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模拟流通温度变化对香菇贮藏期间风味物质的影响

Effects of Simulated Circulation Temperature Changes on the Flavor of Lentinula edodes during Storage

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【作者】 刘娅妮王飞宇李然高虹范秀芝殷朝敏程世伦于巍史德芳

【Author】 LIU Yani;WANG Feiyu;LI Ran;GAO Hong;FAN Xiuzhi;YIN Chaomin;CHENG Shilun;YU Wei;SHI Defang;Institute of Agro-product Processing and Nuclear Agricultural Technology, Hubei Academy of Agricultural Sciences,Agro-product Processing Research Sub-center of Hubei Innovation Center of Agriculture Science and Technology,National Research and Development Branch Center for Edible Fungi Processing, Ministry of Agriculture and Rural Affairs,Key Laboratory of Cold Chain Logistics Technology for Agro-product, Ministry of Agriculture and Rural Affairs;School of Life and Health Sciences, Hubei University of Technology;College of Food Science and Technology, Huazhong Agricultural University;Hubei Xianggu Mushroom Industrial Technology Research Institute;Zhongxiang Xingli Foods Co.Ltd.;

【通讯作者】 史德芳;

【机构】 湖北省农业科学院农产品加工与核农技术研究所,湖北省农业科技创新中心农产品加工研究分中心,农业农村部国家食用菌加工技术研发分中心,农业农村部农产品冷链物流技术重点实验室湖北工业大学生命科学与健康工程学院华中农业大学食品科学技术学院湖北省香菇产业技术研究院有限公司钟祥兴利食品股份有限公司

【摘要】 为探究常温、冷链、断链3种流通方式对新鲜香菇贮运前后风味物质的影响,本研究模拟3种不同温度条件下香菇的贮运过程,采用电子鼻结合气相色谱-离子迁移谱(gas?chromatography-ion?mobility?spectrometry,GC-IMS)联用仪、电子舌、高效液相色谱仪和氨基酸分析仪分析香菇挥发性成分及呈味物质的变化趋势。结果表明,电子鼻可以实现对不同模拟流通温度条件下香菇香气轮廓的快速区分;GC-IMS共检测出55?种挥发性化合物,包括醇类16种、醛类10种、萜烯类8?种、酮类6种、酯类4种和其他化合物11种;电子舌分析结果表明,贮运初期(CK组)、模拟常温运输(NTL组)、模拟冷链运输(CCL组)和模拟断链运输(BCL组)样品在酸味、苦味、涩味、鲜味、丰富性和咸味上存在差异,其中,CCL组具有酸味适中、鲜味突出的优点;NTL组、CCL组和BCL组的游离氨基酸总量分别为90.82、81.83、84.31?mg/g;5’-核苷酸总含量分别为122.99、107.42、118.27?μg/g。综上,CCL组挥发性风味成分和呈味物质与CK组最为相似,说明恒定的低温条件能保证香菇贮运期间较好的风味品质;BCL组由于贮运期间经历了出库、入库和运输等环节的温度波动,在进入货架期前风味物质受到负面影响,其风味品质略低于CCL组。因此,在香菇的采后流通过程中应采用冷链运输方式,避免在贮运环节出现温度波动导致其风味品质劣变。本研究结果可为优化香菇冷链流通系统提供参考。

【Abstract】 To?investigate?the?effects?of?three?circulation?methods?including?normal?temperature,?cold?chain,?and?broken?cold?chain?on?the?flavor?substances?of?fresh?Lentinula edodes?before?and?after?storage?and?transportation,?the?changing?trends?of?volatile?flavor?compounds?and?taste?components?of?L. edodes?during?simulated?transportation?under?the?three?temperature?conditions?were?analyzed?using?an?electronic?nose,?gas?chromatography-ion?mobility?spectrometry(GC-IMS),?an?electronic?tongue,?high?performance?liquid?chromatography(HPLC),?and?an?automatic?amino?acid?analyzer.?The?results?showed?that?electronic?nose?was?able?to?quickly?distinguish?between?the?aroma?characteristics?of?L. edodes?under?different?simulated?temperature?conditions.?In?total,?55?volatile?compounds?were?detected?by?GC-IMS,?including?16?alcohols,?10?aldehydes,?8?terpenes,?6?ketones,?4?esters,?and?11?other?compounds.?The?electronic?tongue?revealed?differences?in?the?sourness,?bitterness,?astringency,?umami,?richness,?and?saltiness?among?early?storage?and?transportation(control),?simulated?normal?temperature?logistics(NTL),?simulated?cold?chain?logistics(CCL),?and?simulated?broken?chain?logistics(BCL),?with?the?CCL?group?being?characterized?by?moderate?sourness?and?prominent?umami.?In?the?NTL,?CCL,?and?BCL?groups,?the?total?amounts?of?free?umami?amino?acids?were?90.82,?81.83,?and?84.31?mg/g,?respectively,?and?the?5’-nucleotide?contents?were?122.99,?107.42,?and?118.27?μg/g,?respectively.?Among?them,?the?volatile?flavor?compounds?and?taste?components?in?the?CCL?group?were?most?similar?to?those?in?the?control?group,?indicating?that?consistent?low-temperature?conditions?are?helpful?for?preserving?the?flavor?quality?of?L. edodes?during?storage?and?transportation.?In?contrast,?the?BCL?group,?which?experienced?temperature?fluctuations?during?both?storage?and?transportation,?exhibited?slightly?lower?flavor?quality?than?did?the?CCL?group?due?to?the?negative?impact?on?the?flavor?compounds?before?entering?the?shelf?life.?In?conclusion,?in?the?post-harvest?circulation?process?of?L. edodes,?cold-chain?transportation?is?needed?to?minimize?quality?deterioration?caused?by?temperature?fluctuations?during?storage?and?transportation.?The?results?provide?valuable?insights?for?improving?the?cold?chain?distribution?system?for?L. edodes.

【基金】 湖北省重点研发技术项目(2022BBA0024;2023BBB138);湖北省食用菌产业技术体系专项资金资助项目(2023HBSTX4-09);湖北省农业科学院领军人才计划项目(2023-2028)
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