scholarly journals Quality Improvement of Miso and Soy Sauce by Lactic Acid Bacteria: Inhibition of Spoilage Bacteria and Browning

2000 ◽  
Vol 11 (2) ◽  
pp. 66-69
Author(s):  
Takeo KATO
2021 ◽  
Vol 51 (2) ◽  
Author(s):  
Fernanda Cristina Kandalski Bortolotto ◽  
Maria Helena da Rosa Farfan ◽  
Nathalia Cristina Kleinke Jede ◽  
Gabriela Maia Danielski ◽  
Renata Ernlund Freitas de Macedo

ABSTRACT: Sausages are highly susceptible to microbial spoilage. Lactic acid bacteria (LAB) is the main group of spoilage bacteria in vacuum packed cooked sausages. To control microbial growth natural antimicrobials have been used as food preservatives. The aim of this study was to identify strains of lactic acid bacteria isolated from spoiled commercial Calabresa sausages and use them in an in vitro challenge with the natural antimicrobials, nisin (NI) and ε-poly-L-lysine (ε-PL). Mass spectrometry identification of LAB isolated from sausages using MALDI-TOF revealed a predominance of L. plantarum in the LAB population. RAPD-PCR of L. plantarum strains showed four different genetic profiles. Minimal inhibitory concentration (MIC) and minimal bactericidal concentration (MBC) of NI and ε-PL, alone and in combination, against a pool of different profiles L. plantarum were determined. MIC of NI and ε-PL were 0.468 mg/ L and 75 mg/ L; respectively, whereas MBC of NI and ε-PL were 12.48 mg/L and 150 mg/L, respectively. The combined effect of NI and ε-PL was determined using concentrations at 1/4 and 1/8 of individual MICs. Synergistic effect was confirmed at both concentrations showing a fractional inhibitory concentration index of 0.5 and 0.2, respectively. The combination of NI and ε-PL at a small concentration of 0.05 mg/L and 9.375 mg/L, respectively, showed inhibitory effect towards spoilage L. plantarum Results show the potential of the combined use of NI and ε-PL to control sausage spoilage-associated with lactobacilli.


2005 ◽  
Vol 71 (2) ◽  
pp. 422-430 ◽  
Author(s):  
Motoharu UCHIDA ◽  
Jie OU ◽  
Bi-Wen CHEN ◽  
Chun-Hong YUAN ◽  
Xur-Hua ZHANG ◽  
...  

2004 ◽  
Vol 67 (12) ◽  
pp. 2703-2711 ◽  
Author(s):  
KONSTANTINOS P. KOUTSOUMANIS ◽  
LAURA V. ASHTON ◽  
IFIGENIA GEORNARAS ◽  
KEITH E. BELK ◽  
JOHN A. SCANGA ◽  
...  

The survival and growth of Listeria monocytogenes and spoilage microflora during storage of fresh beef subjected to different decontamination treatments was studied. Fresh beef inoculated with a five-strain mixture of L. monocytogenes (5.18 log CFU/cm2) was left untreated (control) or was immersed (30 s) in hot water (HW; 75°C), 2% lactic acid (LA; 55°C), hot water followed by lactic acid (HW-LA), or lactic acid followed by hot water (LA-HW) and then stored aerobically at 4, 10, and 25°C for 25, 17, and 5 days, respectively. Initial populations of L. monocytogenes were reduced by 0.82 (HW), 1.43 (LA), 2.73 (HW-LA), and 2.68 (LA-HW) log CFU/cm2. During storage, the pathogen grew at higher rates in HW than in control samples at all storage temperatures. Acid decontamination treatments (LA, HW-LA, and LA-HW) resulted in a weaker inhibition of L. monocytogenes (P < 0.05) at 25°C than at 4 and 10°C. In general, the order of effectiveness of treatments was HW-LA > LA > LA-HW > HW > control at all storage temperatures tested. In untreated samples, the spoilage microflora was dominated by pseudomonads, while lactic acid bacteria, Enterobacteriaceae, and yeasts remained at lower concentrations during storage. Brochothrix thermosphacta was detected periodically in only a limited number of samples. Although decontamination with HW did not affect the above spoilage microbial profile, acid treatments shifted the predominant microflora in the direction of yeasts and gram-positive bacteria (lactic acid bacteria). Overall, the results of the present study indicate that decontamination with LA and combinations of LA and HW could limit growth of L. monocytogenes and inhibit pseudomonads, which are the main spoilage bacteria of fresh beef stored under aerobic conditions. However, to optimize the efficacy of such treatments, they must be applied in the appropriate sequence and followed by effective temperature control.


