共查询到17条相似文献,搜索用时 140 毫秒
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座壳孢及其有性型是一类重要的虫生真菌,隶属子囊菌门、粪菌纲、肉座菌目、麦角菌科,能寄生粉虱和蚧类昆虫,可开发成一种环境友好型的生物农药。座壳孢及其有性型属成员广泛分布于热带和亚热带地区,该类群物种、栖息环境和生态适应的多样性使它们的代谢产物化学结构及其生物活性彰显出多样性特点,结构和功能多样的真菌代谢产物已成为发现新药先导化合物的重要资源。虫生真菌因其独特的生活方式和多种生存环境形成了与众不同的适应寄主特性及代谢通路,明显提高获得新颖结构、显著活性的代谢产物的几率,目前已是药物重点研发的领域。在座壳孢及其有性型代谢产物研究中已报道了萜类、黄酮类、醌类、环肽和甾醇等多种化合物,并具有抗肿瘤、抗疟疾、抗菌和杀虫等多种生物活性,可在农业、工业和医药保健等方面应用。本文对近年座壳孢及其有性型代谢产物的化学成分和生物活性等方面的研究进展进行概述,为促进座壳孢及其有性型代谢产物的深入研究、开发利用和新药创制提供参考。 相似文献
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杂色曲霉是曲霉属的常见种类,广泛分布于海洋、高等植物、红树林和节肢动物等生境中,近年研究表明杂色曲霉可产生生物碱、萜类、聚酮等结构多样的次级代谢产物,具有抗菌、抗肿瘤、抗氧化、抗病毒等活性。本文总结了2017—2022年间报道的37株杂色曲霉次级代谢产物结构及其生物活性的研究进展,涉及325个次级代谢产物,其中新化合物111个。本文揭示了杂色曲霉的次级代谢产物与生境的相关性,对从更多生境来源的杂色曲霉及其它微生物资源来挖掘新天然产物具有参考作用。 相似文献
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从荒漠药用植物沙蒿的内生真菌Embellisia chlamydospora中首次分离得到3种酚酸类化合物,分别为barceloneic acid A(1),barceloneic lactone(2),2′-O-methyl-barceloneate(3)。根据其NMR与HR-ESI数据以及相关文献比对,确定了3个化合物的结构。活性试验结果证实化合物2和3显著抑制拟南芥根生长。目前,从E.chlamydospora真菌中仅分离出2种化合物terpestacin和embellistatin。本实验结果丰富了该真菌的化学成分多样性,进一步暗示特殊生境的植物内生真菌是产生结构新颖与活性显著的次级代谢产物的重要宝库。 相似文献
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草原与荒漠植物内生真菌是一类特殊生境真菌类群,由于其独特的生存与生态环境,该类真菌在进化的过程中产生出具有不同生态与生物功能的次生代谢产物。相对于其他植物内生真菌而言,该类真菌化学研究相对薄弱与零散,但是目前仍然从这类特殊生境真菌类群中发现了大量结构新颖、活性独特并具有不同化学生态与生物功能的次生代谢产物。本文主要从化学结构角度综述近年来从草原与荒漠植物内生真菌中分离的次生代谢产物(生物碱、聚酮、酚酸、萜类、环肽等5类结构)、药理活性(抗病毒,免疫调节,促进骨髓增殖,细胞毒及Hsp90抑制剂活性等)与化学生态功能活性(杀虫、拒食与动物神经毒活性等),拟为该类特殊生境真菌类群次生代谢产物进一步开发提供研究基础与理论依据,同时对该领域研究存在的问题进行分析与探讨并提出展望。 相似文献
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海洋真菌活性代谢产物最新研究进展 总被引:12,自引:0,他引:12
海洋微生物因其特殊的生存环境而具有产生新型生物活性物质的巨大潜力.近年来,从海洋真菌中分离鉴定了许多结构新颖的次级代谢产物,这些化合物显示了良好的抗肿瘤、抗细菌或抗真菌等生物活性.本文对近两年来海洋真菌所产生的活性物质的研究进展进行综述,并对其发展进行展望. 相似文献
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昆虫共生菌的次级代谢产物研究进展 总被引:1,自引:0,他引:1
微生物与昆虫的共生是一种普遍现象,昆虫种类繁多,与昆虫共生的微生物也多种多样。昆虫共生菌是活性次生代谢产物的重要来源。本文对自2008年以来已报道的177个昆虫共生菌的次级代谢产物进行了统计和分析,结果表明:61.6%的化合物为新天然产物(生物碱类新化合物最多),其中,约75%的新化合物来源于昆虫共生真菌,25%来源于细菌;醌酮类化合物是昆虫共生菌源天然产物的主要结构类型,占23.2%;47.5%的化合物具有显著的抗肿瘤、抗菌、除草和抗氧化等生物活性,且化合物中的主要活性类型是抗菌和抗肿瘤活性,活性范围覆盖面最广的结构类型是生物碱类。以上结果表明昆虫共生菌的次级代谢产物是先导性化合物的重要来源且具有丰富的生物活性类型。本文以天然产物的结构分类为切入点,结合其研究菌株来源、生物活性等进行综述,旨在为充分挖掘昆虫共生菌次级代谢产物提供重要参考。 相似文献
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《Microbiological research》2014,169(4):262-278
Marine actinobacteria are one of the most efficient groups of secondary metabolite producers and are very important from an industrial point of view. Many representatives of the order Actinomycetales are prolific producers of thousands of biologically active secondary metabolites. Actinobacteria from terrestrial sources have been studied and screened since the 1950s, for many important antibiotics, anticancer, antitumor and immunosuppressive agents. However, frequent rediscovery of the same compounds from the terrestrial actinobacteria has made them less attractive for screening programs in the recent years. At the same time, actinobacteria isolated from the marine environment have currently received considerable