农业
生物量(生态学)
纳米载体
非生物胁迫
可持续农业
生物技术
水培
非生物成分
纳米颗粒
全球人口
纳米技术
人口
化学
环境科学
生物
农学
材料科学
生态学
基因
生物化学
社会学
人口学
作者
Lijuan Zhao,Lu Li,Aodi Wang,Huiling Zhang,Min Huang,Honghong Wu,Baoshan Xing,Zhenyu Wang,Rong Ji
标识
DOI:10.1021/acs.jafc.9b06615
摘要
Sustainable agriculture is a key component of the effort to meet the increased food demand of a rapidly increasing global population. Nano-biotechnology is a promising tool for sustainable agriculture. However, rather than acting as nanocarriers, some nanoparticles (NPs) with unique physiochemical properties inherently enhance plant growth and stress tolerance. This biological role of nanoparticles depends on their physiochemical properties, application method (foliar delivery, hydroponics, soil), and the applied concentration. Here we review the effects of the different types, properties, and concentrations of nanoparticles on plant growth and on various abiotic (salinity, drought, heat, high light, and heavy metals) and biotic (pathogens and herbivores) stresses. The ability of nanoparticles to stimulate plant growth by positive effects on seed germination, root or shoot growth, and biomass or grain yield is also considered. The information presented herein will allow researchers within and outside the nano-biotechnology field to better select the appropriate nanoparticles as starting materials in agricultural applications. Ultimately, a shift from testing/utilizing existing nanoparticles to designing specific nanoparticles based on agriculture needs will facilitate the use of nanotechnology in sustainable agriculture.
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