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杏鲍菇528深层发酵生物合成麦角硫因的培养基优化

汤葆莎 吴俐 翁敏劼 赖谱富 李怡彬

汤葆莎,吴俐,翁敏劼,等. 杏鲍菇528深层发酵生物合成麦角硫因的培养基优化 [J]. 福建农业学报,2021,36(6):728−734 doi: 10.19303/j.issn.1008-0384.2021.06.016
引用本文: 汤葆莎,吴俐,翁敏劼,等. 杏鲍菇528深层发酵生物合成麦角硫因的培养基优化 [J]. 福建农业学报,2021,36(6):728−734 doi: 10.19303/j.issn.1008-0384.2021.06.016
TANG B S, WU L, WENG M J, et al. Optimization of medium for biosynthesis of ergothioneine by submerged fermentation of Pleurotus eryngii 528 [J]. Fujian Journal of Agricultural Sciences,2021,36(6):728−734 doi: 10.19303/j.issn.1008-0384.2021.06.016
Citation: TANG B S, WU L, WENG M J, et al. Optimization of medium for biosynthesis of ergothioneine by submerged fermentation of Pleurotus eryngii 528 [J]. Fujian Journal of Agricultural Sciences,2021,36(6):728−734 doi: 10.19303/j.issn.1008-0384.2021.06.016

杏鲍菇528深层发酵生物合成麦角硫因的培养基优化

doi: 10.19303/j.issn.1008-0384.2021.06.016
基金项目: 国家重点研发计划项目(2018YFD0400200);福建省科技计划公益类专项(2019R1032-11);福建省农业科学院对外合作项目(DEC201821204);福建省农业科学院创新团队建设项目(STIT2017-3-5、STIT2017-1-10)
详细信息
    作者简介:

    汤葆莎(1971−),女,硕士,高级农艺师,研究方向:农产品加工技术及食用菌栽培研究(E-mail:tbsty@126.com

    通讯作者:

    李怡彬(1981−),男,硕士,研究员,研究方向:食品科学与工程(E-mail:lyb9951@163.com

  • 中图分类号: S 646.1+4

Optimization of medium for biosynthesis of ergothioneine by submerged fermentation of Pleurotus eryngii 528

  • 摘要:   目的  为提高杏鲍菇528发酵物的麦角硫因含量,筛选杏鲍菇528培养的营养配方,以期为开发高含量的麦角硫因杏鲍菇深层液体发酵物提供理论基础。  方法  以固体培养菌丝生长速度和菌丝形态探讨杏鲍菇528菌丝生长的适宜碳氮源;采用单因素试验,以发酵物干重、沉淀物情况和初始pH值为指标,研究杏鲍菇528液体深层发酵菌丝生长的营养配方,探究不同氨基酸对深层液体培养发酵物麦角硫因含量的影响;最后通过L9(34)正交试验分析提高杏鲍菇528发酵物麦角硫因含量的深层发酵培养基配方。  结果  杏鲍菇528固体培养菌丝生长的适宜碳、氮源分别为玉米糁粉和蛋白胨;在杏鲍菇528液体发酵培养中,玉米糁粉2.0%和蛋白胨2.0%组合碳氮源培养基液体培养的发酵物干重值达33.30±0.81 g·L−1,显著高于其他浓度比例的碳氮源组合,且沉淀物情况和初始pH更适宜杏鲍菇528液体培养;天冬氨酸、半胱氨酸、组氨酸、精氨酸、谷氨酸这5种氨基酸均可明显提高杏鲍菇528发酵物麦角硫因产率,其中组氨酸诱导培养的杏鲍菇液体发酵物中麦角硫因含量最高,是对照组的3.73倍,且明显高于其他氨基酸。  结论  杏鲍菇528深层发酵生物合成麦角硫因的最佳培养基配方为:玉米糁粉2.0%、蛋白胨1.5%、组氨酸0.15%、麦麸细粉1.0%、KH2PO4 0.1%、MgSO4 0.1%、谷氨酸0.1%和维生素B6 0.1%,在此条件下,杏鲍菇发酵物麦角硫因含量达20.50±1.80 mg·L−1
  • 图  1  不同碳、氮源培养基对杏鲍菇528菌丝生长的影响(第9 d,左为碳源,右为氮源)

