Exserohilum monoceras (Drechsler) Leonard and Suggs is a potential biocontrol agent for the control of Echinochloa species. This fungus causes leaf blight in Echinochloa species,but does not damage rice. Phytotoxicity...Exserohilum monoceras (Drechsler) Leonard and Suggs is a potential biocontrol agent for the control of Echinochloa species. This fungus causes leaf blight in Echinochloa species,but does not damage rice. Phytotoxicity of the fungal fermented broth was evaluated through the bioassay and the active ingredients were preliminarily isolated by using silica gel column chromatography (CC) in this study. The most active fraction 5-III was obtained and analyzed by gas chromatography-mass spectrometry (GC-MS). The results show that 5-III consisted of many compounds,in which 36 compounds accounted for 94.24% of total peak area. Di-n-butyl phthalate (DBP) displayed the highest activity accounted for 9.24% of the total peak area,suggesting that DBP may be one of the main active compounds produced by E. monoceras.展开更多
粮仓是一个复杂的生态系统,其内部生物、非生物以及环境的耦合关系复杂,且只能对温度等少数参数进行探测,粮仓生态近乎“黑箱”。为了便于研究粮仓复杂的耦合关系、核实其中的基本规律,研究提出了一种基于核磁共振(Nuclear Magnetic Res...粮仓是一个复杂的生态系统,其内部生物、非生物以及环境的耦合关系复杂,且只能对温度等少数参数进行探测,粮仓生态近乎“黑箱”。为了便于研究粮仓复杂的耦合关系、核实其中的基本规律,研究提出了一种基于核磁共振(Nuclear Magnetic Resonance,NMR)的粮仓多场耦合图形化探测系统。该系统由核磁共振成像分析仪、粮仓模拟装置和数据采集处理系统三部分组成,可同时实现粮堆温度、湿度和水分三参数的真实精准探测,并能通过配套云图生成软件直观、形象地呈现粮堆温度场、湿度场和水分场分布云图。该系统首次将低场核磁共振成像技术应用于粮堆多场耦合作用研究领域,为探明粮仓生态复杂的耦合关系,进一步证实相关理论研究结论提供了一种新的技术手段。该系统的提出有助于深化行业正在致力发展的粮堆多场耦合及生物场理论。展开更多
基金the National Natural Science Foundation of China(30671381,30671381)Guangdong Provincial Natural Science Foundation of China(06300411)for the financial supports
文摘Exserohilum monoceras (Drechsler) Leonard and Suggs is a potential biocontrol agent for the control of Echinochloa species. This fungus causes leaf blight in Echinochloa species,but does not damage rice. Phytotoxicity of the fungal fermented broth was evaluated through the bioassay and the active ingredients were preliminarily isolated by using silica gel column chromatography (CC) in this study. The most active fraction 5-III was obtained and analyzed by gas chromatography-mass spectrometry (GC-MS). The results show that 5-III consisted of many compounds,in which 36 compounds accounted for 94.24% of total peak area. Di-n-butyl phthalate (DBP) displayed the highest activity accounted for 9.24% of the total peak area,suggesting that DBP may be one of the main active compounds produced by E. monoceras.
文摘粮仓是一个复杂的生态系统,其内部生物、非生物以及环境的耦合关系复杂,且只能对温度等少数参数进行探测,粮仓生态近乎“黑箱”。为了便于研究粮仓复杂的耦合关系、核实其中的基本规律,研究提出了一种基于核磁共振(Nuclear Magnetic Resonance,NMR)的粮仓多场耦合图形化探测系统。该系统由核磁共振成像分析仪、粮仓模拟装置和数据采集处理系统三部分组成,可同时实现粮堆温度、湿度和水分三参数的真实精准探测,并能通过配套云图生成软件直观、形象地呈现粮堆温度场、湿度场和水分场分布云图。该系统首次将低场核磁共振成像技术应用于粮堆多场耦合作用研究领域,为探明粮仓生态复杂的耦合关系,进一步证实相关理论研究结论提供了一种新的技术手段。该系统的提出有助于深化行业正在致力发展的粮堆多场耦合及生物场理论。