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1.
药用植物内生真菌研究现状及其应用前景   总被引:6,自引:0,他引:6  
随着对药用植物内生真菌研究的深入,从药用植物内生真菌中寻找新的生物活性成分已成为研究热点。内生真菌对药用植物的生长及活性成分的形成都有影响,内生真菌活性成分已成为发现新颖结构化合物及新药物的潜在资源。简要综述了近年来在内生真菌的分离鉴定、发酵、次生代谢产物、与宿主的关系等方面的研究进展。  相似文献   

2.
药用植物内生真菌研究进展   总被引:2,自引:0,他引:2  
药用植物内生真菌具有抗肿瘤、抗菌、抗病毒、抗氧化等活性,能够产生植物生长素、细胞激动素、赤霉素等促植物生长物质促进植物生长,从而使研究药用植物内生真菌成为寻找新型拮抗菌、抗肿瘤、抗氧化活性药物的重要资源。本文对药用植物内生真菌的多样性、分离鉴定、产生的次生代谢产物及其功能等做一综述。  相似文献   

3.
药用植物内生真菌研究进展   总被引:1,自引:0,他引:1  
我国药用植物种类丰富,但受植物资源生长周期长、产量低等限制,难以满足人类的需要。而其内生真菌丰富多样,生长快,易培养,且可以产生与宿主相同或相似的天然活性物。利用内生真菌发酵生产抗菌、抗肿瘤等天然活性物质,不仅有望解决市面上部分药物供不应求的现状,还能有效地保护珍稀、濒危的药用植物资源。本文概述了药用植物内生真菌宿主植物的选择、内生真菌分离及其次级代谢产物分离纯化和活性研究,并对研究中存在的问题进行了讨论,以期为药用植物内生真菌研究提供方法和思路。  相似文献   

4.
鬼臼类植物内生真菌的分离及其抗癌活性研究   总被引:7,自引:0,他引:7  
通过对三属四种鬼臼类植物地下茎内生真菌的分离,发现鬼臼类植物地下茎中内生真菌的物种类型极其丰富,主要分布在地下茎的表皮层和维管组织中,来源于外界环境.通过对包括鬼臼类植物在内的7种植物内生真菌的抗癌活性测定,发现内生真菌的抗癌活性与宿主有密切有关系,鬼臼类植物地下茎内生真菌含有较高比例的抗癌活性菌株.宿主种类、地理位置都会影响内生真菌的分布,进而影响活性菌株出现的频率.通过对所有鬼臼类植物地下茎内生真菌次生代谢产物的深入分析,并没有发现产生鬼臼毒素的内生真菌,鬼臼类植物地下茎内生真菌的抗癌活性成分是独立产生的.  相似文献   

5.
海南粗榧内生真菌抗肿瘤抗菌活性的筛选   总被引:3,自引:0,他引:3  
对72株海南粗榧(Cephalotaxus hainanensis Li)内生真菌进行了抗肿瘤和抗菌活性筛选。结果显示, 有9株内生真菌至少对一种指示瘤株具有细胞毒活性, 5株内生真菌对金黄色葡萄球菌有较强的抑菌活性, 1株内生真菌对辣椒疫霉有抑制作用。这表明海南粗榧内生真菌是寻找有价值的生物活性成分的潜在资源, 其生物活性成分值得进一步研究。  相似文献   

6.
近年来,植物内生菌在抗肿瘤天然药物的研究取得了很大的进展。本实验从植物茅苍术中利用纯培养方法和组织块法分离获得57株内生真菌,其中,从根中分离得到20株,叶中分离得到19株,茎中分离得到16株,果实中分离得到2株。对57株内生真菌的抗肿瘤活性进行筛选研究,结果表明,菌株KLMPAL027发酵液对人肝癌HepG2细胞抑制率达到63.76%。  相似文献   

7.
癌症已经严重威胁人类的健康。从自然界中筛选更新的、更有效的抗癌药物已成为了该领域的研究重点。作为新型抗癌药物的潜在来源,众多从植物内生真菌分离的代谢产物被证明具有抗肿瘤的生物活性。这些内生真菌通常具有特殊的代谢途径,可以在其培养物中积累抗癌活性物质,如紫杉烷类、生物碱类、细胞松弛素、鬼臼毒素、布雷菲德菌素A等。将系统的介绍已分离自植物内生真菌的抗癌药物的研究进展,同时对内生真菌的抗癌药物筛选的策略和发展前景进行简要的展望。  相似文献   