    Figure  1.  Effects of different carbon and nitrogen source culture media on mycelial growth of Pleurotus eryngii 528 (At 9th day, left as carbon sources, right as nitrogen sources)

    图  2  不同碳、氮源培养基杏鲍菇528菌丝生长速率变化(A为碳源,B为氮源)

    Figure  2.  Variation of mycelial growth rate of Pleurotus eryngii 528 with different carbon and nitrogen sources (A is carbon sources, B is nitrogen sources)

    图  3  不同氨基酸对发酵物麦角硫因含量的影响

    Figure  3.  Effects of different amino acids on the content of ergothioneine in fermentation product

    表  1  正交试验设计因素及水平

    Table  1.   Factors and levels of orthogonal experimental design

    水平
    Level
    因素 Factor%
    玉米糁粉
    Corngrits A
    蛋白胨
    Peptone B
    组氨酸
    Histidine C
    11.51.50.10
    22.02.00.15
    32.52.50.20
    下载: 导出CSV

    表  2  不同比例玉米糁粉和蛋白胨对杏鲍菇528深层发酵培养液的沉淀物情况、初始pH及发酵物干重影响

    Table  2.   Effects of different proportions of corn grits and peptone on the sediment condition, initial pH in culture medium and dry weight of fermentation products of Pleurotus eryngii 528 submerged fermentation

    配方
    Formula
    玉米糁粉
    Corn
    grits/%
    蛋白胨
    Peptone/%
    麦麸细粉
    Wheat bran
    powder/%
    谷氨酸
    Glutamic
    acid/%
    维生素B6
    Vitamin
    B6/%
    KH2PO4/%MgSO4/%沉淀物情况
    Sediment
    condition
    pH发酵物干重
    Dry weight of fermentation/
    (g·L−1)
    A1.01.01.00.10.10.10.1+4.9624.60±0.17 D
    B1.02.01.00.10.10.10.1+5.1031.20 ±0.99 C
    C1.03.01.00.10.10.10.1+5.1131.50 ±1.19 C
    D2.01.01.00.10.10.10.1++4.9624.70±0.11 D
    E2.02.01.00.10.10.10.1++5.1033.30±0.81 A
    F2.03.01.00.10.10.10.1++5.1132.90±1.10 B
    G3.01.01.00.10.10.10.1+++++4.9524.90±0.25 D
    H3.02.01.00.10.10.10.1+++++5.1133.10±0.70 AB
    I3.03.01.00.10.10.10.1+++++5.1232.80±0.64 B
    注:字母不同表示差异显著(P<0.05);+表示沉淀程度:+为沉淀少,++为沉淀较多,+++++沉淀多。
    Note: Different letters indicate significant differences (P<0.05); + indicates the degree of precipitation, + means less precipitation, ++ means more precipitation, +++++means the most precipitation.
    下载: 导出CSV

    表  3  L9(34)正交试验结果

    Table  3.   The results of L9(34)orthogonal test

    序列号
    Serial
    number
    因素 Factor/%麦角硫因含量
    Ergothioneine
    content/
    (mg·L −1)
    玉米糁粉
    Corn grits
    A
    蛋白胨
    Peptone
    B
    组氨酸
    Histidine
    C
    空列
    Null column
    D
    11.51.50.10110.39
    21.52.00.15213.60
    31.52.50.20316.41
    42.01.50.15319.48
    52.02.00.20118.49
    62.02.50.10211.91
    72.51.50.20219.41
    82.52.00.1039.98
    92.52.50.15116.92
    $ {{\bar K}_1}$13.4716.4310.7615.27
    $ {{\bar K}_2}$16.6314.0316.6714.97
    $ {{\bar K}_3}$15.4415.0818.1115.29
    R3.162.407.350.32
    下载: 导出CSV

    表  4  正交试验方差分析

    Table  4.   Variance analysis of orthogonal experiment

    变异来源
    Source of
    variation
    偏差平方和
    Deviation
    sum of
    squares
    自由度
    Degrees of
    freedom
    F
    F value
    显著性
    Significance
    A15.2921.90
    B8.6721.08
    C90.95211.30*
    空列
    Null column
    0.1920.02
    误差
    Error
    24.166
    下载: 导出CSV
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  • 收稿日期:  2020-05-20
  • 修回日期:  2021-06-23
  • 刊出日期:  2021-06-28

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