Máthé Csaba, M-Hamvas Márta, Vasas Gábor, Garda Tamás, Freytag Csongor
Department of Botany, Faculty of Science and Technology, University of Debrecen, Debrecen Egyetem tér 1, H-4032 Debrecen, Hungary.
Plants (Basel). 2021 May 14;10(5):984. doi: 10.3390/plants10050984.
Phytotoxicity of cyanobacterial toxins has been confirmed at the subcellular level with consequences on whole plant physiological parameters and thus growth and productivity. Most of the data are available for two groups of these toxins: microcystins (MCs) and cylindrospermopsins (CYNs). Thus, in this review we present a timely survey of subcellular cyanotoxin effects with the main focus on these two cyanotoxins. We provide comparative insights into how peculiar plant cellular structures are affected. We review structural changes and their physiological consequences induced in the plastid system, peculiar plant cytoskeletal organization and chromatin structure, the plant cell wall, the vacuolar system, and in general, endomembrane structures. The cyanotoxins have characteristic dose-and plant genotype-dependent effects on all these structures. Alterations in chloroplast structure will influence the efficiency of photosynthesis and thus plant productivity. Changing of cell wall composition, disruption of the vacuolar membrane (tonoplast) and cytoskeleton, and alterations of chromatin structure (including DNA strand breaks) can ultimately lead to cell death. Finally, we present an integrated view of subcellular alterations. Knowledge on these changes will certainly contribute to a better understanding of cyanotoxin-plant interactions.
蓝藻毒素的植物毒性已在亚细胞水平得到证实,对整个植物的生理参数产生影响,进而影响生长和生产力。关于这些毒素中的两类毒素,即微囊藻毒素(MCs)和柱孢藻毒素(CYNs),已有大量数据。因此,在本综述中,我们及时总结了亚细胞水平上蓝藻毒素的影响,主要聚焦于这两种蓝藻毒素。我们对植物特有的细胞结构如何受到影响提供了比较性见解。我们回顾了质体系统、植物特有的细胞骨架组织和染色质结构、植物细胞壁、液泡系统以及一般内膜结构中诱导的结构变化及其生理后果。蓝藻毒素对所有这些结构具有特征性的剂量和植物基因型依赖性影响。叶绿体结构的改变会影响光合作用效率,从而影响植物生产力。细胞壁组成的变化、液泡膜(液泡质膜)和细胞骨架的破坏以及染色质结构的改变(包括DNA链断裂)最终可能导致细胞死亡。最后,我们呈现了亚细胞变化的综合观点。对这些变化的了解无疑将有助于更好地理解蓝藻毒素与植物的相互作用。