Rácz A, Czégény Gy, Kutyáncsánin D, Nagy N, Hideg É, Csepregi K
Department of Plant Biology, University of Pécs, Pécs, Hungary.
Biol Futur. 2023 Sep;74(3):327-335. doi: 10.1007/s42977-023-00182-3. Epub 2023 Sep 27.
The special metabolites of bell pepper (Capsicum annuum L.) leaves can protect the plant under possibly damaging circumstances, such as high light, UV, unfavorable temperatures, or other environmental effects. In this study, we examined the cold stress tolerance of three different Hungarian pepper varieties (Darina, Édesalma, Rekord), focusing on the antioxidant and photosynthetic responses. The plants were developed in growth chambers under optimal temperature conditions (day/night 25 °C/20 °C) until the leaves on the fourth node became fully developed, then half of the plants received a cold treatment (day/night 15 °C/10 °C). Via a detailed pigment analysis, the PS II chlorophyll fluorescence responses, gas exchange parameters and total antioxidant capacities, leaf acclimation to low temperatures has been characterized. Our results display some of the developing physiological and antioxidant properties, which are among the main factors in monitoring the damaging effects of cold temperatures. Nevertheless, despite their differences, the tested pepper varieties did not show different cold responses.
甜椒(辣椒属)叶片的特殊代谢产物可以在可能造成损害的环境条件下保护植株,例如强光、紫外线、不利温度或其他环境影响。在本研究中,我们检测了三种不同匈牙利辣椒品种(达丽娜、埃德萨尔玛、雷科德)的耐寒性,重点关注抗氧化和光合反应。植株在生长室中于最佳温度条件(白天/夜晚25℃/20℃)下培育,直到第四节点的叶片完全展开,然后将一半植株进行冷处理(白天/夜晚15℃/10℃)。通过详细的色素分析、PS II叶绿素荧光反应、气体交换参数和总抗氧化能力,已对叶片适应低温的情况进行了表征。我们的结果展示了一些正在形成的生理和抗氧化特性,这些特性是监测低温损害效应的主要因素。然而,尽管存在差异,所测试的辣椒品种并未表现出不同的冷反应。