Graduated controlled atmosphere: a novel approach to increase "Duke" blueberry storage life

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dc.contributor.author Falagán, Natalia
dc.contributor.author Miclo, Tiana
dc.contributor.author Terry, Leon A.
dc.date.accessioned 2020-03-26T12:02:16Z
dc.date.available 2020-03-26T12:02:16Z
dc.date.issued 2020-03-17
dc.identifier.citation Falagan N, Miclo T, Terry L. (2020) Graduated controlled atmosphere: a novel approach to increase "Duke" blueberry storage life. Frontiers in Plant Science, Volume 11, March 2020, Article number 221 en_UK
dc.identifier.issn 1664-462X
dc.identifier.uri https://doi.org/10.3389/fpls.2020.00221
dc.identifier.uri http://dspace.lib.cranfield.ac.uk/handle/1826/15329
dc.description.abstract Blueberries (Vaccinium corymbosum L.) are highly valued for their health-promoting potential, yet they are extremely perishable. Controlled atmosphere (CA) strategies reduce blueberry respiratory metabolism, slowing down senescence. However, the sudden change of atmosphere could elicit a physical abiotic stress in the fruit, negatively affecting quality. We propose an innovative approach based on controlled graduation to slowly reach optimum gas storage conditions as an alternative to standard CA. For two consecutive seasons, “Duke” blueberries were subjected to four different storage conditions: control (air); standard CA (sudden exposure to 5 kPa O2 and 10 kPa CO2 across the experiment); GCA3 and GCA7 (gradually reaching 5 kPa O2 and 10 kPa CO2 in 3 and 7 days, respectively). Fruit were stored for 28 days at 0 ± 0.5°C. Real-time respirometry provided an in-depth insight to the respiratory response of blueberries to their gas environment. Blueberries subjected to the graduated application of CA (GCA) treatments had a lower steady-state respiration rate compared to control and standard CA fruit. This indicated a reduction in metabolic activity that positively impacted quality and storage life extension. For example, GCA3 and GCA7 blueberries had a 25% longer storage life when compared to control, based on reduced decay incidence. In addition, GCA fruit were 27% firmer than control and CA fruit after 28 days of cold storage. GCA3 had a positive effect on maintaining individual sugars concentrations throughout the experiment, and both GCA treatments maintained ascorbic acid content close to initial values compared to a decrease of 44% in the control fruit at the end of the experiment. This work provides a paradigm shift in how CA could be applied and a better understanding of blueberry physiology and postharvest behavior. en_UK
dc.language.iso en en_UK
dc.publisher Frontiers en_UK
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/ *
dc.subject Vaccinium corymbosum L en_UK
dc.subject controlled atmosphere en_UK
dc.subject cold storage en_UK
dc.subject postharvest en_UK
dc.title Graduated controlled atmosphere: a novel approach to increase "Duke" blueberry storage life en_UK
dc.type Article en_UK
dc.identifier.cris 26179694
dc.date.freetoread 2020-03-26


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