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属:关于其生物活性和化学成分的真正了解。

Genus: What We Really Know About Its Biological Activities and Chemical Composition.

机构信息

Faculty of Sciences and Technology, University of the Azores, Rua Mãe de Deus, 9501-321 Ponta Delgada, Portugal.

cE3c-Centre for Ecology Evolution and Environmental Changes/Azorean Biodiversity Group, Rua Mãe de Deus, 9501-321 Ponta Delgada, Portugal.

出版信息

Molecules. 2022 Mar 9;27(6):1787. doi: 10.3390/molecules27061787.

Abstract

Although the genus includes only two taxonomically accepted species, the published literature is unanimous about the invasive nature of this genus in different regions of the globe, and about the availability of large amounts of biomass for which it is important to find a commercial application. This review shows that extracts from species have already been evaluated for antioxidant, antibacterial, antifungal, antiviral, antifouling, cytotoxic, antimethanogenic and enzyme-inhibitory activity. However, the tables presented herein show, with few exceptions, that the activity level displayed is generally low when compared with positive controls. Studies involving pure compounds being identified in species are rare. The chemical compositions of most of the evaluated extracts are unknown. At best, the families of the compounds present are suggested. This review also shows that the volatile halogenated compounds, fatty acids and sterols that are biosynthesized by the species are relatively well known. Many other non-volatile metabolites (halogen compounds, flavonoids, other phenolic compounds) seem to be produced by these species, but their chemical structures and properties haven'been investigated. This shows how much remains to be investigated regarding the secondary-metabolite composition of these species, suggesting further studies following more targeted methodologies.

摘要

虽然属内仅包含两个在分类学上被接受的物种,但已发表的文献一致认为该属在全球不同地区具有入侵性,并且具有大量生物质可供利用,重要的是要为其找到商业应用。本综述表明,已经评估了 属物种的提取物的抗氧化、抗菌、抗真菌、抗病毒、防污、细胞毒性、抗甲烷生成和酶抑制活性。然而,本文呈现的表格表明,与阳性对照相比,通常显示的活性水平较低。涉及从 属物种中鉴定出纯化合物的研究很少。大多数评估提取物的化学成分未知。充其量,仅提出了存在化合物的科。本综述还表明,由 属物种生物合成的挥发性卤代化合物、脂肪酸和甾醇相对较为人知。许多其他非挥发性代谢物(卤代化合物、类黄酮、其他酚类化合物)似乎也由这些物种产生,但尚未对其化学结构和性质进行研究。这表明关于这些物种的次生代谢产物组成仍有许多需要研究的地方,建议采用更有针对性的方法进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ee3/8948725/af4d0b50a287/molecules-27-01787-g001.jpg

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