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中国精品科技期刊2020 食品青年科学家峰会

不同包装方式对冷鲜鸡肉微生物菌群多样性的影响

麦栩滔 王文卓 郑宇航 刘芳 孙芝兰 徐为民

麦栩滔,王文卓,郑宇航,等. 不同包装方式对冷鲜鸡肉微生物菌群多样性的影响[J]. 新宝登录入口(中国)有限公司,2023,44(13):367−374. doi:  10.13386/j.issn1002-0306.2022090004
引用本文: 麦栩滔,王文卓,郑宇航,等. 不同包装方式对冷鲜鸡肉微生物菌群多样性的影响[J]. 新宝登录入口(中国)有限公司,2023,44(13):367−374. doi:  10.13386/j.issn1002-0306.2022090004
MAI Xutao, WANG Wenzhuo, ZHENG Yuhang, et al. Effects of Different Packaging Methods on the Microbial Diversity in Chilled Chicken[J]. Science and Technology of Food Industry, 2023, 44(13): 367−374. (in Chinese with English abstract). doi:  10.13386/j.issn1002-0306.2022090004
Citation: MAI Xutao, WANG Wenzhuo, ZHENG Yuhang, et al. Effects of Different Packaging Methods on the Microbial Diversity in Chilled Chicken[J]. Science and Technology of Food Industry, 2023, 44(13): 367−374. (in Chinese with English abstract). doi:  10.13386/j.issn1002-0306.2022090004

不同包装方式对冷鲜鸡肉微生物菌群多样性的影响

doi: 10.13386/j.issn1002-0306.2022090004
基金项目: 江苏省农业自主创新资金【CX(22)3063】;国家自然科学基金面上项目(31972140);国家肉鸡产业技术体系专项资金(CARS-41)。
详细信息
    作者简介:

    麦栩滔(1997−),男,硕士研究生,研究方向:畜禽产品质量安全,E-mail:963941262@qq.com

    通讯作者:

    孙芝兰(1984−),女,博士,研究员,研究方向:畜禽产品质量安全,E-mail:zhilan408@163.com

    徐为民(1969−),男,博士,研究员,研究方向:畜禽产品加工与质量控制,E-mail:weiminxu2002@yahoo.com.cn

  • 中图分类号: TS251.55

Effects of Different Packaging Methods on the Microbial Diversity in Chilled Chicken

  • 摘要: 为研究不同包装方式对冷鲜鸡肉贮藏期间菌群组成的影响,本文利用Illumina MiSeq高通量测序分析了不同包装方式下的微生物多样性。结果表明,在4 ℃冷藏期间, MAP,VP和N2包装能显著降低微生物数量和挥发性盐基氮含量。高通量测序表明冷鲜鸡肉贮藏初期菌种丰富度高,贮藏后期优势菌属逐渐演变为假单胞菌属、环丝菌属、不动杆菌属和希瓦氏菌属,说明它们能耐受较低的温度。与PP组相比,MAP组假单胞菌属和不动杆菌属的丰度分别降低14.8%和9.2%,而N2组不动杆菌属和希瓦氏菌属的丰度分别降低9.6%和7.4%。VP组不动杆菌属、环丝菌属丰度下降8%和5.6%。不同包装方式对冷鲜鸡肉中的菌群影响较大,三种包装均能抑制不动杆菌属的生长,气调包装对假单胞菌属抑制效果较好,而充氮包装和真空包装对希瓦氏菌属和环丝菌属有较好的抑制效果,本研究也为未来冷鲜鸡肉所采用的包装方式提供理论基础。
  • 图  1  不同包装条件下4 ℃贮藏冷鲜鸡TVC(A)及TVB-N(B)的变化

    Figure  1.  Changes in TVC (A) and TVB-N (B) of chilled chicken stored at 4 ℃ under different packaging conditions

    注:MAP:气调包装样品;N2:充氮包装样品;VP:真空包装样品;PP:托盘包装样品 ;不同大写字母表示同一包装方式下不同贮藏天数的显著性差异(P<0.05);不同小写字母表示同一贮藏天数下不同包装方式间显著性差异(P<0.05)。

    图  2  维恩图

    Figure  2.  Venn diagram

    注:CS:第0 d的对照样品;MAP:第7 d气调包装样品;N2:第7 d充氮包装样品;VP:第 7 d真空包装样品;PP:第7 d托盘包装样品;表1图3~图5同。

