Back to Search Start Over

Effects of temperature, pH, and relative humidity on the growth of Penicillium paneum OM1 isolated from pears and its patulin production.

Authors :
Zhao, Wencai
Hong, Sung-Yong
Kim, Ju-Yeon
Om, Ae-Son
Source :
Fungal Biology. Jun2024, Vol. 128 Issue 4, p1885-1897. 13p.
Publication Year :
2024

Abstract

Patulin is a mycotoxin produced by several species of Penicillium sp., Aspergillus sp., and Byssochlamys sp. on apples and pears. Most studies have been focused on Penicillium expansum , a common postharvest pathogen, but little is known about the characteristics of Penicillium paneum. In the present study, we evaluated the effects of temperature, pH, and relative humidity (RH) on the growth of P. paneum OM1, which was isolated from pears, and its patulin production. The fungal strain showed the highest growth rate at 25 °C and pH 4.5 on pear puree agar medium (PPAM) under 97 % RH, while it produced the highest amount of patulin at 20 °C and pH 4.5 on PPAM under 97 % RH. Moreover, RT-qPCR analysis of relative expression levels of 5 patulin biosynthetic genes (patA , patE , patK , patL, and patN) in P. paneum OM1 exhibited that the expression of the 4 patulin biosynthetic genes except patL was up-regulated in YES medium (patulin conducive), while it was not in PDB medium (patulin non-conducive). Our data demonstrated that the 3 major environmental parameters had significant impact on the growth of P. paneum OM1 and its patulin production. These results could be exploited to prevent patulin contamination by P. paneum OM1 during pear storage • The highest growth of P. paneum OM1 at 25 °C and pH 4.5 under 97 % relative humidity. • The highest patulin production by the fungus at 20 °C and pH 4.5 under 97 % relative humidity. • The expression of patA , patE , patK , and patN was up-regulated in YES medium. • The expression of patA , patE , patK , and patN was not up-regulated in PDB medium. • The expression of patL remained constantly in both YES and PDB media. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
18786146
Volume :
128
Issue :
4
Database :
Academic Search Index
Journal :
Fungal Biology
Publication Type :
Academic Journal
Accession number :
177877695
Full Text :
https://doi.org/10.1016/j.funbio.2024.05.005