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作 者:魏赛金[1,2] 杜亚楠[1] 涂晓嵘[1] 张智平[1] 潘晓华[2] 涂国全[1]
机构地区:[1]江西农业大学生物科学与工程学院,南昌市发酵应用重点实验室,江西南昌330045 [2]江西农业大学作物生理生态与遗传育种教育部重点实验室,江西南昌330045
出 处:《江西农业大学学报》2012年第6期1245-1250,1261,共7页Acta Agriculturae Universitatis Jiangxiensis
基 金:国家自然科学基金项目(30960011;31071724);江西省自然科学基金项目(2009GZN0030;2010GZN0037)
摘 要:从链霉菌702发酵液中分离得到DZP-8和DZP-9两种抗真菌活性物质单体组分,分别对其进行了理化性质及其稳定性研究。研究结果表明:DZP-8为淡黄色粉末状物质,熔点170~173.5℃;旋光度为[α]23.7D=+4.342 5°(c=1.09 in MeOH),紫外光谱表明在318,303,290 nm处有3个典型吸收峰,符合多烯类抗生素图谱特征,红外光谱表明其含有C=O、C=C、C-O、OH和CH2。化合物DZP-9,黄色无定形粉末,熔点205~207℃,[α]-177D(in MeOH);紫外光谱显示在337、340和320 nm处有最大吸收,表明其结构中存在较大共轭体系。红外光谱显示DZP-9分子中可能含有羟基(3 417、1 066、1 006 cm-1),酯键(1 723、1 172、1 137 cm-1),共轭双键(3 023、1 639、849 cm-1)。稳定性试验结果表明:DZP-8和DZP-9对热较稳定,温度超过60℃活性开始下降;在强酸强碱条件下活性不稳定,pH=5~6时活性稳定;短时间内对紫外线照射和光照具有较好的稳定性。本研究为链霉菌702所产抗真菌单体组分的开发应用提供了有益的试验数据。The physical and chemical properties and stability of antifungal component DZP-8 and DZP-9 isolated from Streptomyces 702 fermentation were determined.The results of the study on the physical and chemical properties showed that DZP-8 was light yellow amorphous powder,its melting point was 170-173.5 ℃,and its rotation was [α]23.7D=+4.342 5°(c =1.09 in MeOH).UV spectrum showed that DZP-8 had three peaks at 318 nm,303 nm,290 nm and was in accordance with the characters of tatar-alkene antibiotic.IR spectrum showed that DZP-8 contained C=O,C=C,C-O,OH and CH 2.DZP-9 was yellow amorphous powder,and its melting point was 205-207 ℃,and its rotation was [α]-177 D(in MeOH).UV spectrum showed that DZP-9 had maximum absorption at 337 nm,340 nm and 320 nm,and showed that its structure was a comparative large conjugate system.IR spectrum showed that DZP-9 may contained hydroxy(3 417,1 066,1 006 cm-1),ester bond(1 723,1 172,1 137 cm-1),and conjugated double bond(3 023,1 639,849 cm-1).The results of the test on the stability showed that DZP-8 and DZP-9 were stable to thermal,UV and light in short time,but the activity reduced over 60 ℃.Its activity was stable when pH was 5 or 6,but unstable under strong acid and strong base.The studies provided meaningful test data for the application of antifungal monomers produced by Streptomyces 702.
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