Institute of Plant Nutritional Physiology and Molecular Biology, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Institute of Materia Medica, Fujian Academy of Medical Sciences, Fuzhou, 350001, China.
BMC Plant Biol. 2019 Feb 15;19(1):76. doi: 10.1186/s12870-019-1683-4.
Magnesium (Mg)-deficiency is one of the most prevalent physiological disorders causing a reduction in Citrus yield and quality. 'Xuegan' (Citrus sinensis) seedlings were irrigated for 16 weeks with nutrient solution containing 2 mM (Mg-sufficiency) or 0 mM (Mg-deficiency) Mg(NO). Thereafter, we investigated the Mg-deficient effects on gas exchange and chlorophyll a fluorescence in the upper and lower leaves, and Mg, reactive oxygen species (ROS) and methylglyoxal (MG) metabolisms in the roots, lower and upper leaves. The specific objectives were to corroborate the hypothesis that the responses of ROS and MG metabolisms to Mg-deficiency were greater in the lower leaves than those in the upper leaves, and different between the leaves and roots.
Mg level was higher in the Mg-deficient upper leaves than that in the Mg-deficient lower leaves. This might be responsible for the Mg-deficiency-induced larger alterations of all the measured parameters in the lower leaves than those in the upper leaves, but they showed similar change patterns between the Mg-deficient lower and upper leaves. Accordingly, Mg-deficiency increased greatly their differences between the lower and upper leaves. Most of parameters involved in ROS and MG metabolisms had similar variation trends and degrees between the Mg-deficient lower leaves and roots, but several parameters (namely glutathione S-transferase, sulfite reductase, ascorbate and dehydroascorbate) displayed the opposite variation trends. Obviously, differences existed in the Mg-deficiency-induced alterations of ROS and MG metabolisms between the lower leaves and roots. Although the activities of most antioxidant and sulfur metabolism-related enzymes and glyoxalase I and the level of reduced glutathione in the Mg-deficient leaves and roots and the level of ascorbate in the leaves were kept in higher levels, the levels of malonaldehyde and MG and/or electrolyte leakage were increased in the Mg-deficient lower and upper leaves and roots, especially in the Mg-deficient lower leaves and roots.
The ROS and MG detoxification systems as a whole did not provide sufficient detoxification capacity to prevent the Mg-deficiency-induced production and accumulation of ROS and MG, thus leading to lipid peroxidation and the loss of plasma membrane integrity, especially in the lower leaves and roots.
镁(Mg)缺乏是导致柑橘产量和品质下降的最常见生理障碍之一。用含有 2mM(Mg 充足)或 0mM(Mg 缺乏)Mg(NO₃)的营养液灌溉'血柑'(Citrus sinensis)幼苗 16 周。此后,我们研究了镁缺乏对上部和下部叶片气体交换和叶绿素 a 荧光的影响,以及根部、下部和上部叶片中镁、活性氧(ROS)和甲基乙二醛(MG)代谢的影响。具体目标是证实以下假设:ROS 和 MG 代谢对镁缺乏的反应在上部叶片中比下部叶片中更为强烈,并且在叶片和根部之间存在差异。
镁缺乏的上部叶片中的镁水平高于下部叶片。这可能是由于镁缺乏导致下部叶片中所有测量参数的变化大于上部叶片,而下部叶片和上部叶片之间存在相似的变化模式。因此,镁缺乏大大增加了它们之间的差异。ROS 和 MG 代谢中涉及的大多数参数在镁缺乏的下部叶片和根部之间具有相似的变化趋势和程度,但几个参数(即谷胱甘肽 S-转移酶、亚硫酸盐还原酶、抗坏血酸和脱氢抗坏血酸)显示出相反的变化趋势。显然,ROS 和 MG 代谢在镁缺乏诱导的下部叶片和根部之间存在差异。尽管镁缺乏叶片和根部中的大多数抗氧化和硫代谢相关酶以及谷胱甘肽还原酶的活性和还原型谷胱甘肽的水平、叶片中的抗坏血酸水平保持在较高水平,但叶片和根部中的丙二醛和 MG 水平和/或电解质泄漏增加,尤其是在镁缺乏的下部叶片和根部。
ROS 和 MG 解毒系统作为一个整体没有提供足够的解毒能力来防止镁缺乏引起的 ROS 和 MG 的产生和积累,从而导致脂质过氧化和质膜完整性的丧失,尤其是在下部叶片和根部。