2019 ◽  
Author(s):  
Fatiyah Md Kilau ◽  
Nur Illida Mohamad ◽  
Nazamid Saari ◽  
Norrakiah Abdullah Sani

2011 ◽  
Vol 126 (2) ◽  
pp. 590-594 ◽  
Author(s):  
Bao Yang ◽  
K. Nagendra Prasad ◽  
Haihui Xie ◽  
Sen Lin ◽  
Yueming Jiang

2017 ◽  
Vol 82 (12) ◽  
pp. 2960-2967 ◽  
Author(s):  
Yulong Zhang ◽  
Ping Hu ◽  
Lijiao Lou ◽  
Jianlong Zhan ◽  
Min Fan ◽  
...  

2012 ◽  
Vol 8 (3) ◽  
pp. 91
Author(s):  
Yandres Nelson Hege ◽  
I Ketut Suwetja ◽  
Frans G Ijong

Jeroan ikan sebagai limbah dari pengelolaan ikan cakalang panggang di Kupang, Nusa Tenggara Timur dapat dimanfaatkan untuk membuat silase dengan menambahkan bahan nira lontar (Borassus flabellifer) yang telah mengalami fermentasi. Fermentasi dilakukan selama 0–15 hari dan pengujian terhadap total asam, pH, serta kadar protein kasar dilakukan secara teratur. Hasil yang diperoleh menunjukkan bahwa penambahan nira lontar yang telah difermentasi ke dalam jeroan ikan cakalang pada semua konsentrasi secara nyata memberi­kan pengaruh terhadap pertumbuhan bakteri asam laktat dan menekan pertumbuhan bakteri pembusuk, hal ini erat kaitannya dengan kandungan asam (total asam) nira lontar yang berkontribusi terhadap penurunan pH bahan fermentasi. Produk silase jeroan ikan cakalang terbaik, ditinjau dari aspek kadar protein kasar, adalah pada perlakuan konsentrasi nira lontar 10% dengan lama fermentasi 24 jam yang memiliki kandungan protein sebesar 15,46% dari berat basah bahan fermentasi (silase). Kata kunci: Silase, jeroan ikan cakalang, nira lontar, fermentasi   The innards from fresh tuna fish grill in Kupang, Nusa Tenggara Timur can be used to make silage with addition of fermented sap of lontar palm (Borassus flabellifer). Fermentation was carried out for 0–15 days and regularly tested for total acid, pH, as well as the crude protein content. The results showed that the addition of palm sap that has been fermented into the innards of tuna at all concentrations significantly impact the growth of lactic acid bacteria and suppress the growth of spoilage bacteria, it is closely related to the acid content (total acid) that contribute to the palm sap decrease in pH of fermentation ingredients. Tuna offal silage products best viewed from the aspect of the content of crude protein in the treatment of palm sap concentration of 10% with a 24-hour fermentation time which has a protein content of 15.46% by weight of the wet ingredients fermentation (silage). Keywords: Silage, tuna offal, lontar palm sap, fermentation


2009 ◽  
Vol 26 (6) ◽  
pp. 638-644 ◽  
Author(s):  
S. Matamoros ◽  
M.F. Pilet ◽  
F. Gigout ◽  
H. Prévost ◽  
F. Leroi

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