Department of Botany, Plant Physiology and Biochemistry Division, University of Calicut, Thenhipalam, Kerala, India.
Department of Botany, Sir Syed College, Taliparamba, Kannur, Kerala, India.
PLoS One. 2022 May 17;17(5):e0263753. doi: 10.1371/journal.pone.0263753. eCollection 2022.
Physio-anatomical modifications and elemental distribution pattern in Acanthus ilicifolius subjected to Zn stress were analysed in this study. Survival of A. ilicifolius plants under a high concentration of ZnSO4 was compensated by the reduction in the photosynthetic efficacy. Micro and macro-elemental distribution pattern in the root tissues was significantly influenced by heavy metal exposure. Tolerance towards the excess toxic metal ions in the tissue of A. ilicifolius was aided by the modified anatomical features. Moreover, the increased deposition of Zn around the central vasculature of the root confirms the complexation of Zn2+ in the xylem vessels. Metal induced molecular level changes of root and leaf samples indicate the presence of OH, NH2, and CH3 deformation as well as C-O-H and C-O-C stretch. A prominent band corresponding to CH3 deformation, pointing hemicellulose fortification, occurs in the cell walls of the xylem, aiding in Zn localization. The phytostabilisation potential of A. ilicifolius is dependent on the coordinated responses which endow with phenotypic plasticity necessary to cope with Zn toxicity.
本研究分析了受到锌胁迫的腺叶山柳菊在形态解剖学上的变化和元素分布模式。在高浓度的 ZnSO4 下,腺叶山柳菊植物的存活率通过降低光合作用效率得到补偿。重金属暴露显著影响了根部的微量元素和宏量元素分布模式。腺叶山柳菊组织对过量有毒金属离子的耐受性得益于解剖学特征的改变。此外,在根的中央维管束周围锌的增加沉积证实了 Zn2+在木质部导管中的络合。根和叶样本的金属诱导分子水平变化表明存在 OH、NH2 和 CH3 变形以及 C-O-H 和 C-O-C 伸展。在木质部细胞壁中,对应 CH3 变形的显著带出现,表明半纤维素的强化,有助于锌的定位。腺叶山柳菊的植物稳定潜力取决于赋予其应对锌毒性所需的表型可塑性的协调响应。