    图  3  不同包装条件下 4 ℃下保存的冷鲜鸡科(A)和属(B)水平的细菌相对丰度

    Figure  3.  Relative abundance of bacteria at the level of family (A) and genus (B) of chilled chicken stored at 4 ℃ under different packaging condition

    图  4  冷鲜鸡贮藏期间微生物群落变化的热图

    Figure  4.  Heat map of microbial community changes during storage of chilled chicken

    注:选择本研究获得的属水平上相对丰度在前20位的细菌。

    图  5  冷藏期间冷鲜鸡的微生物群属水平的PCA图

    Figure  5.  PCA plots of microbiota genus levels of chilled chickens during cold storage

    表  1  alpha多样性部分指数统计表

    Table  1.   Statistical table of selected indices of alpha diversity

    Sample IDShannon指数Simpson指数覆盖率
    CS5.74±0.33a0.963±0.005a1.00
    MAP3.24±0.15b0.807±0.026b1.00
    N22.74±0.21bc0.753±0.041c1.00
    VP3.06±0.19bc0.800±0.024bc1.00
    PP3.10±0.08c0.807±0.012bc0.996±0.0047
    注:同列不同小写字母表示差异显著P<0.05。
    下载: 导出CSV
  • [1] 黄柳娟, 冯博, 刘海燕, 等. 冷鲜鸡肉表面及内部细菌菌群的多样性分析[J]. 上海农业学报,2021,37(1):104−109. [HUANG L J, FENG B, LIU H Y, et al. Diversity analysis of surface and internal bacterial flora of chilled chicken meat[J]. Shanghai Journal of Agriculture,2021,37(1):104−109. doi:  10.15955/j.issn1000-3924.2021.01.18

    HUANG L J, FENG B, LIU H Y, et al. Diversity analysis of surface and internal bacterial flora of chilled chicken meat[J]. Shanghai Journal of Agriculture, 2021, 37(1): 104-109. doi:  10.15955/j.issn1000-3924.2021.01.18
    [2] 梁慧, 于立梅, 陈秀兰, 等. 鸡胸肉冷藏过程中腐败菌分析及其品质变化研究[J]. 食品与发酵工业,2016,42(10):184−188. [LIANG H, YU L M, CHEN X L, et al. Analysis of spoilage bacteria and quality changes in chicken breast during refrigeration[J]. Food and Fermentation Industry,2016,42(10):184−188. doi:  10.13995/j.cnki.11-1802/ts.201610030

    LIANG H, YU L M, CHEN X L, et al. Analysis of spoilage bacteria and quality changes in chicken breast during refrigeration[J]. Food and Fermentation Industry, 2016, 42(10): 184-8. doi:  10.13995/j.cnki.11-1802/ts.201610030
    [3] FERNÁNDEZ-PAN I, CARRIÓN-GRANDA X, MATÉ J I. Antimicrobial efficiency of edible coatings on the preservation of chicken breast fillets[J]. Food Control,2014,36(1):69−75. doi:  10.1016/j.foodcont.2013.07.032
    [4] ROUGER A, MORICEAU N, PRÉVOST H, et al. Diversity of bacterial communities in French chicken cuts stored under modified atmosphere packaging[J]. Food Microbiology,2018,70:7−16. doi:  10.1016/j.fm.2017.08.013
    [5] HUANG J, GUO Y, HOU Q, et al. Dynamic changes of the bacterial communities in roast chicken stored under normal and modified atmosphere packaging[J]. Journal of Food Science,2020,85(4):1231−1239. doi:  10.1111/1750-3841.15038
    [6] 刘均, 沈佳敏, 沈建良, 等. 不同包装方式对货架期冷鲜鸡微生物菌相变化的影响[J]. 浙江农业学报,2020,32(7):1274−1280. [LIU J, SHEN J M, SHEN J L, et al. Effect of different packaging methods on microbial phase changes of chilled chicken during shelf life[J]. Zhejiang Journal of Agriculture,2020,32(7):1274−1280. doi:  10.3969/j.issn.1004-1524.2020.07.16

