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September 30, 2025Journal of Food Quality and Hazards Control0 citationsOpen Access

Identification of Volatile Compounds and Yeast Species Derived from Salak Pondoh for Bread Aroma Enhancement

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NKNur KusmiyatiJKJoni KusnadiSSSiska Septiana

Key Points

  • Gas Chromatography–Mass Spectrometry revealed 254 volatile compounds in bread from YIS-3, while YIS-4 had 231 compounds.
  • Benzeneethanamine was dominant in YIS-3 bread, and o-nitrostyrene was predominant in YIS-4 bread.
  • Molecular identification indicated that isolate YIS-3 showed 95.88% similarity to Saccharomyces cerevisiae strain XZFM13-1.
  • No significant aroma preference difference was observed between bread samples, suggesting both are acceptable.

Abstract

Background: Yeast is a widely utilized microorganism in the fermentation industry, particularly as a leavening agent for bread. The bread-making process yields a number of metabolites, particularly volatile compounds, which influence the end product quality. This study sought to identify volatile compounds and yeast species involved in the leavening process of bread derived from salak pondoh fruit (Salacca edulis Reinw.) to enhance bread aroma. Methods: This study was conducted in between January and September 2024. Yeast isolates were selected based on their dough-leavening ability and were designated as YIS-3 and YIS-4. A descriptive experimental design was applied to evaluate the fermentation performance of both strains in bread making. Two yeast isolates were used in this study, and each isolate was used to produce bread. Volatile compounds in the bread were analyzed using Gas Chromatography–Mass Spectrometry, and sensory evaluation was conducted through organoleptic testing by 30 semi-trained panelists aged 20-35 years. Molecular identification was performed by sequencing the Internal Transcribed Spacer region. The Kruskal–Wallis test was used to identify significant differences among sample groups. When significant differences were observed (p0.05). Molecular identification showed that isolate YIS-3 shared 95.88% sequence similarity with Saccharomyces cerevisiae strain XZFM13-1, while YIS-4 shared 95.25% similarity with S. cerevisiae strain HBUAS61689. Conclusion: Both species, identified as S. cerevisiae, contributed distinctive and sensorially acceptable aroma profiles in bread fermentation.

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Cite This Study

Kusmiyati et al. (2025) studied this question.

synapsesocial.com/papers/68dc12cc8a7d58c25ebb0d6bhttps://doi.org/10.18502/jfqhc.12.3.19786
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Also Consider

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  4. 4THE IMPACT OF USING DIFFERENT YEAST SPECIES IN BREAD PRODUCTION ON CONSUMER PREFERENCES: A COMPARATIVE ANALYSIS OF TASTE2024 · 2 citations
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