Friedman H, Meir S, Rosenberger I, Halevy A H, Kaufman P B, Philosoph-Hadas S
Department of Postharvest Science of Fresh Produce, Agricultural Research Organization, Bet Dagan, Israel.
Plant Physiol. 1998 Oct;118(2):483-92. doi: 10.1104/pp.118.2.483.
The putative Ca(2+)-channel blocker LaCl3 prevented the gravitropic bending of cut snapdragon (Antirrhinum majus L.) spikes (S. Philosoph-Hadas, S. Meir, I. Rosenberger, A.H. Halevy [1996] Plant Physiol 110: 301-310) and inhibited stem curvature to a greater extent than vertical and horizontal stem elongation at the bending zone. This might indicate that LaCl3, which modulates cytosolic Ca2+, does not influence general stem-growth processes but may specifically affect other gravity-associated processes occurring at the stem-bending zone. Two such specific gravity-dependent events were found to occur in the bending zone of snapdragon spikes: sedimentation of starch-containing chloroplasts at the bottom of stem cortex cells, as seen in cross-sections, and establishment of an ethylene gradient across the stem. Our results show that the lateral sedimentation of chloroplasts associated with gravity sensing was prevented in cross-sections taken from the bending zone of LaCl3-treated and subsequently gravistimulated spikes and that LaCl3 completely prevented the gravity-induced, asymmetric ethylene production established across the stem-bending zone. These data indicate that LaCl3 inhibits stem curvature of snapdragon spikes by preventing several gravity-dependent processes. Therefore, we propose that the gravitropic response of shoots could be mediated through a Ca(2+)-dependent pathway involving modulation of cytosolic Ca2+ at various stages.
推测的钙离子通道阻滞剂LaCl₃可阻止金鱼草(Antirrhinum majus L.)切下的穗状花序发生向重力性弯曲(S. Philosoph-Hadas、S. Meir、I. Rosenberger、A.H. Halevy [1996] Plant Physiol 110: 301 - 310),并且在弯曲区域比茎的垂直和水平伸长更能抑制茎的弯曲。这可能表明,调节胞质Ca²⁺的LaCl₃并不影响一般的茎生长过程,但可能特异性地影响在茎弯曲区域发生的其他与重力相关的过程。在金鱼草穗状花序的弯曲区域发现有两个这样依赖重力的特定事件发生:在茎皮层细胞底部含淀粉质体的沉降,这在横切面上可见,以及在茎上建立乙烯梯度。我们的结果表明,在取自经LaCl₃处理并随后进行重力刺激的穗状花序弯曲区域的横切面上,与重力感知相关的质体侧向沉降受到了阻止,并且LaCl₃完全阻止了在茎弯曲区域建立的重力诱导的不对称乙烯产生。这些数据表明,LaCl₃通过阻止几个依赖重力的过程来抑制金鱼草穗状花序的茎弯曲。因此,我们提出,芽的向重力性反应可能通过一条依赖钙离子的途径介导,该途径在各个阶段涉及对胞质Ca²⁺的调节。