    LIU J, SHEN J M, SHEN J L, et al. Effect of different packaging methods on microbial phase changes of chilled chicken during shelf life[J]. Zhejiang Journal of Agriculture, 2020, 32(7): 1274-1280. doi:  10.3969/j.issn.1004-1524.2020.07.16
    [7] 高磊, 谢晶, 叶藻, 等. 不同包装方式对冷鲜鸡的保鲜效果[J]. 食品与发酵工业,2016,42(3):217−223. [GAO L, XIE J, YE Z, et al. Effect of different packaging methods on the freshness of chilled chicken[J]. Food and Fermentation Industry,2016,42(3):217−223. doi:  10.13995/j.cnki.11-1802/ts.201603039

    GAO L, XIE J, YE Z, et al. Effect of different packaging methods on the freshness of chilled chicken [J]. Food and Fermentation Industry, 2016, 42(3): 217-223. doi:  10.13995/j.cnki.11-1802/ts.201603039
    [8] DOULGERAKI A I, ERCOLINI D, VILLANI F, et al. Spoilage microbiota associated to the storage of raw meat in different conditions[J]. International Journal of Food Microbiology,2012,157(2):130−141. doi:  10.1016/j.ijfoodmicro.2012.05.020
    [9] 赖宏刚, 蒋云升, 张元嵩, 等. 真空包装冷鲜鸡中腐败菌微生物的分离鉴定[J]. 江苏农业科学,2018,46(17):198−201. [LAI H G, JIANG Y S, ZHANG Y S, et al. Isolation and identification of spoilage bacteria microorganisms in vacuum-packed chilled chicken[J]. Jiangsu Agricultural Science,2018,46(17):198−201. doi:  10.15889/j.issn.1002-1302.2018.17.053

    LAI H G, JIANG Y S, ZHANG Y S, et al. Isolation and identification of spoilage bacteria microorganisms in vacuum-packed chilled chicken [J]. Jiangsu Agricultural Science, 2018, 46(17): 198-201. doi:  10.15889/j.issn.1002-1302.2018.17.053
    [10] LIANG R, YU X, WANG R, et al. Bacterial diversity and spoilage-related microbiota associated with freshly prepared chicken products under aerobic conditions at 4 ℃[J]. Journal of Food Protection,2012,75(6):1057−1062. doi:  10.4315/0362-028X.JFP-11-439
    [11] YU C, SÉAMUS F, SINÉAD P, et al. A review on the applications of next generation sequencing technologies as applied to food-related microbiome studies[J]. Frontiers in Microbiology,2017,8:1829. doi:  10.3389/fmicb.2017.01829
    [12] ERCOLINI D. High-throughput sequencing and metagenomics: Moving forward in the culture-independent analysis of food microbial ecology[J]. Applied and Environmental Microbiology,2013,79(10):3148−3155. doi:  10.1128/AEM.00256-13
    [13] ZHANG T, CHEN L, DING H, et al. The potential effect of microbiota in predicting the freshness of chilled chicken[J]. British Poultry Science,2022,63(3):360−367. doi:  10.1080/00071668.2021.2003753
    [14] YANG L, SHANG Y, YING S, et al. Changes in the quality of superchilled rabbit meat stored at different temperatures[J]. Meat Science,2016,117:173−181. doi:  10.1016/j.meatsci.2016.02.017
    [15] YANG L, HUANG J, CHENG Y, et al. Changes in bacterial communities and the volatilome of braised chicken with different packaging stored at 4 ℃[J]. Food Research International,2022,155:111056. doi:  10.1016/j.foodres.2022.111056
    [16] LI X, LI C, YE H, et al. Changes in the microbial communities in vacuum-packaged smoked bacon during storage[J]. Food Microbiology,2019,77:26−37. doi:  10.1016/j.fm.2018.08.007
    [17] MUELA E, SAÑUDO C, CAMPO M M, et al. Effect of freezing method and frozen storage duration on instrumental quality of lamb throughout display[J]. Meat Science,2010,84(4):662−669. doi:  10.1016/j.meatsci.2009.10.028
    [18] HUANG L, ZHAO J, CHEN Q, et al. Nondestructive measurement of total volatile basic nitrogen (TVB-N) in pork meat by integrating near infrared spectroscopy, computer vision and electronic nose techniques[J]. Food Chemistry,2014,145:228−236. doi:  10.1016/j.foodchem.2013.06.073
    [19] JIA S, HUANG Z, LEI Y, et al. Application of Illumina-MiSeq high throughput sequencing and culture-dependent techniques for the identification of microbiota of silver carp (Hypophthalmichthys molitrix) treated by tea polyphenols[J]. Food Microbiology,2018,76:52−61. doi:  10.1016/j.fm.2018.04.010
    [20] CHAILLOU S, CHAULOT-TALMON A, CAEKEBEKE H, et al. Origin and ecological selection of core and food-specific bacterial communities associated with meat and seafood spoilage[J]. The ISME Journal,2015,9(5):1105−1118. doi:  10.1038/ismej.2014.202
    [21] ERCOLINI D, CASABURI A, NASI A, et al. Different molecular types of Pseudomonas fragi have the same overall behaviour as meat spoilers[J]. International Journal of Food Microbiology,2010,142(1-2):120−131. doi:  10.1016/j.ijfoodmicro.2010.06.012
    [22] ELLIS D I, GOODACRE R. Rapid and quantitative detection of the microbial spoilage of muscle foods: current status and future trends[J]. Trends in Food Science & Technology,2001,12(11):414−424.
    [23] 温冬玲, 成淑君, 刘悦, 等. 高通量测序分析不同增菌温度下冷鲜鸡肉细菌的群落多样性[J]. 食品科学,2018,39(24):156−161. [WEN D L, CHENG S J, LIU Y, et al. High-throughput sequencing analysis of bacterial community diversity of chilled chicken meat at different enrichment temperatures[J]. Food Science,2018,39(24):156−161. doi:  10.7506/spkx1002-6630-201824024

