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Direct Optical Resolution of Chiral Pesticides by High Performance Liquid Chromatography 被引量:1
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作者 LI Xiaogang LIU Yiping +3 位作者 HU Changdi BAI Lianyang gao bida HUANG Kelong 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第4期603-609,共7页
Enantiomer separation is one of the most important prerequisites for the investigation of environmental enantioselective behavior for chiral pesticides.The enantiomeric separation of three chiral pesticides,indoxacarb... Enantiomer separation is one of the most important prerequisites for the investigation of environmental enantioselective behavior for chiral pesticides.The enantiomeric separation of three chiral pesticides,indoxacarb,lambda-cyhalothrin,and simeconazole,were studied on cellulose tris-(3,5-dimethylphenyl-carbamate)-coated chiral stationary phase(CDMPC-CSP) using high-performance liquid chromatography under normal phase condition.The effects of chromatographic conditions,such as the mobile phase composition including the concentration and type of alcohol modifiers in hexane,flow rate and column temperature,on enantiomer separation were examined.The thermodynamical mechanism of enantioseparation and chiral recognition mechanism were discussed.Better separation were achieved using 20% n-propanol for indoxacarb,2% iso-butanol for lambda-cyhalothrin,and 20% iso-propanol for simeconazole as modifiers in hexane at 25℃ with the selectivity factor(a) of 1.69,1.82 and 1.70,respectively.The resolution factor(Rs) decreased as the flow rate increased from 0.4 to 1.1 ml·min-1.The retention factor(k') and selectivity factor for the enantiomers of analytes decreased as temperature increased.The lna-1/T plots for racemic chiral pesticides were linear in the range of 15-35℃ in hexane/iso-propanol and the chiral separation was controlled by enthalpy.Hydrogen bonding,π-π and dipole-dipole interactions between enantiomers and CDMPC-CSP play an important role in chiral identification,and the fitting of the asymmetric portion of solutes in a chiral cavity or channel of the CSP is also important. 展开更多
关键词 chiral resolution high-performance liquid chromatography INDOXACARB LAMBDA-CYHALOTHRIN simeconazole thermodynamical mechanism
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黄花菜叶斑病菌鉴定、生物学特性分析、防治药剂筛选及LAMP检测体系的建立 被引量:9
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作者 朱俊子 邱泽澜 +2 位作者 高必达 钟杰 李晓刚 《植物保护学报》 CAS CSCD 北大核心 2022年第6期1631-1641,共11页
为明确浙江省黄花菜叶斑病病原菌的种类,探究其对杀菌剂的敏感性并建立快捷检测方法,采用组织分离法获得黄花菜叶斑病菌,通过形态学特征观察和分子生物学技术对病原菌进行鉴定,测定其致病力及生物学特性,分析6种杀菌剂对病原菌的生长抑... 为明确浙江省黄花菜叶斑病病原菌的种类,探究其对杀菌剂的敏感性并建立快捷检测方法,采用组织分离法获得黄花菜叶斑病菌,通过形态学特征观察和分子生物学技术对病原菌进行鉴定,测定其致病力及生物学特性,分析6种杀菌剂对病原菌的生长抑制效果,并以ITS和EF-1α序列为靶标设计特异性引物建立环介导等温扩增(loop-mediated isothermal amplification,LAMP)检测方法。结果表明,根据形态学特征以及ITS与EF-1α序列分析结果确定黄花菜叶斑病菌为杏黄镰孢Fusarium armeniacum。该病原菌菌丝生长适宜温度为20~30℃,pH 7时菌丝生长最快,以葡萄糖为碳源、硝酸钠为氮源时利用率最高。96%己唑醇对菌丝生长的抑制作用最强,EC50为0.119μg/mL。本研究所建立的LAMP体系在60℃条件下反应60 min,琼脂糖凝胶电泳和SYBR Green I染料染色均可判断检测结果。该方法可特异性地检测出杏黄镰孢,最低检测灵敏度为100 pg/μL,是常规PCR检测灵敏度的10倍。表明本研究所建立的LAMP检测体系可快速检测出人工接种和实际发病黄花菜叶片中的病原菌。 展开更多
关键词 杏黄镰孢 黄花菜 叶斑病 分子鉴定 生物学特性 抑制效果 LAMP体系
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