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Enoki, Winter Mushroom · 2020 · Journal Article

High relevance

Nanocomposite packaging regulates extracellular ATP and programed cell death in edible mushroom (Flammulina velutipes).

Flammulina velutipes

Immune support
SpeciesEnoki, Winter Mushroom
JournalFood chemistry
Year2020

Key points

  • Our previous study indicated that nanocomposite packaging material (Nano-PM) containing nano-Ag, nano-TiO 2, nano-SiO 2 and nanoattapulgite alleviated postharvest senescence of Flammulina velutipes by regulating respiration and energy metabolism
  • In this study, extracellular ATP (eATP) and programmed cell death (PCD) were employed as critical factors to further investigate the senescence mechanism of postharvest F. velutipes
  • Results demonstrated that Nano-PM delayed apyrase activity decrease and stimulated critical oxidative phosphorylation-related gene expression to inhibit eATP content increase, which is a crucial signaling molecule related to delaying senescence
  • The regulation of eATP resulted in alleviating PCD including chromosomal concentration, DNA fragmentation, Ca 2+ influx, high caspase-1 activity and cytochrome c content and leading to high cell viability
  • Overall, Nano-PM alleviated PCD and postharvest senescence of F. velutipes by regulating extracellular ATP

Metadata-grounded summary

Citation abstract

Our previous study indicated that nanocomposite packaging material (Nano-PM) containing nano-Ag, nano-TiO 2, nano-SiO 2 and nanoattapulgite alleviated postharvest senescence of Flammulina velutipes by regulating respiration and energy metabolism. In this study, extracellular ATP (eATP) and programmed cell death (PCD) were employed as critical factors to further investigate the senescence mechanism of postharvest F. velutipes. Results demonstrated that Nano-PM delayed apyrase activity decrease and stimulated critical oxidative phosphorylation-related gene expression to inhibit eATP content increase, which is a crucial signaling molecule related to delaying senescence. The regulation of eATP resulted in alleviating PCD including chromosomal concentration, DNA fragmentation, Ca 2+ influx, high caspase-1 activity and cytochrome c content and leading to high cell viability. Overall, Nano-PM alleviated PCD and postharvest senescence of F. velutipes by regulating extracellular ATP.

Citation

Shi C, Wu Y, Fang D, Ma N, Mariga AM, Hu Q, et al. (2020). Nanocomposite packaging regulates extracellular ATP and programed cell death in edible mushroom (Flammulina velutipes). Food chemistry https://doi.org/10.1016/j.foodchem.2019.125702 PMID: 31685370

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