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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Isolation and Characterization of Antifungal Metabolites from the Melia azedarach-Associated Fungus Diaporthe eucalyptorum
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Isolation and Characterization of Antifungal Metabolites from the Melia azedarach-Associated Fungus Diaporthe eucalyptorum

机译:来自Melia azedarach相关的真菌DioSporthe桉树抗真菌代谢物的分离与表征

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摘要

Two biosynthetically related new metabolites, eucalyptacid A (1) and eucalactam B (2), along with six known compounds (3-8), eugenitol (3), cytosporone C (4), 4-hydroxyphenethyl alcohol (5), 1-(4-hydroxyphenyl)ethane-1,2-diol (6), N-(2-hydroxy-2-phenylethyl)acetamide (7), and phomopene (8), were isolated from the solid rice cultures of the endophytic fungus Diaporthe eucalyptorum KY-9 that had been isolated from Melia azedarach. Also, two further new derivatives (2a, 2b) were prepared from 2. The structures were elucidated by exhaustive analysis of NMR and ESIMS data and chemical methods such as Marfey's protocol. Compound 1 was identified as a rare polyketide fatty acid, (8E)-3,5,11-trihydroxy-2,10,12-trimethyltetradecenoic acid, and 2 was determined to be the first cyclic depsipeptide containing the same fatty acid unit as 1 and a Gly-Gly-Thr tripeptide chain. Its N-terminal end is N-acylated by an 11-hydroxy fatty acid with a branch alkyl chain of 14:1. The 11-hydroxyl group connects to the carboxylic group of the C-terminal amino acid to form a 22-membered lactone ring. A hypothetical biosynthetic pathway for the new polyketides is proposed. The isolated compounds were assayed for their inhibition against four plant pathogenic fungi, Alternaria solani, Botrytis cinerea, Fusarium solani, and Gibberella saubinettii. Compounds 1, 4, 6, and 7 exhibited antifungal activities against Alternaria solani, with minimal inhibitory concentration (MIC) values from 6.25 to 50 mu M. Thus, strain KY-9 represents an untapped source for the development of biological control agents to prevent the infection of pathogenic fungus A. solani.
机译:两个生物合成有关的新的代谢产物,eucalyptacid A(1)和eucalactam B(2),具有六个已知化合物(3-8),eugenitol(3),cytosporone C(4),4-羟基苯乙醇(5),沿1- (4-羟基苯基)乙烷-1,2-二醇(6),N-(2-羟基-2-苯乙基)乙酰胺(7),和phomopene(8),从该内生真菌Diaporthe的固体稻培养物中分离eucalyptorum KY-9已被从苦楝隔离。此外,两个另外的新的衍生物(2A,2B)是从2制备的结构经NMR和ESIMS数据和化学方法的详尽的分析阐明诸如的Marfey的协议。化合物1被鉴定为一种罕见的聚酮化合物的脂肪酸,(8E)-3,5,11三羟基2,10,12-trimethyltetradecenoic酸和2被确定为包含相同的脂肪酸单元作为1中的第一环状缩肽和甘氨酸 - 甘氨酸 - 苏氨酸三肽链。其N-末端被N-酰化由11-羟基脂肪酸具有14的分支的烷基链:1。 11-羟基基团所连接的羧基基团的C-末端氨基酸,以形成一个22元内酯环。一个假想的生物合成途径的新的聚酮建议。将分离的化合物测定其对抗四种植物病原真菌,茄链格孢,灰葡萄孢,茄病镰刀菌,和赤霉saubinettii抑制。化合物1,4,6,和7表现出对番茄早疫病菌的抗真菌活性,最小抑制浓度(MIC)值从6.25至50微米M.因此,应变KY-9表示用于生物控制剂的发展,以防止一个未开发的源感染病原菌A.菌的。

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