Multilevel approach to plant–nanomaterial relationships: from cells to living ecosystems

HC Oliveira, AB Seabra, S Kondak… - Journal of …, 2023 - academic.oup.com
Due to their unique properties, nanomaterials behave peculiarly in biosystems. Regarding
plants, the interactions of nanomaterials can be interpreted on a spatial scale: from local …

Unlocking the potential of nano-enabled precision agriculture for efficient and sustainable farming

V Goyal, D Rani, Ritika, S Mehrotra, C Deng, Y Wang - Plants, 2023 - mdpi.com
Nanotechnology has attracted remarkable attention due to its unique features and potential
uses in multiple domains. Nanotechnology is a novel strategy to boost production from …

Effect of iron nanoparticles and conventional sources of Fe on growth, physiology and nutrient accumulation in wheat plants grown on normal and salt-affected soils

M Zia-ur-Rehman, MFB Mfarrej, M Usman… - Journal of Hazardous …, 2023 - Elsevier
Salt stress is becoming a serious problem for the global environment and agricultural sector.
Different sources of iron (Fe) can provide an eco-friendly solution to remediate salt-affected …

Application of Fe2O3 nanoparticles improves the growth, antioxidant power, flavonoid content, and essential oil yield and composition of Dracocephalum kotschyi …

P Khanizadeh, H Mumivand, MR Morshedloo… - Frontiers in Plant …, 2024 - frontiersin.org
Dracocephalum kotschyi Boiss., an endemic and endangered medicinal and aromatic plant
in Iran, showcases distinct botanical characteristics and therapeutic promise. According to …

[HTML][HTML] Biofortification revisited: addressing the role of beneficial soil microbes for enhancing trace elements concentration in staple crops

P Mishra, J Mishra, NK Arora - Microbiological Research, 2023 - Elsevier
Trace element deficiency is a pervasive issue contributing to malnutrition on a global scale.
The primary cause of this hidden hunger is related to low dietary intake of essential trace …

Combating iron and zinc malnutrition through mineral biofortification in maize through plant growth promoting Bacillus and Paenibacillus species

M Ahmad, A Hussain, A Dar, M Luqman… - Frontiers in Plant …, 2023 - frontiersin.org
Introduction The burgeoning population of the world is causing food insecurity not only by
less food availability but also by the malnutrition of essential nutrients and vitamins …

Impact of magnetite nanoparticles coated with aspartic acid on the growth, antioxidant enzymes activity and chlorophyll content of maize

M Răcuciu, A Tecucianu, S Oancea - Antioxidants, 2022 - mdpi.com
In recent decades, magnetite nanoparticles received greater attention in nanobiotechnology
due to wide applications. This study presents the influence of the oxidative stress caused by …

Zinc solubilizing bacteria synergize the effect of zinc sulfate on growth, yield and grain zinc content of rice (Oryza sativa)

M Shakeel, FY Hafeez, IR Malik, A Rauf, F Jan… - Cereal Research …, 2024 - Springer
Zinc solubilizing bacteria inhabiting root endosphere possesses great potential to enhance
plant yield by solubilizing the nutrients. The potential of Zn solubilizing bacteria Bacillus sp …

[HTML][HTML] Green Synthesis of Zinc and Iron Nanoparticles Using Psidium guajava Leaf Extract Stimulates Cowpea Growth, Yield, and Tolerance to Saline Water …

MH Sheta, AHM Abd El-Wahed, MA Elshaer… - Horticulturae, 2024 - mdpi.com
Plants use a variety of physiological, biochemical, and molecular mechanisms to mitigate
salt stress impacts. Many techniques, including the application of nanoparticles (NPs), are …

Microbial Biofortification of Iron in Solanum tuberosum L. through Siderophore-Producing Rhizobacteria along with L-Tryptophan and Iron Sulphate Supply

Z Mushtaq, M Liaquat, S Jehan, MT Akram, MT Jaffar… - Potato Research, 2024 - Springer
Food security necessitates not only increasing crop yields but also enhancing food quality
while simultaneously mitigating the detrimental effects of agricultural practices on natural …