下,百合花粉管维持生长振荡,尽管频率、幅度和持续时间有所改变。我们得出结论,要解释该系统中的振荡生长,对这两种假说进行修正都是必要的。