8.
植物内生真菌可以产生与宿主植物相同或相似的次生代谢产物,已成为活性化合物生产和发现新化合物的重要来源。为了解青蒿内生真菌的潜在应用价值,介绍了青蒿内生真菌的生物多样性、生物活性和部分次生代谢产物,并展望了未来的研究方向,以期为进一步开发利用青蒿内生真菌提供参考。  相似文献   

9.
《菌物学报》2017,(3):399-400
<正>内生真菌是一类生长在健康植物组织内、但不引起明显外观病症的微生物,是生物进化过程中形成的生活方式比较特殊的一类群体。关于植物内生真菌的研究已经有一百多年的历史。自上世纪90年代从短叶红豆杉的树皮中分离出能够产紫杉醇的内生真菌后,药用植物内生真菌就引起人们的关注,从中寻找抗肿瘤以及其他生物活性物质逐渐成为国内外的研究热点。药用植物的内生真菌实际上为人们开辟了微生物资  相似文献   

10.
植物内生菌活性代谢产物最新研究进展   总被引:1,自引:0,他引:1  
内生菌广泛存在于植物组织中,作为一种新型的微生物资源,具有丰富的物种多样性,也是发掘新型天然活性物质的重要途径之一,有些内生菌还能产生与宿主植物相同或相似的活性成分。因此从植物内生菌中挖掘抗菌尤其抗临床耐药菌、抗肿瘤等天然活性产物不仅为新药的研发提供了新的方向,还能在一定程度上解决传统的天然产物药源——药用植物生长缓慢、资源紧缺等问题。从多个角度概述了近年来国内外报道的植物内生菌次生代谢产物及其来源、生物活性等方面的主要成果和最新进展,以期为植物内生菌活性代谢产物的研究提供参考。  相似文献   

11.
ABSTRACT:?

An increase in the number of people in the world having health problems caused by certain cancers, drug-resistant bacteria, parasitic protozoans, and fungi has caused alarm. An intensive search for newer and more effective agents to deal with these problems is now underway. Endophytes are a potential source of novel chemistry and biology to assist in helping solve not only human health, but plant and animal health problems also. Endophytes reside in the tissues between living plant cells. The relationship that they establish with the plant varies from symbiotic to bordering on pathogenic. Of all of the world's plants, it seems that only a few grass species have had their complete complement of endophytes studied. As a result, the opportunity to find new and interesting endophytes among the myriad of plants is great. Sometimes extremely unusual and valuable organic substances are produced by these endophytes. These compounds may contribute to the host-microbe relationship. The initial step in dealing with endophytic microorganisms is their successful isolation from plant materials. Then, the isolation and characterization of bioactive substances from culture filtrates is done using bioassay guided fractionation and spectroscopic methods. Some of the more interesting compounds produced by endophytic microbes with which we have dealt are taxol, cryptocin, cryptocandin, jesterone, oocydin, isopestacin, the pseudomycins and ambuic acid. This review discusses an approach for bio-prospecting the rainforests, not only to harvest their endophytic microorganisms, but to eventually build a better understanding of the importance and value they have to humankind.  相似文献   

12.
《Phytomedicine》2014,21(4):534-540
Many endophytic fungi have been reported with the biosynthetic potential to produce same or similar metabolites present in host plants. The adaptations that might have acquired by these fungi as a result of the long-term association with their host plants can be the possible basis of their biosynthetic potential. The bioactive compounds originated from endophytes are currently explored for their potential applications in pharmaceutical, agriculture and food industries. Piper nigrum, a plant of the Piperaceae is very remarkable because of the presence of the alkaloid piperine. Piperine has been reported to have broad bioactive properties ranging from antimicrobial, antidepressant, anti-inflammatory, antioxidative to anticancer activities. Interestingly, piperine also plays a vital role in increasing the bioavailability of many drugs which again is a promising property. The current study was carried out to identify piperine producing endophytic fungus from Piper nigrum L. By screening various endophytic fungi, the isolate which was identified as member of Colletotrichum gloeosporioides was found to have the ability to form piperine and was confirmed by HPLC and LCMS. Considering the broad bioactive potential of piperine, the piperine producing fungi identified in the study can expect to have much industrial potential.  相似文献   

