Get in touch
Questions about growing, workshops, the cooperative or partnerships? Send us a message and we will reply by email.
Prefer email? Write to erasmus@evec.org.gr
Microgreens have achieved importance recently due to their high nutritive value, easiness of cultivation and year round availability. However, being very t
Avinash Sharma, Mainu Hazarika, Punabati Heisnam, Himanshu Pandey, V.S. Devadas, Devendra Singh, Mannu Wangsu, Bhagya D. Kartha
Journal of Agriculture and Food Research · 2023 · https://doi.org/10.1016/j.jafr.2023.100835
Microgreens have achieved importance recently due to their high nutritive value, easiness of cultivation and year round availability. However, being very tender and having high moisture content, their shelf life is too short. Studies show that the physical quality, chemical quality and shelf life deterioration in post harvest of micro greens can be improved with effective storage conditions, packaging matters, nanoparticle application, physiological treatments and molecular approaches. Low ambient or storage temperature and effective storage system improve and sustain the shelf life, and quality and restrict microbial activity in micro greens. Packaging with bioplastic clamshell, cardboard clamshell, bioplastic pouch, kraft paper box, or classified polymer upgrades the shelf life and reduce antimicrobial activity under controlled temperature. The interventions with nanoparticles such as nano packaging, nano coatings and nano bubble modify the shelf life and quality and forbids microbial outbreak, solvent discharge and unstable gaseous exchange. The real time signal processing nano sensor technology can detect pesticides, pathogens, toxic materials, contaminants, and microbes in microgreens. The emission of light emitting diodes with stable ratio of wavelength extends shelf life. High carbon dioxide and low oxygen pressure at 5 °C temperature exhibits control respiration rate and prolonged shelf life. The standard packaging materials and post harvest technology may be recognized for extending shelf life and quality in harvested microgreens. The integration of molecular tools can be used to screen genome, replication, transcription, translation, post translation and gene regulation for shelf life improvement and desired traits.
| Licence | CC-BY-NC-ND-4.0 |
|---|---|
| May we host this PDF? | Yes |
| May we publish a plain-language summary? | No. This licence forbids derivative works. We may report and cite its findings, but not republish a rewritten version. |
| Commercial use permitted? | No — non-commercial use only |
| Share-alike required? | No |
Avinash Sharma; Mainu Hazarika; Punabati Heisnam; Himanshu Pandey; V.S. Devadas; Devendra Singh; Mannu Wangsu; Bhagya D. Kartha (2023). Influence of storage conditions, packaging, post-harvest technology, nanotechnology and molecular approaches on shelf life of microgreens. Journal of Agriculture and Food Research. https://doi.org/10.1016/j.jafr.2023.100835 Licensed under Creative Commons Attribution NC ND 4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/). Hosted by EVEC Athens (microgreens.org.gr). No changes were made to this article. Provided as-is, without warranties. EVEC Athens is not affiliated with, and this copy is not endorsed by, the authors or the publisher.
This is a copy of the published article, hosted by EVEC Athens for free educational use under its open licence. The permanent scientific reference is the DOI above. We have not altered the file in any way. If you are an author or rights holder and want this copy removed, please use our notice and takedown procedure. We acknowledge every request within five working days, and act within ten.
Co-funded by the European Union.
This portal presents the microgreens methodology; the organisation behind it is EVEC Athens — the European Voluntary and Educational Center (evec.org.gr). Views and opinions expressed are those of the author(s) only and do not necessarily reflect those of the European Union or the European Commission. Neither the European Union nor the granting authority can be held responsible for them.
Open licence. Except where stated otherwise, the educational materials on this portal are licensed under CC BY 4.0 — free to use, adapt and share, including commercially, with credit. See the licence terms.
Accessibility. We aim for WCAG 2.1 AA and publish what does and does not yet meet it — see the accessibility statement. If anything here blocks you, tell us and we will send the material in a format that works for you.