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CHLOROPHYLL a FLUORESCENCE AS A BIOMARKER FOR RAPID TOXICITY ASSESSMENT

机译:叶绿素荧光剂作为快速毒性评估的生物标记

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Algal growth assays are the most frequently used methods to detect herbicide toxicity in environmental samples; however, these require several days to detect reductions in growth rate with adequate precision. Hence, a need exists for more rapid assays. Two in vivo chlorophyll a fluorescence assays, one using pulse-amplitude modulation (PAM) fluorescence and another based on fluorescence at 684 and 735 nm, detect the effects of photosystem (PS) II inhibitors (atrazine, diuron, and isoproturon) on Selenastrum capricornutum Printz only after 1 h and 30 min, respectively, of incubation. The median growth inhibition (IC50) could be predicted reliably from effects on three PAM parameters—maximal PSII quantum yield (m), operational quantum yield (′m), and nonphotochemical quenching—and from measurements of fluorescence at 684 and 735 nm. The effects of the PSI inhibitor paraquat dichloride, were smaller in magnitude and could be detected after a 24-h incubation. These two in vivo chlorophyll a fluorescence assays can thus provide reliable, rapid, and cost-effective tools to screen toxicity caused by PSII inhibitors. Neither of the two fluorescence assays could consistently predict the effects of nonphotosynthetic inhibitors (alachlor, metsulfuron methyl, and diclofop methyl).
机译:藻类生长测定法是检测环境样品中除草剂毒性的最常用方法。但是,这些需要几天的时间才能以足够的精度检测增长率的降低。因此,需要更快速的测定。两种体内叶绿素a荧光测定法,一种使用脉冲幅度调制(PAM)荧光,另一种基于684和735 nm的荧光,检测光系统(PS)II抑制剂(阿特拉津,敌草隆和异丙隆)对硒荚草的影响分别在孵育1小时和30分钟后才打印。可以通过对三个PAM参数的影响(最大PSII量子产率(m),操作量子产率('m)和非光化学猝灭)以及在684和735 nm处的荧光测量可靠地预测中值生长抑制(IC50)。 PSI抑制剂百草枯二氯化物的影响较小,在孵育24小时后即可检测到。因此,这两种体内叶绿素a荧光检测可以提供可靠,快速且经济高效的工具来筛选PSII抑制剂引起的毒性。两种荧光测定法均不能一致地预测非光合抑制剂(甲草胺,甲磺隆和甲基双氯芬)的作用。

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