    WEN D L, CHENG S J, LIU Y, et al. High-throughput sequencing analysis of bacterial community diversity of chilled chicken meat at different enrichment temperatures[J]. Food Science, 2018, 39(24): 156-161. doi:  10.7506/spkx1002-6630-201824024
    [24] 茹志莹, 唐婷婷, 姚瑶, 等. 高通量测序方法分析冰鲜鸡肉保鲜期间微生物菌相变化研究[J]. 食品安全质量检测学报,2019,10(11):3319−3328. [RU Z Y, TANG T T, YAO Y, et al. Analysis of microbial phase changes of chilled chicken during preservation by high-throughput sequencing[J]. Journal of Food Safety and Quality Testing,2019,10(11):3319−3328. doi:  10.3969/j.issn.2095-0381.2019.11.016

    RU Z Y, TANG T T, YAO Y, et al. Analysis of microbial phase changes of chilled chicken during preservation by high-throughput sequencing[J]. Journal of Food Safety and Quality Testing, 2019, 10(11): 3319-3328. doi:  10.3969/j.issn.2095-0381.2019.11.016
    [25] PAPADOPOULOU O S, DOULGERAKI A I, BOTTA C, et al. Genotypic characterization of Brochothrix thermosphacta isolated during storage of minced pork under aerobic or modified atmosphere packaging conditions[J]. Meat Science,2012,92(4):735−738. doi:  10.1016/j.meatsci.2012.06.030
    [26] RUSSO F, ERCOLINI D, MAURIELLO G, et al. Behaviour of Brochothrix thermosphacta in presence of other meat spoilage microbial groups[J]. Food Microbiology,2006,23(8):797−802. doi:  10.1016/j.fm.2006.02.004
    [27] GRIBBLE A, BRIGHTWELL G. Spoilage characteristics of Brochothrix thermosphacta and campestris in chilled vacuum packaged lamb, and their detection and identification by real time PCR[J]. Meat Science,2013,94(3):361−368. doi:  10.1016/j.meatsci.2013.03.016
    [28] CARVALHEIRA A, SILVA J, TEIXEIRA P. Acinetobacter spp. in food and drinking water-A review[J]. Food Microbiology,2021,95:103675. doi:  10.1016/j.fm.2020.103675
    [29] ARGYRI A A, PAPADOPOULOU O S, SOURRI P, et al. Quality and safety of fresh chicken fillets after high pressure processing: Survival of indigenous Brochothrix thermosphacta and inoculated Listeria monocytogenes[J]. Microorganisms,2019,7(11):520. doi:  10.3390/microorganisms7110520
    [30] MAI X, WANG W, ZHANG X, et al. Mathematical modeling of the effects of temperature and modified atmosphere packaging on the growth kinetics of Pseudomonas lundensis and Shewanella putrefaciens in chilled chicken[J]. Foods,2022,11(18):2824. doi:  10.3390/foods11182824
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出版历程
  • 收稿日期:  2022-09-05
  • 网络出版日期:  2023-05-22
  • 刊出日期:  2023-07-01

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