Rajput Vishnu D, Minkina Tatiana, Kumari Arpna, Singh Vipin Kumar, Verma Krishan K, Mandzhieva Saglara, Sushkova Svetlana, Srivastava Sudhakar, Keswani Chetan
Academy of Biology and Biotechnology, Southern Federal University, 344090 Rostov-on-Don, Russia.
Department of Botanical and Environmental Sciences, Guru Nanak Dev University, Amritsar 143005, India.
Plants (Basel). 2021 Jun 15;10(6):1221. doi: 10.3390/plants10061221.
Abiotic stress in plants is a crucial issue worldwide, especially heavy-metal contaminants, salinity, and drought. These stresses may raise a lot of issues such as the generation of reactive oxygen species, membrane damage, loss of photosynthetic efficiency, etc. that could alter crop growth and developments by affecting biochemical, physiological, and molecular processes, causing a significant loss in productivity. To overcome the impact of these abiotic stressors, many strategies could be considered to support plant growth including the use of nanoparticles (NPs). However, the majority of studies have focused on understanding the toxicity of NPs on aquatic flora and fauna, and relatively less attention has been paid to the topic of the beneficial role of NPs in plants stress response, growth, and development. More scientific attention is required to understand the behavior of NPs on crops under these stress conditions. Therefore, the present work aims to comprehensively review the beneficial roles of NPs in plants under different abiotic stresses, especially heavy metals, salinity, and drought. This review provides deep insights about mechanisms of abiotic stress alleviation in plants under NP application.
植物中的非生物胁迫是一个全球性的关键问题,尤其是重金属污染物、盐度和干旱。这些胁迫可能引发许多问题,如活性氧的产生、膜损伤、光合效率损失等,这些问题可能通过影响生化、生理和分子过程来改变作物的生长和发育,导致生产力大幅下降。为了克服这些非生物胁迫因素的影响,可以考虑许多支持植物生长的策略,包括使用纳米颗粒(NPs)。然而,大多数研究都集中在了解纳米颗粒对水生动植物的毒性上,而相对较少关注纳米颗粒在植物胁迫反应、生长和发育中的有益作用这一话题。需要更多的科学关注来了解纳米颗粒在这些胁迫条件下对作物的影响。因此,本研究旨在全面综述纳米颗粒在不同非生物胁迫下,特别是重金属、盐度和干旱胁迫下对植物的有益作用。本综述深入探讨了纳米颗粒施用下植物缓解非生物胁迫的机制。