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纳米颗粒:非生物胁迫下的植物救星

Nanoparticles: The Plant Saviour under Abiotic Stresses.

作者信息

Khalid Muhammad Fasih, Iqbal Khan Rashid, Jawaid Muhammad Zaid, Shafqat Waqar, Hussain Sajjad, Ahmed Talaat, Rizwan Muhammad, Ercisli Sezai, Pop Oana Lelia, Alina Marc Romina

机构信息

Environmental Science Centre, Qatar University, Doha 2713, Qatar.

Southwest Florida Research and Education Center, Horticultural Sciences Department, Institute of Food and Agricultural Science, University of Florida, Immokalee, FL 34142, USA.

出版信息

Nanomaterials (Basel). 2022 Nov 6;12(21):3915. doi: 10.3390/nano12213915.

Abstract

Climate change significantly affects plant growth and productivity by causing different biotic and abiotic stresses to plants. Among the different abiotic stresses, at the top of the list are salinity, drought, temperature extremes, heavy metals and nutrient imbalances, which contribute to large yield losses of crops in various parts of the world, thereby leading to food insecurity issues. In the quest to improve plants' abiotic stress tolerance, many promising techniques are being investigated. These include the use of nanoparticles, which have been shown to have a positive effect on plant performance under stress conditions. Nanoparticles can be used to deliver nutrients to plants, overcome plant diseases and pathogens, and sense and monitor trace elements that are present in soil by absorbing their signals. A better understanding of the mechanisms of nanoparticles that assist plants to cope with abiotic stresses will help towards the development of more long-term strategies against these stresses. However, the intensity of the challenge also warrants more immediate approaches to mitigate these stresses and enhance crop production in the short term. Therefore, this review provides an update of the responses (physiological, biochemical and molecular) of plants affected by nanoparticles under abiotic stress, and potentially effective strategies to enhance production. Taking into consideration all aspects, this review is intended to help researchers from different fields, such as plant science and nanoscience, to better understand possible innovative approaches to deal with abiotic stresses in agriculture.

摘要

气候变化通过对植物造成不同的生物和非生物胁迫,显著影响植物生长和生产力。在不同的非生物胁迫中,排在首位的是盐度、干旱、极端温度、重金属和养分失衡,这些因素导致世界各地产量大幅损失,进而引发粮食安全问题。在寻求提高植物非生物胁迫耐受性的过程中,许多有前景的技术正在被研究。这些技术包括使用纳米颗粒,纳米颗粒已被证明在胁迫条件下对植物性能有积极影响。纳米颗粒可用于向植物输送养分、克服植物病害和病原体,以及通过吸收土壤中微量元素的信号来感知和监测这些元素。更好地理解纳米颗粒帮助植物应对非生物胁迫的机制,将有助于制定更长期的应对这些胁迫的策略。然而,挑战的严峻程度也需要更直接的方法来缓解这些胁迫,并在短期内提高作物产量。因此,本综述提供了受纳米颗粒影响的植物在非生物胁迫下的响应(生理、生化和分子)的最新情况,以及提高产量的潜在有效策略。综合考虑各方面因素,本综述旨在帮助植物科学和纳米科学等不同领域的研究人员更好地理解应对农业非生物胁迫的可能创新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9211/9658632/d5967e04efa9/nanomaterials-12-03915-g001.jpg

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