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红豆树异黄酮类成分抑制番茄灰霉病菌的活性研究

潘镇泽 傅佳蕊 郑威 耿帅丽 张琳婧 徐会有 倪林

潘镇泽,傅佳蕊,郑威,等. 红豆树异黄酮类成分抑制番茄灰霉病菌的活性研究 [J]. 福建农业学报,2022,37(6):794−801 doi: 10.19303/j.issn.1008-0384.2022.06.015
引用本文: 潘镇泽,傅佳蕊,郑威,等. 红豆树异黄酮类成分抑制番茄灰霉病菌的活性研究 [J]. 福建农业学报,2022,37(6):794−801 doi: 10.19303/j.issn.1008-0384.2022.06.015
PAN Z Z, FU J R, ZHENG W, et al. Inhibitory Activity of Isoflavones from Ormosia hosiei Seeds against Botrytis cinerea [J]. Fujian Journal of Agricultural Sciences,2022,37(6):794−801 doi: 10.19303/j.issn.1008-0384.2022.06.015
Citation: PAN Z Z, FU J R, ZHENG W, et al. Inhibitory Activity of Isoflavones from Ormosia hosiei Seeds against Botrytis cinerea [J]. Fujian Journal of Agricultural Sciences,2022,37(6):794−801 doi: 10.19303/j.issn.1008-0384.2022.06.015

红豆树异黄酮类成分抑制番茄灰霉病菌的活性研究

doi: 10.19303/j.issn.1008-0384.2022.06.015
基金项目: 全国农业教指委研究课题(2021-NYYB-12);福建农林大学杰青人才项目(xjq202103)
详细信息
    作者简介:

    潘镇泽(1998−),男,硕士研究生,研究方向:活性天然产物的开发与利用(E-mail:panzhenze123@163.com

    通讯作者:

    倪林(1986−),男,博士,副教授,硕士生导师,研究方向:活性天然产物的开发与利用(E-mail:nilin_fjau@126.com

  • 中图分类号: S 436

Inhibitory Activity of Isoflavones from Ormosia hosiei Seeds against Botrytis cinerea

  • 摘要:   目的  研究红豆树提取物及其异黄酮对番茄灰霉病菌的抑菌作用,为植物源抑菌剂的开发和红豆树提取物利用奠定基础。  方法  采用生长速率法筛选红豆树异黄酮对番茄灰霉病菌的抑制作用,进一步测定异黄酮鹰嘴豆芽素A对番茄灰霉病菌的菌丝干重、细胞膜、还原糖含量、过氧化氢酶、过氧化物酶和超氧化物歧化酶等保护酶活性的影响,探讨抑制植物病原真菌的生理生化的作用,评价单体在离体番茄上的抑菌效果。  结果  鹰嘴豆芽素A对番茄灰霉病菌具有好的抑制效果,EC50值为203.189 μg·mL-1。番茄灰霉病菌经鹰嘴豆芽素A处理后,菌丝干重减少,细胞膜的通透性增加,菌体内还原糖含量减少,保护酶含量增多,并且在离体番茄上菌丝生长防治效果较好。  结论  红豆树种子乙酸乙酯活性部位富含生物碱和黄酮类化学成分,其中异黄酮成分是关键的抑菌活性成分。异黄酮成分发挥抑菌活性的作用方式,可能与其干扰菌丝生长、使菌丝细胞膜正常功能受损以及降低菌丝体内保护酶活性等有关。
  • 图  1  红豆树异黄酮单体化合物结构

    Figure  1.  Chemical structure of isoflavone monomer

    图  2  番茄灰霉病菌菌丝形态影响

    Figure  2.  Effect of biochanin A on hyphae morphology of B. cinerea

    图  3  鹰嘴豆芽素A对番茄灰霉病菌的干重影响

    不同小写字母表示不同处理浓度之间差异显著(P<0.05)。

    Figure  3.  Effect of biochanin A on dry weight of B. cinerea

    Different lowercase letters indicate significant differences among different treatment concentrations (P<0.05).

    图  4  鹰嘴豆芽素A对番茄灰霉病菌MDA的影响

    不同小写字母表示同一处理不同时间之间差异显著(P<0.05)。图5~8同。

    Figure  4.  Effect of biochanin A on MDA of B. cinerea

    Different lowercase letters indicate significant differences between different times of the same treatment (P<0.05). Same for Table 5–8.

    图  5  鹰嘴豆芽素A对番茄灰霉病菌还原糖的影响

    Figure  5.  Effect of biochanin A on reducing sugar of B. cinerea

    图  6  鹰嘴豆芽素A对番茄灰霉病菌的CAT酶影响

    Figure  6.  Effect of biochanin A on CAT activity of B. cinerea

    图  7  鹰嘴豆芽素A对番茄灰霉病菌的POD酶影响

    Figure  7.  Effect of biochanin A on POD activity of B. cinerea

    图  8  鹰嘴豆芽素A对番茄灰霉病菌的SOD酶影响

    Figure  8.  Effect of biochanin A on SOD activity of B. cinerea

    图  9  鹰嘴豆芽素A在离体番茄果实上对番茄灰霉病的治疗作用

    Figure  9.  Efficacy of biochanin A on B. cinerea-inoculated tomatoes

    图  10  鹰嘴豆芽素A在离体番茄果实上对番茄灰霉病的预防作用

    Figure  10.  Preventive effect of biochanin A on tomatoes inoculated by B. cinerea

