Sorce Carlo, Bellini Erika, Bacchi Florinda, Sanità di Toppi Luigi
Department of Biology, University of Pisa, via L. Ghini, 13, 56126 Pisa, Italy.
Department of Biology and Biotechnology "Charles Darwin", Sapienza University of Rome, Piazzale A. Moro, 5, 00185 Rome, Italy.
Plants (Basel). 2023 Jul 26;12(15):2776. doi: 10.3390/plants12152776.
Metal micronutrients are essential for plant nutrition, but their toxicity threshold is low. In-depth studies on the response of light-dependent reactions of photosynthesis to metal micronutrients are needed, and the analysis of chlorophyll fluorescence transients is a suitable technique. The liverwort L., a model organism also used in biomonitoring, allowed us to accurately study the effects of metal micronutrients in vivo, particularly the early responses. Gametophytes were treated with copper (Cu), iron (Fe) or zinc (Zn) for up to 120 h. Copper showed the strongest effects, negatively affecting almost the entire light phase of photosynthesis. Iron was detrimental to the flux of energy around photosystem II (PSII), while the acceptor side of PSI was unaltered. The impact of Fe was milder than that of Cu and in both cases the structures of the photosynthetic apparatus that resisted the treatments were still able to operate efficiently. The susceptibility of to Zn was low: although the metal affected a large part of the electron transport chain, its effects were modest and short-lived. Our results may provide a contribution towards achieving a more comprehensive understanding of response mechanisms to metals and their evolution in plants, and may be useful for supporting the development of biomonitoring techniques.
金属微量营养元素对植物营养至关重要,但其毒性阈值较低。需要深入研究光合作用的光依赖反应对金属微量营养元素的响应,而叶绿素荧光瞬态分析是一种合适的技术。地钱,一种也用于生物监测的模式生物,使我们能够准确地在体内研究金属微量营养元素的影响,特别是早期反应。配子体用铜(Cu)、铁(Fe)或锌(Zn)处理长达120小时。铜显示出最强的影响,几乎对光合作用的整个光反应阶段产生负面影响。铁对光系统II(PSII)周围的能量通量有害,而光系统I(PSI)的受体侧未发生改变。铁的影响比铜温和,在这两种情况下,抵抗处理的光合机构结构仍能有效运作。地钱对锌的敏感性较低:尽管这种金属影响了大部分电子传递链,但其影响较小且短暂。我们的结果可能有助于更全面地理解植物对金属的响应机制及其进化,并且可能有助于支持生物监测技术的发展。