Group of Antioxidants, Free Radicals and Nitric Oxide in Biotechnology, Food and Agriculture, Department of Biochemistry, Cell and Molecular Biology of Plants, Estación Experimental del Zaidín, Spanish National Research Council (CSIC), C/Profesor Albareda 1, E-18008 Granada, Spain.
Int J Mol Sci. 2022 May 18;23(10):5648. doi: 10.3390/ijms23105648.
HS has acquired great attention in plant research because it has signaling functions under physiological and stress conditions. However, the direct detection of endogenous HS and its potential emission is still a challenge in higher plants. In order to achieve a comparative analysis of the content of HS among different plants with agronomical and nutritional interest including pepper fruits, broccoli, ginger, and different members of the genus Allium such as garlic, leek, Welsh and purple onion, the endogenous HS and its emission was determined using an ion-selective microelectrode and a specific gas detector, respectively. The data show that endogenous HS content range from pmol to μmol HS · g fresh weight whereas the HS emission of fresh-cut vegetables was only detected in the different species of the genus Allium with a maximum of 9 ppm in garlic cloves. Additionally, the activity and isozymes of the L-cysteine desulfhydrase (LCD) were analyzed, which is one of the main enzymatic sources of HS, where the different species of the genus Allium showed the highest activities. Using non-denaturing gel electrophoresis, the data indicated the presence of up to nine different LCD isozymes from one in ginger to four in onion, leek, and broccoli. In summary, the data indicate a correlation between higher LCD activity with the endogenous HS content and its emission in the analyzed horticultural species. Furthermore, the high content of endogenous HS in the Allium species supports the recognized benefits for human health, which are associated with its consumption.
HS 在植物研究中受到了极大的关注,因为它在生理和胁迫条件下具有信号功能。然而,直接检测内源性 HS 及其潜在排放仍然是高等植物中的一个挑战。为了实现对具有农艺和营养价值的不同植物(包括辣椒果实、西兰花、生姜以及大蒜、韭菜、威尔士葱和紫洋葱等不同葱属成员)中 HS 含量的比较分析,使用离子选择性微电极和特定的气体探测器分别测定了内源性 HS 及其排放。数据表明,内源性 HS 含量范围从 pmol 到 μmol HS·g 鲜重,而新鲜蔬菜的 HS 排放仅在不同葱属物种中检测到,大蒜蒜瓣中的 HS 排放最高可达 9 ppm。此外,还分析了 L-半胱氨酸脱巯基酶 (LCD) 的活性和同工酶,LCD 是 HS 的主要酶源之一,不同葱属物种表现出最高的活性。使用非变性凝胶电泳,数据表明从生姜中的一种到洋葱、韭菜和西兰花中的四种,存在多达 9 种不同的 LCD 同工酶。总之,数据表明,在分析的园艺物种中,较高的 LCD 活性与内源性 HS 含量及其排放之间存在相关性。此外,葱属物种中内源性 HS 的高含量支持了其消费与人类健康相关的公认益处。