4.7 Article

Plant nanobionics: Fortifying food security via engineered plant productivity

期刊

ENVIRONMENTAL RESEARCH
卷 229, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2023.115934

关键词

Crop productivity; Nanomaterials; Nanobiotechnology; Plant performance; Smart sensors

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The increasing human population and demand for high-quality food sources have raised concerns over hunger and malnutrition in developing countries. Researchers are focusing on developing improved crop varieties with higher productivity, and the introduction of nanomaterials through plant nanobionics has shown potential in enhancing crop yield. This comprehensive review explores the effects of nanomaterials on crop yield, discusses various nanobionic approaches, and highlights the need for investigating potential environmental risks associated with nanotechnology in agriculture.
The world's human population is increasing exponentially, increasing the demand for high-quality food sources. As a result, there is a major global concern over hunger and malnutrition in developing countries with limited food resources. To address this issue, researchers worldwide must focus on developing improved crop varieties with greater productivity to overcome hunger. However, conventional crop breeding methods require extensive periods to develop new varieties with desirable traits. To tackle this challenge, an innovative approach termed plant nanobionics introduces nanomaterials (NMs) into cell organelles to enhance or modify plant function and thus crop productivity and yield. A comprehensive review of nanomaterials affect crop yield is needed to guide nanotechnology research. This article critically reviews nanotechnology applications for engineering plant productivity, seed germination, crop growth, enhancing photosynthesis, and improving crop yield and quality, and discusses nanobionic approaches such as smart drug delivery systems and plant nanobiosensors. Moreover, the review describes NM classification and synthesis and human health-related and plant toxicity hazards. Our findings suggest that nanotechnology application in agricultural production could significantly increase crop yields to alleviate global hunger pressures. However, the environmental risks associated with NMs should be investigated thoroughly before their widespread adoption in agriculture.

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