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In Situ Investigation of Leaf Water Status by Portable Unilateral Nuclear Magnetic Resonance

机译:便携式单边核磁共振对叶片水状态的原位研究

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A portable unilateral nuclear magnetic resonance (NMR) instrument was used to detect in field conditions the water status of leaves of herbaceous crops (Zea mays, Phaseolus vulgaris), mesophyllous trees (Populus nigra), and natural Mediterranean vegetation characterized by water-spending shrubs (Cistus incanus) and water-saving sclerophyllous trees (Quercus ilex). A good relationship was observed between NMR signal, leaf relative water content, and leaf transpiration in herbaceous leaves undergoing fast dehydration or slowly developing a drought stress. A relationship was also observed between NMR signal and water potential of Populus leaves during the development of a water stress and when leaves recovered from the stress. In the natural vegetation, the relationship between NMR signal and water status was found in Cistus, the species characterized by high transpiration rates, when measured during a drought stress period and after a rainfall. In the case of the sclerophyllous Quercus, the NMR signal, the relative water content, and the transpiration rate did not change at different leaf water status, possibly because a large amount of water is compartmentalized in cellular structures and macromolecules. The good association between NMR signal and relative water content was lost in leaves exposed for 24 h to dehydration or to an osmotic stress caused by polyethylene glycol feeding. At this time, the transverse relaxation time became longer than in leaves maintained under optimal water conditions, and two indicators of membrane damage, the ion leakage and the emission of products of membrane lipoxygenation [(Z)-3-hexenal, (Z)-3-hexenol, and (E)-2-hexenol], increased. These results taken all together give information on the physiological state of a leaf under a developing stress and show the usefulness of the NMR instrumentation for screening vegetation health and fitness in natural and cultivated conditions. It is concluded that the portable unilateral NMR instrument may be usefully employed in field conditions to monitor nondestructively the water status of plants and to assist agricultural practices, such as irrigation scheduling, to minimize stomatal closure and the consequent limitation to plant production.
机译:使用便携式单边核磁共振(NMR)仪器在田间条件下检测草本作物(Zea mays,菜豆),中度食肉树(Populus nigra)和以花灌木为特征的天然地中海植物的水分状况(Cistus incanus)和节水硬叶树(Quercus ilex)。在经历快速脱水或缓慢发展干旱胁迫的草本叶片中,NMR信号,叶片相对含水量和叶片蒸腾之间观察到良好的关系。在水分胁迫形成期间以及叶片从胁迫中恢复时,还观察到了胡杨叶片的NMR信号与水势之间的关系。在自然植被中,在干旱胁迫期间和降雨后进行测量时,在Cistus中发现了NMR信号与水状态之间的关系,而Cistus是具有高蒸腾速率的物种。在硬叶栎的情况下,NMR信号,相对水含量和蒸腾速率在不同叶片水状态下均未改变,这可能是因为大量水在细胞结构和大分子中被分隔开了。暴露于脱水或暴露于聚乙二醇所引起的渗透胁迫下24小时的叶片中,NMR信号与相对含水量之间的良好关联消失了。此时,横向弛豫时间变得比在最佳水分条件下保持的叶片更长,并且有两个膜损伤指标,离子泄漏和膜脂氧合产物的排放[(Z)-3-hexenal,(Z)- 3-己烯醇和(E)-2-己烯醇]增加。这些结果加在一起提供了在不断发展的胁迫下叶片的生理状态的信息,并显示了NMR仪器在自然和耕作条件下筛选植被健康和适应性的有用性。结论是,便携式单侧NMR仪器可用于野外条件,以非破坏性地监测植物的水分状况,并协助农业实践(如灌溉计划),以最大程度地减少气孔关闭以及对植物生产的限制。

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