Water deficit altered proline and chlorophyll concentrations, and 1–Amino–cyclopropane–1– Carboxylic-Acid Oxydase accumulation in white clover

A. Nikmatullah, M. McManus, M. H. Behboudian, S. Leung
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Abstract

The effect of water deficit on concentration of proline and chlorophyll, as well as ACC oxydase gene expression and protein accumulation was examined in white clover subjected to water deficit. The water deficit treatment was imposed by acomplete withholding of water and examined until the PER ceased (at -1,4 MPa). The water deficit below 20% caused a decrease in the LWP and PER, but an increase in the total chlorophyll and proline concentrations of the FFE leaves. However, the totalchlorophyll of the SFE leaves did not altered by water deficit imposion. The expression of specific ACO genes and accumulation of ACO protein were examined within the tissues in which each gene is expressed during natural leaf ontogeny. No changes inTR-ACO1 expression and TR-ACO1 protein accumulation were determined in the apex. However, expression of the developing-leaf associated TR-ACO2 and accumulation of TR-ACO2 protein in the FFE leaves was stimulated further by water deficit treatment. This was most marked in an SWC associated with a decrease in PER, but before the significant change of rapid proline accumulation occurred. For the leaf senescence-associated TR-ACO3, no changes in expression were observed over the two stages of leaf development examined, suggesting that the severity and time-frame of exposure to the water deficit was not sufficient to induce this gene. These results show that water deficit does induce changes in the ACC Oxydase particularly the TRACO2 in the FFE leaf, and the changes were associated with an increase in chlorophyll and proline accumulation.
水分缺乏改变了白三叶草脯氨酸和叶绿素浓度以及1 -氨基-环丙烷- 1 -羧酸氧化酶的积累
以水分亏缺的白三叶草为材料,研究了水分亏缺对脯氨酸和叶绿素浓度、ACC氧化酶基因表达和蛋白质积累的影响。水亏处理是通过完全截留水来实施的,直到PER停止(-1,4 MPa)。水分亏缺低于20%时,叶片LWP和PER降低,总叶绿素和脯氨酸浓度升高。然而,水分亏缺对SFE叶片的总叶绿素含量没有影响。研究了各基因在叶片自然发育过程中表达的组织中特异的ACO基因的表达和ACO蛋白的积累。内层- aco1表达和TR-ACO1蛋白积累均未见明显变化。然而,水分亏缺处理进一步刺激了FFE叶片中发育叶片相关TR-ACO2的表达和TR-ACO2蛋白的积累。这在与PER降低相关的SWC中最为明显,但在脯氨酸快速积累发生显著变化之前。对于与叶片衰老相关的TR-ACO3,在叶片发育的两个阶段均未观察到表达变化,这表明暴露于水分亏缺的严重程度和时间框架不足以诱导该基因。这些结果表明,水分亏缺确实会引起叶片ACC氧化酶尤其是TRACO2的变化,并且这种变化与叶绿素和脯氨酸积累的增加有关。
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