13.
植物内生真菌及其活性代谢产物研究进展   总被引:18,自引:2,他引:16  
植物内生真菌是一大类未被充分研究过的真菌,其物种及代谢产物均具有生物多样性,现今从植物内生真菌中得到的活性物质种类远比从土壤微生物中得到的多。对植物内生真菌的研究具有重要的生态学意义和经济学意义,在各个领域中应用前景广泛。作者主要综述了植物内生真菌及其活性物质研究的最新进展。  相似文献   

14.
The purpose of this work was to screen the endophytic fungi having antitumor or antifungal activity, which were isolated from the inner barks of three kinds of pharmaceutical plants, Taxus mairei, Cephalataxus fortunei and Torreya grandis, collected from Fujian province, China. Antitumor activity was studied by the MTT assay and antifungal activity was determined by observing fungal growth inhibition. 13.4% of endophytic fungi fermentation broths displayed cytotoxic activity on HL-60 cells at and below a dilution of 1:50, and 6.4% on KB cells. 52.3% of endophytic fungi fermentation broths displayed growth inhibition on at least one pathogenic fungi, such as Neurospora sp., Trichoderma sp. and Fusarium sp. Among all endophytic fungi isolated, the genus Paecilomyces sp. has the highest positive rate of antitumor and antifungal activity. These results indicate that endophytic fungi could be a promising source for antitumor and antifungal bioactive agents.  相似文献   

15.
Endophytic fungi are ubiquitous organisms found in the plants, residing intercellular or intracellular, at least for a portion of their lives without causing apparent symptoms of infection. Almost all plants are known to harbor endophytes. The choice of the plant to be used for exploring endophytes for bioactives is important. Therefore, medicinal plants which are known to be used since centuries as an alternative source of medicine, are a valuable source for bioprospecting endophytes. Nevertheless, due to many reasons there is a dire need for novel resources for novel drugs which can be an answer to many deadly diseases. It is in this context that the present review was envisaged. The review reveals the importance of endophytic fungi from medicinal plants as a source of bioactive and chemically novel compounds. The bioactive metabolites produced by endophytic fungi originate from different biosynthetic pathways and belong to diverse structural groups such as terpenoids, steroids, quinones, phenols, coumarins etc. Endophytes therefore, represent a chemical reservoir for new compounds such as, anticancer, immunomodulatory, antioxidant, antiparasitic, antiviral, antitubercular, insecticidal etc. for use in the pharmaceutical and agrochemical industries. Although, efforts have been made to accommodate as many examples as possible but the depth of the subject is so vast that it cannot be covered in one single review. This in itself speaks of the fact that endophytic fungi from medicinal plants is indeed a treasure worth searching. In the present review only some selected examples have been covered.  相似文献   

16.
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   

17.

Medicinal plants are a rich source of natural products used to treat many diseases; therefore, they are the basis for a new drug discovery. Plants are capable of generating different bioactive secondary metabolites, but a large amount of botanical material is often necessary to obtain small amounts of the target substance. Nowadays, many medicinal plants are becoming rather scarce. For this reason, it is important to point out the interactions between endophytic microorganisms and the host plant, because endophytes are able to produce highly diverse compounds, including those from host plants that have important biological activities. Thence, this review aims at presenting the richness in bioactive compounds of the medicinal plants from Tabebuia and Handroanthus genera, as well as important aspects about endophyte-plant interactions, with emphasis on the production of bioactive compounds by endophytic fungi, which has been isolated from various medicinal plants for such a purpose. Furthermore, bio-prospection of natural products synthesized by endophytes isolated from the aforementioned genera used in traditional medicine could be used to treat illnesses.

  相似文献   

18.
药用植物内生真菌及活性物质多样性研究进展   总被引:32,自引:2,他引:30  
药用植物具有丰富的物种多样性,是人类生存与发展的重要自然资源。内生真菌广泛存在于健康植物组织内部,是植物微生态系统的重要组成部分,各种药用植物中蕴藏着非常丰富的内生真菌。通过与药用植物的“协同进化”,某些内生真菌具有了产生与宿主植物相同或相似的生物活性物质的能力。内生真菌产生的各种活性物质,在生物制药、农业生产、工业发酵等方面都表现出美好的应用前景,受到世界各国专家的广泛关注。利用内生真菌发酵实现生物活性物质的工业化生产,可以提高产量、降低产品成本,满足人们日益增长的需求;同时有利于珍稀、濒危药用植物资源的保护,对减少野生药用植物多样性的破坏具有重要意义。本文从药用植物内生真菌物种多样性与产生生物活性物质多样性等方面总结近年最新的研究进展,提出了内生真菌及活性物质研究的未来发展方向。  相似文献   

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