Dipartimento di Biologia, Università degli Studi di Napoli Federico II, Campus Monte S. Angelo, Via Cinthia 4, 80126 Napoli, Italy.
Dipartimento di Biologia, Università degli Studi di Napoli Federico II, Campus Monte S. Angelo, Via Cinthia 4, 80126 Napoli, Italy.
Ecotoxicol Environ Saf. 2017 Nov;145:83-89. doi: 10.1016/j.ecoenv.2017.07.015. Epub 2017 Jul 12.
The effects of cadmium and lead were investigated in Cynara cardunculus L. Plant uptake by root and shoot, changes in cell ultrastructure and photosynthetic efficiency, photosynthetic key protein levels, as well as regulation of stress-induced Hsp70 were examined. Cynara cardunculus accumulated Cd and Pb in their tissue, with a different trend for the two metals. The prompt translocation of Cd to the shoot may justify the ultrastructural injuries, especially observed in chloroplasts. However, Cd- treated plants did not show any decline in photochemistry; it is likely that Cd in shoot tissue triggers defense mechanisms, increasing the level of proteins involved in photosynthesis (i.e., Rubisco and D1 increased 7 and 4.5 fold respectively) as a compensatory response to neutralize chloroplast damage. The accumulation of Pb mainly in root, can explain the increase in Hsp70 level (23 folds) in this tissue. Pb reached the shoots, even at low amounts, causing an overall significant change in some photochemical parameters (QY and NPQ decreases and increases of 25%, respectively). The results suggest a higher sensitivity of C. cardunculus to Pb than Cd, although maximal photochemical efficiency suggests that this species seems to tolerate Pb and Cd and hence, it is a suitable candidate for phytoremediation.
研究了镉和铅对朝鲜蓟(Cynara cardunculus L.)的影响。通过根和茎的植物吸收、细胞超微结构和光合效率的变化、光合关键蛋白水平以及应激诱导的 Hsp70 的调节来检测。朝鲜蓟在其组织中积累了 Cd 和 Pb,这两种金属的趋势不同。Cd 迅速转移到地上部分可能导致超微结构损伤,尤其是在叶绿体中观察到的损伤。然而,Cd 处理的植物并没有表现出任何光化学下降;很可能是地上部分的 Cd 触发了防御机制,增加了参与光合作用的蛋白质水平(即 Rubisco 和 D1 分别增加了 7 倍和 4.5 倍),作为对叶绿体损伤的补偿反应。Pb 主要在根部积累,这可以解释该组织中 Hsp70 水平的增加(23 倍)。Pb 到达地上部分,即使含量很低,也会导致一些光化学参数的整体显著变化(QY 和 NPQ 分别下降和增加 25%)。结果表明,C. cardunculus 对 Pb 的敏感性高于 Cd,尽管最大光化学效率表明该物种似乎能够耐受 Pb 和 Cd,因此,它是植物修复的合适候选者。