首页> 外文期刊>Frontiers in Plant Science >Salinity Stress Is Beneficial to the Accumulation of Chlorogenic Acids in Honeysuckle ( Lonicera japonica Thunb.)
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Salinity Stress Is Beneficial to the Accumulation of Chlorogenic Acids in Honeysuckle ( Lonicera japonica Thunb.)

机译:盐分胁迫有利于金银花中的绿原酸积累( Lonicera japonica Thunb。)。

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Honeysuckle ( Lonicera japonica Thunb.) is a traditional medicinal plant in China that is particularly rich in chlorogenic acids, which are phenolic compounds with various medicinal properties. This study aimed to examine the effects of salinity stress on accumulation of chlorogenic acids in honeysuckle, through hydroponic experiments and field trials, and to examine the mechanisms underlying the effects. NaCl stress stimulated the transcription of genes encoding key enzymes in the synthesis of chlorogenic acids in leaves; accordingly, the concentrations of chlorogenic acids in leaves were significantly increased under NaCl stress, as was antioxidant activity. Specifically, the total concentration of leaf chlorogenic acids was increased by 145.74 and 50.34% after 30 days of 150 and 300 mM NaCl stress, respectively. Similarly, the concentrations of chlorogenic acids were higher in the leaves of plants in saline, compared with non-saline, plots, with increases in total concentrations of chlorogenic acids of 56.05 and 105.29% in October 2014 and 2015, respectively. Despite leaf biomass reduction, absolute amounts of chlorogenic acids per plant and phenylalanine ammonia-lyase (PAL) activity were significantly increased by soil salinity, confirming that the accumulation of chlorogenic acids in leaves was a result of stimulation of their synthesis under salinity stress. Soil salinity also led to elevated chlorogenic acid concentrations in honeysuckle flower buds, with significant increases in total chlorogenic acids concentration of 22.42 and 25.14% in May 2014 and 2015, respectively. Consistent with biomass reduction, the absolute amounts of chlorogenic acid per plant declined in flower buds of plants exposed to elevated soil salinity, with no significant change in PAL activity. Thus, salinity-induced chlorogenic acid accumulation in flower buds depended on an amplification effect of growth reduction. In conclusion, salinity stress improved the medicinal quality of honeysuckle by promoting accumulation of chlorogenic acids, however, the mechanisms underlying this process were not consistent in flower buds and leaves. Honeysuckle appears to be a promising plant for cultivation in saline land. Our study deepens knowledge of medicinal plant ecology and may provide a guide for developing saline agriculture.
机译:金银花(忍冬)是中国的传统药用植物,尤其富含绿原酸,绿原酸是具有多种药用特性的酚类化合物。这项研究旨在通过水培试验和田间试验研究盐分胁迫对金银花中绿原酸积累的影​​响,并探讨其潜在机理。 NaCl胁迫刺激了叶片中绿原酸合成过程中编码关键酶的基因的转录;因此,在NaCl胁迫下,叶片中的绿原酸浓度显着增加,抗氧化剂活性也显着增加。具体而言,在150和300 mM NaCl胁迫30天后,叶片绿原酸的总浓度分别增加了145.74和50.34%。同样,与非盐渍地相比,生理盐水中植物叶片中的绿原酸浓度更高,2014年10月和2015年的绿原酸总浓度分别增加了56.05%和105.29%。尽管叶片生物量减少,但土壤盐分显着提高了每株植物的绿原酸绝对含量和苯丙氨酸解氨酶(PAL)的活性,这证实了绿原酸在叶片中的积累是在盐分胁迫下刺激其合成的结果。土壤盐分还导致金银花花蕾中的绿原酸浓度升高,2014年5月和2015年的总绿原酸浓度分别显着增加22.42%和25.14%。与减少生物量一致,暴露于土壤盐分升高的植物的花蕾中每株植物的绿原酸绝对含量下降,而PAL活性没有明显变化。因此,盐度诱导的花蕾中绿原酸的积累取决于生长减少的放大作用。总之,盐分胁迫通过促进绿原酸的积累提高了金银花的药用质量,但是,该过程的潜在机制在花蕾和叶片中并不一致。金银花似乎是在盐碱地上种植的有前途的植物。我们的研究加深了药用植物生态学的知识,并可能为发展盐业农业提供指导。

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