Department of Plant Physiology, Poznań University of Life Sciences, Wołyńska 35, 60-637 Poznań, Poland.
Department of Plant Physiology, Vinh University, Le Duan 182, Vinh City, Vietnam.
Molecules. 2018 Sep 11;23(9):2320. doi: 10.3390/molecules23092320.
The present review discusses the impact of heavy metals on the growth of plants at different concentrations, paying particular attention to the hormesis effect. Within the past decade, study of the hormesis phenomenon has generated considerable interest because it was considered not only in the framework of plant growth stimulation but also as an adaptive response of plants to a low level of stress which in turn can play an important role in their responses to other stress factors. In this review, we focused on the defence mechanisms of plants as a response to different metal ion doses and during the crosstalk between metal ions and biotic stressors such as insects and pathogenic fungi. Issues relating to metal ion acquisition and ion homeostasis that may be essential for the survival of plants, pathogens and herbivores competing in the same environment were highlighted. Besides, the influence of heavy metals on insects, especially aphids and pathogenic fungi, was shown. Our intention was also to shed light on the relationship between heavy metals deposition in the environment and ecological communities formed under a strong selective pressure.
本文综述了不同浓度重金属对植物生长的影响,特别关注了毒物兴奋效应。在过去的十年中,毒物兴奋效应的研究引起了相当大的兴趣,因为它不仅被认为是植物生长刺激的框架内,而且作为植物对低水平胁迫的适应反应,这反过来又可以在它们对其他胁迫因素的反应中发挥重要作用。在本文中,我们重点研究了植物的防御机制,作为对不同金属离子剂量的反应,以及在金属离子和生物胁迫因子(如昆虫和病原真菌)之间的串扰过程中。突出了与金属离子获取和离子内稳态相关的问题,这些问题可能对在同一环境中竞争的植物、病原体和草食动物的生存至关重要。此外,还展示了重金属对昆虫(特别是蚜虫和病原真菌)的影响。我们的目的还在于阐明环境中重金属沉积与在强烈选择压力下形成的生态群落之间的关系。