Garrido Yolanda, Tudela Juan A, Marín Alicia, Mestre Teresa, Martínez Vicente, Gil María I
Research Group on Quality, Safety and Bioactivity of Plant Foods, Food Science and Technology Department, CEBAS-CSIC, PO Box 164, E-30100, Espinardo, Murcia, Spain.
J Sci Food Agric. 2014 Jun;94(8):1592-9. doi: 10.1002/jsfa.6462. Epub 2013 Nov 26.
Environmental stress due to salt has been described to enhance lettuce processability, shelf life and consumer acceptability. Moderate salinity causes altered leaf carotenoid, lignin, phenolic and flavonol levels without noticeable changes in the green colour and morphology of lettuce. The aim of this study was to understand the improvements in processability, due to salt stress, related to textural properties and structural characteristics.
Physiological, phytochemical and structural changes were observed that were of significant relevance to salt stress (50, 100 and 150 mmol L(-1) NaCl). Fresh weight per plant, fresh weight per leaf, leaf area, water content, colour saturation, chlorophyll a and b and the area of the intercellular spaces decreased when the concentration of salt was increased. Solute concentration, elasticity, total and individual phenolic acids and the areas occupied by the palisade and spongy parenchyma cells increased when the concentration of salt was increased.
These data illustrate that salt stress can have a positive impact on certain structural parameters, especially tissue elasticity, that can be closely linked to a higher number of cells, of lower size and high leaf strength, explaining the postharvest longevity of lettuce. However, leaf growth and visual quality could be negatively affected by salt stress.
盐胁迫引起的环境压力已被描述为可提高生菜的加工性能、货架期和消费者接受度。适度盐度会导致叶片类胡萝卜素、木质素、酚类和黄酮醇含量发生变化,但生菜的绿色和形态没有明显改变。本研究的目的是了解盐胁迫导致的与质地特性和结构特征相关的加工性能改善情况。
观察到与盐胁迫(50、100和150 mmol L(-1) NaCl)显著相关的生理、植物化学和结构变化。当盐浓度增加时,单株鲜重、单叶鲜重、叶面积、含水量、颜色饱和度、叶绿素a和b以及细胞间隙面积均下降。当盐浓度增加时,溶质浓度、弹性、总酚酸和各酚酸以及栅栏薄壁组织细胞和海绵薄壁组织细胞所占面积增加。
这些数据表明,盐胁迫可对某些结构参数产生积极影响,尤其是组织弹性,这可能与细胞数量较多、尺寸较小和叶片强度较高密切相关,解释了生菜的采后寿命。然而,盐胁迫可能会对叶片生长和视觉质量产生负面影响。