Huang F. Y., Philosoph-Hadas S., Meir S., Callaham D. A., Sabato R., Zelcer A., Hepler P. K.
Department of Biology, University of Massachusetts, Amherst, Massachusetts, 01003 (F.-Y.H., D.A.C., P.K.H.).
Plant Physiol. 1997 Sep;115(1):51-60. doi: 10.1104/pp.115.1.51.
The ability to maintain the cytoplasmic Ca2+ concentration ([Ca2+]cyt) at homeostatic levels has been examined during leaf senescence in detached parsley (Petroselinum crispum) leaves. Fluorescence ratiometric imaging of mesophyll cells isolated from parsley leaves at various senescence stages and loaded with the Ca2+ indicator fura-2 has revealed a distinct elevation of [Ca2+]cyt, which was positively correlated with the progress of leaf senescence. This initial increase of [Ca2+]cyt, which was first observed in cells isolated from 3-d-senescent leaves, occurred 1 d before or in parallel with changes in two established senescence parameters, chlorophyll loss and lipid peroxidation. However, the [Ca2+]cyt elevation followed by 2 d the initial increase in the senescence-associated proteolysis. Whereas the [Ca2+]cyt of nonsenescent cells remained at the basal level, the elevated [Ca2+]cyt of the senescent cells was a long-lasting effect. Experimental retardation of senescence processes, achieved by pretreatment of detached leaves with the cytokinin benzyladenine, resulted in maintenance of homeostatic levels of [Ca2+]cyt in cells isolated from 3-d-senescent leaves. These observations demonstrate for the first time to our knowledge a correlation between elevated [Ca2+]cyt and the process of senescence in parsley leaves. Such senescence-associated elevation of [Ca2+]cyt, which presumably results from a loss of the cell's capability to extrude Ca2+, may serve as a signal inducing subsequent deteriorative processes.
在离体的欧芹(Petroselinum crispum)叶片衰老过程中,对维持细胞质钙离子浓度([Ca2+]cyt)于稳态水平的能力进行了研究。利用钙离子指示剂fura-2对处于不同衰老阶段的欧芹叶片分离得到的叶肉细胞进行荧光比率成像分析,结果显示[Ca2+]cyt明显升高,且与叶片衰老进程呈正相关。[Ca2+]cyt的这种初始升高最早在从3天龄衰老叶片分离的细胞中观察到,发生在两个既定衰老参数(叶绿素损失和脂质过氧化)变化之前1天或与之同时出现。然而,[Ca2+]cyt升高在衰老相关蛋白水解初始增加之后2天出现。非衰老细胞的[Ca2+]cyt维持在基础水平,而衰老细胞中升高的[Ca2+]cyt是一种持久效应。通过用细胞分裂素苄基腺嘌呤预处理离体叶片实现衰老进程的实验性延缓,导致从3天龄衰老叶片分离的细胞中[Ca2+]cyt维持在稳态水平。据我们所知,这些观察首次证明了[Ca2+]cyt升高与欧芹叶片衰老过程之间的相关性。这种与衰老相关的[Ca2+]cyt升高,可能是由于细胞排出钙离子能力丧失所致,可能作为一种信号诱导随后的降解过程。