The role of nanoparticles in plant biochemical, physiological, and molecular responses under drought stress: A review DOI Creative Commons
Adnan Rasheed, Huijie Li,

Majid M. Tahir

et al.

Frontiers in Plant Science, Journal Year: 2022, Volume and Issue: 13

Published: Nov. 24, 2022

Drought stress (DS) is a serious challenge for sustaining global crop production and food security. Nanoparticles (NPs) have emerged as an excellent tool to enhance under current rapid climate change increasing drought intensity. DS negatively affects plant growth, physiological metabolic processes, disturbs cellular membranes, nutrient water uptake, photosynthetic apparatus, antioxidant activities. The application of NPs protects the maintains relationship, enhances leading appreciable increase in growth DS. protect apparatus improve efficiency, accumulation osmolytes, hormones, phenolics, activities, gene expression, thus providing better resistance plants against In this review, we discuss role different metal-based mitigate plants. We also highlighted various research gaps that should be filled future studies. This detailed review will source information researchers adopt nanotechnology eco-friendly technique tolerance.

Language: Английский

Opportunities and challenges for nanotechnology in the agri-tech revolution DOI
Gregory V. Lowry, Astrid Avellan, Leanne M. Gilbertson

et al.

Nature Nanotechnology, Journal Year: 2019, Volume and Issue: 14(6), P. 517 - 522

Published: June 1, 2019

Language: Английский

Citations

815

Nano-enabled strategies to enhance crop nutrition and protection DOI
Mélanie Kah, Nathalie Tufenkji, Jason C. White

et al.

Nature Nanotechnology, Journal Year: 2019, Volume and Issue: 14(6), P. 532 - 540

Published: June 1, 2019

Language: Английский

Citations

801

Nanoparticle-Based Sustainable Agriculture and Food Science: Recent Advances and Future Outlook DOI Creative Commons
Deepti Mittal, Gurjeet Kaur, Parul Singh

et al.

Frontiers in Nanotechnology, Journal Year: 2020, Volume and Issue: 2

Published: Dec. 4, 2020

In the current scenario, it is an urgent requirement to satisfy nutritional demands of rapidly growing global population. Using conventional farming, nearly one third crops get damaged, mainly due pest infestation, microbial attacks, natural disasters, poor soil quality, and lesser nutrient availability. More innovative technologies are immediately required overcome these issues. this regard, nanotechnology has contributed agrotechnological revolution that imminent potential reform resilient agricultural system while promising food security. Therefore, nanoparticles becoming a new-age material transform modern practices. The variety nanoparticle-based formulations, including nano-sized pesticides, herbicides, fungicides, fertilizers, sensors, have been widely investigated for plant health management improvement. In-depth understanding nanomaterial interactions opens new avenues toward improving crop practices through increased properties such as disease resistance, yield, utilization. review, we highlight critical points address nanotechnology-based research could benefit productivity security in future.

Language: Английский

Citations

587

Nano-Biotechnology in Agriculture: Use of Nanomaterials to Promote Plant Growth and Stress Tolerance DOI
Lijuan Zhao, Lu Li, Aodi Wang

et al.

Journal of Agricultural and Food Chemistry, Journal Year: 2020, Volume and Issue: 68(7), P. 1935 - 1947

Published: Jan. 31, 2020

Sustainable agriculture is a key component of the effort to meet increased food demand rapidly increasing global population. Nano-biotechnology 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 depends on their properties, application method (foliar delivery, hydroponics, soil), applied concentration. Here we review effects different types, concentrations various abiotic (salinity, drought, heat, high light, heavy metals) biotic (pathogens herbivores) stresses. The ability stimulate by positive seed germination, root or shoot growth, biomass grain yield also considered. information presented herein will allow researchers within outside nano-biotechnology field better select appropriate starting materials in agricultural applications. Ultimately, shift from testing/utilizing existing designing specific based needs facilitate use nanotechnology

Language: Английский

Citations

556

Recent advances in nano-enabled fertilizers and pesticides: a critical review of mechanisms of action DOI

Ishaq O. Adisa,

Venkata L. Reddy Pullagurala,

Jose R. Peralta‐Videa

et al.

Environmental Science Nano, Journal Year: 2019, Volume and Issue: 6(7), P. 2002 - 2030

Published: Jan. 1, 2019

The use of nanomaterials in agriculture as nanofertilizers, nanopesticides, or nano-enabled sensors to increase crop yield is gaining increasing interest.

Language: Английский

Citations

498

Exploring phosphorus fertilizers and fertilization strategies for improved human and environmental health DOI Creative Commons
P.S. Bindraban, Christian O. Dimkpa, Renu Pandey

et al.

Biology and Fertility of Soils, Journal Year: 2020, Volume and Issue: 56(3), P. 299 - 317

Published: Jan. 8, 2020

Abstract Mineral phosphorus (P) fertilizers support high crop yields and contribute to feeding the teeming global population. However, complex edaphic processes cause P be immobilized in soil, hampering its timely sufficient availability for uptake by plants. The resultant low use efficiency of current water-soluble creates significant environmental human health problems. Current practices increase have been inadequate curtail these We advocate understanding plant physiological processes, such as requirement, storage excess phytate, mechanisms, identify novel ways designing delivering plants improved uptake. note importance implications contrasting role micronutrients zinc iron stimulating under soil content, while inhibiting fertilization; this could provide an avenue managing different fertilization regimes. argue that improvement nutritional value crops, especially cereals, through reduced phytic acid increased contents should among most important drivers toward development innovative fertilizer products technologies. In paper, we present various pathways argument. Retuning application strategies will fighting hunger micronutrient deficiencies humans. Moreover, direct losses a result absorption

Language: Английский

Citations

422

Zinc oxide nanoparticles alter the wheat physiological response and reduce the cadmium uptake by plants DOI
Afzal Hussain, Shafaqat Ali, Muhammad Rizwan

et al.

Environmental Pollution, Journal Year: 2018, Volume and Issue: 242, P. 1518 - 1526

Published: Aug. 17, 2018

Language: Английский

Citations

402

Development of fertilizers for enhanced nitrogen use efficiency – Trends and perspectives DOI
Christian O. Dimkpa,

Job Fugice,

Upendra Singh

et al.

The Science of The Total Environment, Journal Year: 2020, Volume and Issue: 731, P. 139113 - 139113

Published: May 5, 2020

Language: Английский

Citations

329

Alleviation of cadmium accumulation in maize (Zea mays L.) by foliar spray of zinc oxide nanoparticles and biochar to contaminated soil DOI
Muhammad Rizwan, Shafaqat Ali, Muhammad Zia‐ur‐Rehman

et al.

Environmental Pollution, Journal Year: 2019, Volume and Issue: 248, P. 358 - 367

Published: Feb. 19, 2019

Language: Английский

Citations

314

Zinc oxide nanoparticles alleviate drought-induced alterations in sorghum performance, nutrient acquisition, and grain fortification DOI Creative Commons
Christian O. Dimkpa, Upendra Singh, P.S. Bindraban

et al.

The Science of The Total Environment, Journal Year: 2019, Volume and Issue: 688, P. 926 - 934

Published: June 25, 2019

Language: Английский

Citations

293