Role of Nanomaterials in Improving Crop Productivity

Lina M. Alnaddaf, Jameel M. Al-Khayri, S. Mohan Jain

Tutkimustuotos: Artikkeli kirjassa/raportissa/konferenssijulkaisussaKirjan luku tai artikkeliTieteellinenvertaisarvioitu

Abstrakti

Nanotechnology is currently used in various fields due to the unique properties of nanoparticles (NPs). These properties are important in agriculture for their effect on plant growth and development (stimulating or inhibiting). As well as, obtain the best productivity in quantity and quality. The effect of NPs varies according to plant species, NPs and their different properties (size, shape, concen-tration, surface and other characterization). NPs accumulate in different plant parts which are reflected as well positively or negatively, quantitatively and qualitatively in plant growth and development. The nutritional value of treated plants is enhanced as a result of increasing the nutrient concentration which is reflected positively in human and animal nutrition. Similarly, the NPs positively promote the growth and development of plants, leading to an increase in the yield and productivity of plants. Whereas, this accumulation may have phytotoxicity effects on the plant and the accumulation of free radicals and abnormal cell division decreases plant produc-tion. Therefore, more research is needed to investigate the effectiveness of different particles on various plant species.

Alkuperäiskielienglanti
OtsikkoNanomaterial Interactions with Plant Cellular Mechanisms and Macromolecules and Agricultural Implications
ToimittajatJameel M. Al-Khayri, Lina M. Alnaddaf, S. Mohan Jain
Sivumäärä17
JulkaisupaikkaCham
KustantajaSpringer
Julkaisupäivä2023
Sivut341-357
ISBN (painettu)978-3-031-20877-5, 978-3-031-20880-5
ISBN (elektroninen)978-3-031-20878-2
DOI - pysyväislinkit
TilaJulkaistu - 2023
OKM-julkaisutyyppiA3 Kirjan tai muun kokoomateoksen osa

Lisätietoja

Publisher Copyright:
© The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerland AG 2023.

Tieteenalat

  • 414 Maatalouden bioteknologia

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