In vitro and in vivo release of aroma compounds from yellow-fleshed kiwifruit

被引:43
作者
Friel, Ellen N.
Wang, Mindy
Taylor, Andrew J.
MacRae, Elspeth A.
机构
[1] Mt Albert Res Ctr, HortRes, Auckland, New Zealand
[2] Univ Nottingham, Div Food Sci, Samworth Flavour Lab, Loughborough LE12 5RD, Leics, England
关键词
kiwifruit; Actinidia chinensis; APCI-MS-GC-MS; breath analysis; dimethyl sulfide;
D O I
10.1021/jf063733x
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Comparisons were made between the aroma volatiles of the yellow-fleshed kiwifruit, "Hort16A", at two different stages of eating ripeness: firm and soft. The firm fruit contained a small number of aroma compounds that the soft fruit did not contain. In general, however, the largest difference between the two firmness categories was in the levels of esters, with the soft fruit containing higher concentrations and a larger number of esters than the firm fruit. In vitro analysis directly after maceration using atmospheric pressure chemical ionization mass spectrometry (APCI-MS) showed the relative importance of the most intense aromas between fruit at the two different firmness stages and was used to compare the release rates of aromas. A comparison of the aroma concentrations from gas chromatography mass spectrometry (GC-MS) and APCI-MS headspace analyses showed that the APCI-MS headspace showed less bias toward enzymatically generated lipid degradation compounds. A GC-sniffing study showed that many of the most intense compounds, acetaldehyde, hexanal, ethyl butanoate, and (E)-2-hexenal but not ethanol, showed odor activity in macerated fruit. In addition, dimethyl sulfide (DMS), a volatile present at very low levels in the fruit, also appeared to be an important contributor to the odor. In vivo analyses also showed much higher levels of aroma compounds in the soft fruit compared to the firm fruit, with evidence of persistence of some compounds, including DMS. There were a number of similarities between the breath profiles of the two panelists, which confirmed the importance of DMS in "Hort16A" aroma.
引用
收藏
页码:6664 / 6673
页数:10
相关论文
共 31 条
[1]   Sensory perception is related to the rate of change of volatile concentration in-nose during eating of model gels [J].
Baek, I ;
Linforth, RST ;
Blake, A ;
Taylor, AJ .
CHEMICAL SENSES, 1999, 24 (02) :155-160
[2]   Influence of gelatin, starch, pectin and artificial saliva on the release of 11 flavour compounds from model gel systems [J].
Boland, AB ;
Buhr, K ;
Giannouli, P ;
van Ruth, SM .
FOOD CHEMISTRY, 2004, 86 (03) :401-411
[3]   Effect of postharvest treatment on flavour volatiles of tomatoes [J].
Boukobza, F ;
Taylor, AJ .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 2002, 25 (03) :321-331
[4]   Measurement of lipid oxidation-derived volatiles in fresh tomatoes [J].
Boukobza, F ;
Dunphy, PJ ;
Taylor, AJ .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 2001, 23 (02) :117-131
[5]   Altering the fat content affects flavor release in a model yogurt system [J].
Brauss, MS ;
Linforth, RST ;
Cayeux, I ;
Harvey, B ;
Taylor, AJ .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1999, 47 (05) :2055-2059
[6]   Effect of variety, time of eating, and fruit-to-fruit variation on volatile release during eating of tomato fruits (Lycopersicon esculentum) [J].
Brauss, MS ;
Linforth, RST ;
Taylor, AJ .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1998, 46 (06) :2287-2292
[7]   Influence of human salivary enzymes on odorant concentration changes occurring in vivo. 1. Esters and thiols [J].
Buettner, A .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2002, 50 (11) :3283-3289
[8]   Analysis of volatile flavour compounds by Proton Transfer Reaction-Mass Spectrometry: fragmentation patterns and discrimination between isobaric and isomeric compounds [J].
Buhr, K ;
van Ruth, S ;
Delahunty, C .
INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 2002, 221 (01) :1-7
[9]  
BUTTERY RG, 1988, J AM OIL CHEM SOC, V65, P482
[10]   FRESH TOMATO AROMA VOLATILES - A QUANTITATIVE STUDY [J].
BUTTERY, RG ;
TERANISHI, R ;
LING, LC .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1987, 35 (04) :540-544