    表  1  红豆树异黄酮单体化合物

    Table  1.   Isoflavone monomer of O. hosiei

    序号 No.化合物名称
    Compound name
    序号 No.化合物名称
    Compound name
    1 鹰嘴豆芽素A Biochanin A 11 染料木素-7-O-β-D-呋喃芹糖基-(1→6)-O-β-D-吡喃葡萄糖苷 ambocin
    2 大豆素 Daidzein 12 5,7-二羟基-4′-甲氧基异黄酮-7-O-β-D-木糖-(1→6)-O-β-D-吡喃葡萄糖苷 Kakkanin
    3 染料木素 Genistein 13 4′-甲氧基异黄酮-7-O-β-D-木糖-(1→6)-O-β-D-吡喃葡萄糖苷 Kushenol O
    4 异樱黄素 Isoprunetin 14 4′-甲氧基异黄酮-7-O-β-D-芹糖-(1→6)-O-β-D-吡喃葡萄糖苷7-hydroxy-4′-methoxylisoflavone-7-O-β-D-apiofuranosyl-(1→6)-O-β-D-glucopyranoside
    5 2′,4′,5,7-四羟基异黄酮 2′,4′,5,7-tetrahydroxyisoflavone 15 3′,4′,7-三羟基-5-甲氧基异黄酮 3',4',7-trihydroxy-5-me-thoxyisoflavone
    6 4′,8-二甲氧基-7-O-β-D-
    葡萄糖基异黄酮 4′,8-dimethoxyl-7-O-β-D-glucopyranosyl isoflavone
    16 染料木苷-5,4′-二甲醚 Genistin-5, 4′-methyl ether
    7 降紫香苷 Sissotrin 17 澳白檀苷Lanceolarin
    8 芒柄花苷 Ononin 18 鹰嘴豆芽素A-7-O-芸香糖苷 biochanin A-7-O-rutinoside
    9 异樱黄素-7-O-β-D-吡喃葡萄糖苷 Isoprunetin-7-O-β-D-glucoside 19 染料木苷 Genistin
    10 圆荚草双糖苷 Sphaerobioside 20 2′,4′,7-三羟基-5-甲氧基异黄酮 2',4',7-trihydroxy-5-me-thoxyisoflavone
    下载: 导出CSV

    表  2  红豆树提取物及单体化合物对番茄灰霉病菌的抑制作用

    Table  2.   Inhibitory effects of O. hosiei extract and monomer against B. cinerea

    序号 No.化合物名称
    Compound name
    抑菌率
    Antibacterial rate/%
    1 鹰嘴豆芽素A Biochanin A 46.74±0.43 b
    4 异樱黄素 Isoprunetin 42.14±0.29 c
    15 3′,4′,7-三羟基-5-甲氧基异黄酮
    3′,4′,7-trihydroxy-5-me-thoxyisoflavone
    25.54±0.73 e
    16 染料木苷-5,4′-二甲醚
    Genistin-5, 4′-methyl ether
    29.76±0.35 d
    阳性对照
    Positive control
    丁子香酚 Eugenol 57.79±0.08 a
    下载: 导出CSV

    表  3  两种化合物对番茄灰霉病菌的毒力测定

    Table  3.   Toxicity of two compounds on B. cinerea

    样品
    Sample
    毒力曲线
    Virulence curve
    相关系数
    Correlation coefficient (R2)
    EC50 /
    (μg·mL−1
    95%置信度
    Confidence level/(μg·mL−1
    丁子香酚(CK) Eugenol(CK) y=0.787x−1.766 0.989 175.739 128.365~279.500
    异樱黄素 Isosakura flavin y=0.635x−1.504 0.998 232.599 153.616~503.442
    鹰嘴豆芽素 Chickpea sprout y=0.783x−1.807 0.994 203.189 145.968~341.329
    下载: 导出CSV

    表  4  鹰嘴豆芽素A在离体番茄果实上对番茄灰霉病菌的防治效果

    Table  4.   Control efficacy of biochanin A against B. cinerea on tomatoes

    处理编号
    No.
    样品质量浓度
    Concentration of samples/(mg·mL−1
    先接菌后喷药
    First inoculate, then spray
    先喷药后接菌
    First spray, then inoculate
    病斑面积
    Lesion area/cm2
    防治效果
    Control efficiency/%
    病斑面积
    Lesion area/cm2
    防治效果
    Control efficiency/%
    A 0(CK) 2.56±0.14 a 2.52±1.13 a
    B 0.5 1.90±0.12 b 26.06 2.15±0.13 a 14.99
    C 1.0 0.51±0.05 c 80.04 0.64±0.14 b 74.62
    D 2.0 0.21±0.07 d 91.80 0.29±0.09 b 88.60
    下载: 导出CSV
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出版历程
  • 收稿日期:  2022-04-12
  • 修回日期:  2022-05-21
  • 网络出版日期:  2022-06-20
  • 刊出日期:  2022-06-28

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