Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey

The high moisture content of stingless bee honey (SBH) is a worrisome problem and heat treatment is used to reduce the moisture and maintain the honey’s quality by destroying the microorganisms that affect the physico-chemical properties of honey during storage. Low heat treatment (45 °C) for 0, 30,...

Full description

Saved in:
Bibliographic Details
Main Authors: Lee, Chuen Ng, Shamsul Bahri Abd Razak, Rudiyanto, Say, Peng Tan, Fauziah Tufail Ahmad
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2023
Online Access:http://journalarticle.ukm.my/22452/1/JM%203.pdf
http://journalarticle.ukm.my/22452/
https://jms.mabjournal.com/index.php/mab/index
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Kebangsaan Malaysia
Language: English
id my-ukm.journal.22452
record_format eprints
spelling my-ukm.journal.224522023-11-14T00:50:11Z http://journalarticle.ukm.my/22452/ Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey Lee, Chuen Ng Shamsul Bahri Abd Razak, Rudiyanto, Say, Peng Tan Fauziah Tufail Ahmad, The high moisture content of stingless bee honey (SBH) is a worrisome problem and heat treatment is used to reduce the moisture and maintain the honey’s quality by destroying the microorganisms that affect the physico-chemical properties of honey during storage. Low heat treatment (45 °C) for 0, 30, 60, 90, and 120 min were conducted to determine the total microbial activity using fluorescein diacetate hydrolysis (FDA). The total microbial population that subsequently affected the physico-chemical properties was also analyzed. The total microbial activities of SBH were significantly reduced after thermal treatment at 45 °C for 90 min (63.76 μg FDA/g/h) and 120 min (62.43 μg FDA/g/h) compared with control (67.127 μg FDA/g/h). Also, the moisture content, electrical conductivity (EC), pH, and free acidity of the low heat-treated SBH at all durations were significantly reduced compared with the control. The total microbial activity was detected as significantly correlated to bacterial and fungal populations, moisture content, EC, pH, and free acidity of low heat-treated SBH. Low heat treatment at 45 °C for 120 min was efficient to reduce the total microbial activity, total acidity, and increasing the pH of SBH. Prolonging the heating duration is suggested to further reduce the water content, total microbial activity and further increase the shelf life of SBH. Penerbit Universiti Kebangsaan Malaysia 2023 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/22452/1/JM%203.pdf Lee, Chuen Ng and Shamsul Bahri Abd Razak, and Rudiyanto, and Say, Peng Tan and Fauziah Tufail Ahmad, (2023) Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey. Malaysian Applied Biology, 52 (1). pp. 43-52. ISSN 0126-8643 https://jms.mabjournal.com/index.php/mab/index
institution Universiti Kebangsaan Malaysia
building Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description The high moisture content of stingless bee honey (SBH) is a worrisome problem and heat treatment is used to reduce the moisture and maintain the honey’s quality by destroying the microorganisms that affect the physico-chemical properties of honey during storage. Low heat treatment (45 °C) for 0, 30, 60, 90, and 120 min were conducted to determine the total microbial activity using fluorescein diacetate hydrolysis (FDA). The total microbial population that subsequently affected the physico-chemical properties was also analyzed. The total microbial activities of SBH were significantly reduced after thermal treatment at 45 °C for 90 min (63.76 μg FDA/g/h) and 120 min (62.43 μg FDA/g/h) compared with control (67.127 μg FDA/g/h). Also, the moisture content, electrical conductivity (EC), pH, and free acidity of the low heat-treated SBH at all durations were significantly reduced compared with the control. The total microbial activity was detected as significantly correlated to bacterial and fungal populations, moisture content, EC, pH, and free acidity of low heat-treated SBH. Low heat treatment at 45 °C for 120 min was efficient to reduce the total microbial activity, total acidity, and increasing the pH of SBH. Prolonging the heating duration is suggested to further reduce the water content, total microbial activity and further increase the shelf life of SBH.
format Article
author Lee, Chuen Ng
Shamsul Bahri Abd Razak,
Rudiyanto,
Say, Peng Tan
Fauziah Tufail Ahmad,
spellingShingle Lee, Chuen Ng
Shamsul Bahri Abd Razak,
Rudiyanto,
Say, Peng Tan
Fauziah Tufail Ahmad,
Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey
author_facet Lee, Chuen Ng
Shamsul Bahri Abd Razak,
Rudiyanto,
Say, Peng Tan
Fauziah Tufail Ahmad,
author_sort Lee, Chuen Ng
title Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey
title_short Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey
title_full Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey
title_fullStr Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey
title_full_unstemmed Low heating effects on the total microbial activity and physico-chemical properties of stingless bee (Heterotrigona itama) honey
title_sort low heating effects on the total microbial activity and physico-chemical properties of stingless bee (heterotrigona itama) honey
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2023
url http://journalarticle.ukm.my/22452/1/JM%203.pdf
http://journalarticle.ukm.my/22452/
https://jms.mabjournal.com/index.php/mab/index
_version_ 1783877702849134592