首页> 外文期刊>Environmental microbiology >A pair of chiral flavonolignans as novel anti-cyanobacterial allelochemicals derived from barley straw (Hordeum vulgare): characterization and comparison of their anti-cyanobacterial activities
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A pair of chiral flavonolignans as novel anti-cyanobacterial allelochemicals derived from barley straw (Hordeum vulgare): characterization and comparison of their anti-cyanobacterial activities

机译:一对从大麦秸秆(大麦)衍生的新型抗蓝藻化感剂的手性黄酮木素:表征和它们的抗蓝藻活性比较

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The inhibitory effect of barley straw (Hordeum vulgare) on cyanobacteria has been observed in many field and laboratory studies for over 30 years, although the compounds responsible for this anti-cyanobacterial effect have remained unknown. In this study, a pair of chiral flavonolignans were isolated from barley straw extract using a bioassay-guided isolation procedure against Microcystis sp. The structures of the allelopathic compounds were elucidated by NMR (nuclear magnetic resonance) and HPLC-MS (high performance liquid chromatography-mass spectrometry), and turned out to be salcolin A and B. The enantiomers differ in their anti-cyanobacterial abilities. Both enantiomers exhibited inhibitory effects on Microcystis sp., and the EC_(50) (concentration for 50% of maximal effect) of salcolinAandBwere 6.02 × 10~(?5) and 9.60 × 10~(?5) mol l~(?1), respectively. Furthermore, the modes of actions of the enantiomers were investigated and compared at a single cell level by flow cytometry. Salcolin A was found to induce an increase on cyanobacterial intracellular ROS (reactive oxygen species) levels and to inhibit esterase activity, whereas salcolin B caused leakages of cyanobacterial cytoplasms. Thus, salcolinAwas more 'algistatic', and salcolin B was more 'algicidal'. This study suggests that salcolin is the key allelochemical in barley straw's inhibitory effect on cyanobacteria and could be used as an agent in the future control of cyanobacterial harmful algae blooms.
机译:大麦秸秆(Hordeum vulgare)对蓝细菌的抑制作用已在许多领域和实验室研究中进行了30多年,尽管仍不清楚引起这种抗蓝细菌作用的化合物。在这项研究中,使用针对微囊藻的生物测定指导的分离程序从大麦秸秆提取物中分离出一对手性黄酮木聚糖。通过NMR(核磁共振)和HPLC-MS(高效液相色谱-质谱)阐明了化感化合物的结构,结果证明它们是Salcolin A和B。对映异构体的抗蓝细菌能力不同。两种对映异构体均对微囊藻具有抑制作用,而salcolinA和B的EC_(50)(最大作用浓度的50%)分别为6.02×10〜(?5)和9.60×10〜(?5)mol l〜(?1)。 ), 分别。此外,通过流式细胞术在单个细胞水平上研究和比较了对映体的作用方式。发现Salcolin A诱导蓝细菌细胞内ROS(活性氧)水平增加并抑制酯酶活性,而Salcolin B导致蓝细菌细胞质泄漏。因此,salcolinA更具有“镇静作用”,而salcolin B更具有“镇痛作用”。这项研究表明,salcolin是大麦草对蓝藻的抑制作用中的关键化感化学物质,可以用作将来控制蓝藻有害藻华的试剂。

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