Department of Botany, School of Biology, Aristotle University of Thessaloniki, University Campus, 54124 Thessaloniki, Greece.
J Plant Physiol. 2012 Apr 15;169(6):577-85. doi: 10.1016/j.jplph.2011.12.015. Epub 2012 Feb 2.
The relationships among photosynthetic acclimation, proline (Pro), soluble sugar (SS), and anthocyanin (An) accumulation in Arabidopsis thaliana leaves to the onset of drought stress (OnDS), mild (MiDS) and moderate drought stress (MoDS), were evaluated. As leaf water content (LWC) decreased, metabolic concentrations (Pro, SS, and An) increased and were negatively and significantly correlated with LWC. Thus, these metabolites may have an important role in the acclimation process to drought stress (DS). No correlations among Pro, SS and An accumulation with the quantum efficiency of PSII photochemistry (Φ(PSII)) and the excitation pressure (1-q(P)) were observed under DS. This implies that, while metabolites increased in a drought-dependent way, PSII activity did not decrease in the same pattern. Our results indicated that, under MoDS, A. thaliana leaves were able to maintain oxidative compounds such as malondialdeyde, an end product of lipid peroxidation, within the range of control leaves, and to cope with oxidative damage, as was evident by the decreased excitation pressure (1-q(P)) and similar (ns difference) Φ(PSII) to that of control leaves. In addition, a statistically significant increased accumulation of Pro, SS and An was recorded only under MoDS compared to controls. The better PSII functioning of MoDS Arabidopsis leaves may reflect the greater capacity of these leaves to undertake key metabolic adjustments, including increased Pro, SS and An accumulation, to maintain a higher antioxidant protection and a better balance between light capture and energy use.
研究了拟南芥叶片光合作用适应、脯氨酸(Pro)、可溶性糖(SS)和花青素(An)积累与干旱胁迫(OnDS)、轻度干旱胁迫(MiDS)和中度干旱胁迫(MoDS)发生之间的关系。随着叶片含水量(LWC)的降低,代谢浓度(Pro、SS 和 An)增加,与 LWC 呈负显著相关。因此,这些代谢物可能在适应干旱胁迫(DS)的过程中发挥重要作用。在 DS 下,Pro、SS 和 An 积累与 PSII 光化学量子效率(Φ(PSII))和激发压力(1-q(P))之间没有相关性。这意味着,虽然代谢物以依赖干旱的方式增加,但 PSII 活性并没有以相同的方式下降。我们的结果表明,在 MoDS 下,拟南芥叶片能够将丙二醛等氧化化合物维持在对照叶片的范围内,丙二醛是脂质过氧化的终产物,并且能够应对氧化损伤,这表现在激发压力(1-q(P))降低和 PSII 与对照叶片相似(ns 差异)。此外,与对照相比,仅在 MoDS 下记录到 Pro、SS 和 An 的积累有统计学意义的增加。MoDS 拟南芥叶片更好的 PSII 功能可能反映了这些叶片具有更大的能力来进行关键的代谢调整,包括增加 Pro、SS 和 An 的积累,以维持更高的抗氧化保护和更好的光捕获与能量利用之间的平衡。