首页> 外文期刊>Journal of natural products >The Cocultured Nigrospora oryzae and Collectotrichum gloeosporioides, Irpex lacteus, and the Plant Host Dendrobium officinale Bidirectionally Regulate the Production of Phytotoxins by Anti-phytopathogenic Metabolites
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The Cocultured Nigrospora oryzae and Collectotrichum gloeosporioides, Irpex lacteus, and the Plant Host Dendrobium officinale Bidirectionally Regulate the Production of Phytotoxins by Anti-phytopathogenic Metabolites

机译:Cocultuce Nigrospora Oryzae和Cottentrichum Gloeosporioides,Irpex乳酸和植物宿主石斛Officinale通过抗植物疗法代谢物进行双向调节植物毒素的产生

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摘要

The distinctive nature of the endophyte Irpex lacteus, host plant, and the phytopathogen Collectotrichum gloeosporioides resulted in both negative and positive regulation of the production of phytotoxins from Nigrospora oryzae. The coculture of nonhomologous I. lacteus and N. oryzae resulted in a greater number of anti-phytopathogenic metabolites from the dominant endophyte than the coculture of homologous I. lacteus and N. oryzae. The coculture of the phytopathogen N. oryzae and either the nonhomologous (isolation of I. lacteus and N. oryzae from the different plants) or homologous (isolation of I. lacteus and N. oryzae from the same plant) endophyte I. lacteus from different sources indicated that the nonhomologous I. lacteus grew faster than the homologous I. lacteus, and the production of phytotoxic azaphilone from the phytopathogenic N. oryzae decreased due to the inhibition resulting from being cocultured with nonhomologous I. lacteus. On the other hand, the production of phytotoxic azaphilone was promoted by the coculture of two phytopathogens, N. oryzae and C. gloeosporioides. The extract of the host plant, Dendrobium officinale, also increased antiphytopathogenic metabolite production. Six new phytotoxic azaphilones from N. oryzae, four new tremulane sesquiterpenes from I. lacteus, and a new polyketone were isolated. The endophyte-phytopathogen, phytopathogen-phytopathogen, and endophytephytopathogen-host interactions can induce the chemical diversity of novel anti-phytopathogenic metabolites.
机译:内心Irpex乳酸,宿主植物和植物病理学集群的独特性质导致了来自Nigrospora Oryzae的植物毒素的阴性和正规调节。非博学I.乳酸和N. Oryzae的共蜂鸣中导致来自主体内体的抗植物致原性代谢物大于同源I.乳酸和N. Oryzae的番茄植物。植物疗法N. Oryzae的共培养和来自不同植物中的I. lactereus和N. oryzae的二乳糖和N. oryzae的分离)或同源(分离I. lacteus和来自同一植物的N. Oryzae)内体I.来自不同的乳酸乳酸来源表明,非汉语I.乳酸比同源I.乳酸,并且来自植物疗法N. Oryzae的植物毒性外交酮的产生由于抑制因子与非博学I. Lacteus与非博学原因引起而导致。另一方面,通过两种植物病变,N. Oryzae和C. gloooosporioides的番茄植物促进了植物毒素的植物毒酮的产生。宿主植物的提取物,石斛officinale,也增加了抗肺疗法代谢物生产。来自N. Oryzae的六种新的植物毒性外形,来自I. Lacteus的四种新的Trowulane Sesquiterpenes和新的聚酮。 Endophyte-phytopathogen,植物脑嗜脑脑病原体和内体细胞病原体相互作用可以诱导新型抗植物致病代谢物的化学多样性。

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  • 来源
    《Journal of natural products》 |2020年第5期|共9页
  • 作者单位

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

    Yunnan Univ Funct Mol Anal &

    Biotransformat Key Lab Univ Yunn Key Lab Med Chem Nat Resource Minist Educ &

    Yunnan Prov Sch Chem Sci &

    Technol Kunming 650031 Yunnan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生药学(天然药物学);
  • 关键词

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