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Glucosinolate content and isothiocyanate evolution - Two measures of thebiofumigation potential of plants

机译:芥子油苷含量和异硫氰酸盐生成-植物生物熏蒸潜力的两种量度

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A total of 570 lyophilised Brassica root and shoot tissue samples were hydrolyzed, and the liberated isothiocyanates (ITCs) were analyzed by gas chromatography-flame photometric detection (GC-FPD). Glucosinolates (GSLs) were extracted from samples of the same tissues and analyzed by highperformance liquid chromatography (HPLC). The concentrations of six GSLs/ITCs (2-propenyl, 3-butyl, 4-pentenyl, benzyl, 4-methylthiobutyl, and 2-phenylethyl) as determined by the two techniques were compared. In 79% of the samples, the concentration of GSLs in the tissues was greater than that of the ITCs released on hydrolysis. Several possible reasons for the difference are proposed, including the effect of tissue storage time, hydrolysis of GSLs may be less efficient than the GSL extraction procedure, or some of the ITCs formed reacted with plant proteins and amino acids in the sample and were therefore not detected in the extract. GSL concentration in plant tissues is used to estimate the biofumigation potential of the plant tissue, whereas the actual biofumigation effect is thought to be due to the ITCs formed by hydrolysis of the plant-based GSLs. The variation between ITC and GSL values therefore has implications for the assessment of the biofumigation potential of the plant tissue.
机译:水解了总共570个冻干的芸苔根和芽组织样品,并通过气相色谱-火焰光度检测(GC-FPD)分析了释放的异硫氰酸盐(ITC)。从相同组织的样品中提取芥子油苷(GSL),并通过高效液相色谱(HPLC)进行分析。比较了通过两种技术测定的六个GSL / ITC(2-丙烯基,3-丁基,4-戊烯基,苄基,4-甲硫基丁基和2-苯乙基)的浓度。在79%的样品中,组织中GSL的浓度大于水解时释放的ITC的浓度。提出了造成这种差异的几种可能原因,包括组织储存时间的影响,GSL的水解可能不如GSL提取程序有效,或者形成的一些ITC与样品中的植物蛋白和氨基酸反应,因此没有在提取物中检测到。植物组织中GSL的浓度用于估算植物组织的生物熏蒸潜力,而实际的生物熏蒸效果被认为是由于基于植物的GSL水解形成的ITC所致。因此,ITC和GSL值之间的变化对于评估植物组织的生物熏蒸潜力具有重要意义。

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