Soil salt concentrations above the optimum threshold for plant progress can threaten world meals safety by compromising agricultural productiveness and crop high quality. An evaluation printed in Physiologia Plantarum has examined the potential of nanomaterials—which have emerged over the previous decade as a promising software to mitigate such “salinity stress”—to handle this problem.
Nanomaterials, that are tiny man-made or natural supplies, can modulate a plant’s response to salinity stress by means of varied mechanisms, for instance by affecting the expression of genes associated to salt tolerance or by enhancing physiological processes similar to antioxidant actions.
When investigators assessed 495 experiments from 70 publications associated to how totally different nanomaterials work together with vegetation underneath salinity stress, they discovered that nanomaterials improve plant efficiency and mitigate salinity stress when utilized at decrease dosages. At greater doses, nevertheless, nanomaterials are poisonous to vegetation and should even worsen salinity stress.
Additionally, plant responses to nanomaterials range throughout plant species, plant households, and nanomaterial varieties.
“Our analysis revealed that plants respond more positively to nanomaterials under salt stress compared with non-stressed conditions, indicating the ameliorative role of nanomaterials,” stated corresponding writer Damiano R. Kwaslema, MSc, of Sokoine College of Agriculture, in Tanzania. “These findings pave the way for considering nanomaterials as a future option for managing salinity stress.”
Extra data:
Meta-analysis of nanomaterials and vegetation interplay underneath salinity stress, Physiologia Plantarum (2024). DOI: 10.1111/ppl.14445
Quotation:
Nanomaterials could improve plant tolerance to excessive soil salt ranges (2024, August 7)
retrieved 7 August 2024
from https://phys.org/information/2024-08-nanomaterials-tolerance-high-soil-salt.html
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