National Research Center for Intelligent Agricultural Equipments, Beijing 100097, China.
J Sci Food Agric. 2011 Mar 30;91(5):813-9. doi: 10.1002/jsfa.4252.
Drought is the most important abiotic stress factor limiting corn (Zea mays L.) growth and productivity. Therefore efficient management of soil moisture and study of metabolic changes in response to drought are important for improved production of corn. The objective of the present study was to gain a better understanding of drought tolerance mechanisms and improve soil water management strategies using a water-saving superabsorbent polymer (SAP) at 30 kg ha(-1) under three irrigation levels (adequate, moderate and deficit) using a new type of hydraulic pressure-controlled auto-irrigator.
The results showed that relative water content and leaf water potential were much higher in corn treated with SAP. Although application of SAP reduced biomass accumulation by 11.1% under adequate irrigation, it increased the biomass markedly by 39.0% under moderate irrigation and 98.7% under deficit irrigation. Plants treated with SAP under deficit irrigation showed a significant decrease in superoxide dismutase, catalase, peroxidase, ascorbate peroxidase and glutathione reductase activities in leaves compared with control plants.
The results of this study suggest that drought stress causes the production of oxygen radicals, leading to increased lipid peroxidation and oxidative stress in plants, and the application of a superabsorbent polymer could conserve soil water, making it available to plants for quenching oxidative stress and increasing biomass accumulation, especially under severe water stress.
干旱是限制玉米(Zea mays L.)生长和产量的最重要非生物胁迫因素。因此,有效管理土壤水分和研究代谢变化以应对干旱对于提高玉米产量非常重要。本研究的目的是使用新型水力压力控制自动灌溉器,在 30 公斤/公顷的节水型高吸水性聚合物(SAP)下,在三种灌溉水平(充足、适度和亏缺)下,更好地了解耐旱机制并改善土壤水分管理策略。
结果表明,SAP 处理的玉米的相对水含量和叶片水势要高得多。虽然 SAP 在充足灌溉下使生物量积累减少了 11.1%,但在适度灌溉下使生物量显著增加了 39.0%,在亏缺灌溉下增加了 98.7%。与对照植物相比,亏缺灌溉下 SAP 处理的植物叶片中超氧化物歧化酶、过氧化氢酶、过氧化物酶、抗坏血酸过氧化物酶和谷胱甘肽还原酶的活性明显下降。
本研究结果表明,干旱胁迫会导致氧自由基的产生,导致植物中脂质过氧化和氧化应激增加,而高吸水性聚合物的应用可以保持土壤水分,使其可供植物用于淬灭氧化应激并增加生物量积累,尤其是在严重的水分胁迫下。