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Biological Activity and Chemical Composition of the Endophytic fungus Fusarium sp. TP-G1 obtained from the Root of Dendrobium officinale Kimura et Migo

机译:内生真菌镰刀菌的生物活性和化学成分从木end石Kim根中提取的TP-G1

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Dendrobium officinable Kimura et Migo is a famous traditional herb medicine and is wildly used in folk as a tonic herb. Its endophytic fungi play prominent part in the function of D. officinable Kimura et Migo. In this study we first report the co-production of trichosetin ( 1 ), beauvericin ( 2 ), beauvericin A ( 3 ), enniatin B ( 4 ), enniatin H ( 5 ), enniatin I ( 6 ), enniatin MK1688 ( 7 ), fusaric acid ( 8 ) and dehydrofusaric acid ( 9 ) by the endophytic fungus Fusarium sp. TP-G1 deriving from the root of D. officinable kimura et Migo. These isolates’ reported bioactivities and the tested biological activities in this paper consisted with the functions of D. officinable Kimura et Migo. We found the MICs value of compounds 1 ? 7 against Staphylococcus aureus and MRSA showed nearly no difference, while compounds 8 ? 9 were first found to have the antimicrobial activities against Acinetobacter baumannii with a MIC value of 64 μg/mL and 128 μg/mL respectively. Compounds 2 , 4 , 5 and 6 were first found to show moderate anti-tumor activities against BL16F10; and compounds 4 and 5 were first found to show moderate anti-tumor activities against MCF-7. Furthermore, we report first here the isoleucine (Ile) replacement in beauvericin and enniatin will influence their antibacterial and brine shrimp lethality activities.
机译:铁皮石off可食用的木村等(Migura et Migo)是一种著名的传统草药,在民间广泛用作补药。其内生真菌在D. officinable Kimura et Migo的功能中起着重要作用。在这项研究中,我们首先报道了曲霉菌素(1),博韦霉素(2),博韦霉素A(3),enniatin B(4),enniatin H(5),enniatin I(6),enniatin MK1688(7)的联合生产内生真菌镰刀菌(Fusarium sp。) TP-G1源自D. officinable kimura et Migo的根。这些分离物的生物活性据报道,在本文中经过测试的生物活性与D. officinable Kimura et Migo的功能有关。我们发现化合物1的MIC值7对金黄色葡萄球菌和MRSA几乎没有区别,而8对化合物。首先发现9个具有对鲍曼不动杆菌的抗菌活性,MIC值分别为64μg/ mL和128μg/ mL。首先发现化合物2、4、5和6对BL16F10具有中等程度的抗肿瘤活性。首先发现化合物4和5对MCF-7具有中等的抗肿瘤活性。此外,我们首先在这里报告在Beauvericin和enniatin中异亮氨酸(Ile)的替代将影响它们的抗菌和盐水虾致死性活动。

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