Tiwari Supriya
Department of Botany, Institute of Science, Banaras Hindu University, Varanasi, UP, 221005, India.
Environ Sci Pollut Res Int. 2017 Jun;24(16):14019-14039. doi: 10.1007/s11356-017-8859-y. Epub 2017 Apr 13.
Present-day climate change scenario has intensified the problem of continuously increasing ground-level ozone (O), which is responsible for causing deleterious effects on growth and development of plants. Studies involving use of ethylenediurea (EDU), a chemical with antiozonant properties, have given some promising results in evaluating O injury in plants. The use of EDU is especially advantageous in developing countries which face a more severe problem of ground-level O, and technical O-induced yield loss assessment techniques like open-top chambers cannot be used. Recent studies have detected a hormetic response of EDU on plants; i.e. treatment with higher EDU concentrations may or may not show any adverse effect on plants depending upon the experimental conditions. Although the mode of action of EDU is still debated, it is confirmed that EDU remains confined in the apoplastic regions. Certain studies indicate that EDU significantly affects the electron transport chain and has positive impact on the antioxidant defence machinery of the plants. However, the mechanism of protecting the yield of plants without significantly affecting photosynthesis is still questionable. This review discusses in details the probable mode of action of EDU on the basis of available data along with the impact of EDU on physiological, biochemical, growth and yield response of plants under O stress. Data regarding the effect of EDU on plant 'omics' is highly insufficient and can form an important aspect of future EDU research.
当前的气候变化情景加剧了地面臭氧(O)持续增加的问题,地面臭氧会对植物的生长发育造成有害影响。涉及使用具有抗臭氧特性的化学物质乙二脲(EDU)的研究,在评估植物的臭氧伤害方面取得了一些有前景的结果。在面临更严重地面臭氧问题且无法使用如开顶式气室等技术臭氧诱导产量损失评估技术的发展中国家,EDU的使用尤其具有优势。最近的研究发现EDU对植物有 hormetic 反应;即根据实验条件,用较高浓度的EDU处理可能对植物有不利影响,也可能没有。尽管EDU的作用模式仍存在争议,但已证实EDU仍局限于质外体区域。某些研究表明,EDU会显著影响电子传递链,并对植物的抗氧化防御机制有积极影响。然而,在不显著影响光合作用的情况下保护植物产量的机制仍然存疑。本综述根据现有数据详细讨论了EDU可能的作用模式,以及EDU在臭氧胁迫下对植物生理、生化、生长和产量反应的影响。关于EDU对植物“组学”影响的数据非常不足,这可能构成未来EDU研究的一个重要方面。