attention due to the structural diversity and unique biological activities of their secondary metabolites. They are efficient producers of new secondary metabolites that show a range of biological activities including antibacterial, antifungal, anticancer, antitumor, cytotoxic, cytostatic, anti-inflammatory, anti-parasitic, anti-malaria, antiviral, antioxidant, anti-angiogenesis, etc. In this review, an evaluation is made on the current status of research on marine actinobacteria yielding pharmaceutically active secondary metabolites. Bioactive compounds from marine actinobacteria possess distinct chemical structures that may form the basis for synthesis of new drugs that could be used to combat resistant pathogens. With the increasing advancement in science and technology, there would be a greater demand for new bioactive compounds synthesized by actinobacteria from various marine sources in future. 相似文献
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海洋真菌来源的抗菌活性物质研究:方法与进展 总被引:1,自引:0,他引:1
病原微生物的耐药性已严重威胁到人类的健康,因此,研发结构新颖、活性显著的新型抗生素已迫在眉睫。海洋独特的生态环境孕育了多样的微生物种群,为抗菌活性先导化合物的发现提供了丰富的资源。简要介绍了海洋真菌的特点及抗菌活性化合物的研究方法,并从海洋动物来源真菌、海藻来源真菌、海洋沉积物来源真菌和红树林植物来源真菌等4个方面,综述了从2000年至今已报道的海洋真菌抗菌活性次级代谢产物的研究进展,其中包括83个抗菌活性化合物,引用国内外文献54篇。 相似文献
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In the past few decades groups of scientists have focused their study on relatively new microorganisms called endophytes.
By definition these microorganisms, mostly fungi and bacteria, colonise the intercellular spaces of the plant tissues. The
mutual relationship between endophytic microorganisms and their host plants, taxanomy and ecology of endophytes are being
studied. Some of these microorganisms produce bioactive secondary metabolites that may be involved in a host-endophyte relationship.
Recently, many endophytic bioactive metabolites, known as well as new substances, possesing a wide variety of biological activities
as antibiotic, antitumor, antiinflammatory, antioxidant, etc. have been identified. The microorganisms such as endophytes
may be very interesting for biotechnological production of bioactive substances as medicinally important agents. Therefore
the aim of this review is to briefly characterize endophytes and summarize the structuraly different bioactive secondary metabolites
produced by endophytic microorganisms as well as microbial sources of these metabolites and their host plants. 相似文献
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Jae-Hoon Choi 《Bioscience, biotechnology, and biochemistry》2018,82(3):372-382
Fungi including mushrooms have been proved to be an important biosource of numerous metabolites having a huge variety of chemical structures and diverse bioactivities. Metabolites of mushrooms are of remarkable importance as new lead compounds for medicine and agrochemicals. This review presents some of our studies on biologically functional molecules purified from mushroom-forming fungi; (1) endoplasmic reticulum stress suppressor, (2) osteoclast-forming suppressing compounds, (3) plant growth regulators. 相似文献