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Chitosan promoting formononetin and calycosin accumulation in Astragalus membranaceus hairy root cultures via mitogen-activated protein kinase signaling cascades

机译:壳聚糖通过有丝分裂原激活的蛋白激酶信号级联反应促进黄芪毛状根培养物中的formononetin和calycosin积累

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摘要

Chitosan, behaving as a potent biotic elicitor, can induce plant defense response with the consequent enhancement in phytoalexin accumulation. Accordingly, chitosan elicitation was conducted to promote the production of two phytoalexins, i.e. formononetin and calycosin (also known as health-promoting isoflavones), in Astragalus membranaceus hairy root cultures (AMHRCs). Compared with control, 12.45- and 6.17-fold increases in the yields of formononetin (764.19 ± 50.81 μg/g DW) and calycosin (611.53 ± 42.22 μg/g DW) were obtained in 34 day-old AMHRCs treated by 100 mg/L of chitosan for 24 h, respectively. Moreover, chitosan elicitation could cause oxidative burst that would induce the expression of genes (MPK3 and MPK6) related to mitogen-activated protein kinase signaling (MAPK) cascades, which contributed to the transcriptional activation of pathogenesis-related genes (β-1,3-glucanase, Chitinase, and PR-1) and eight biosynthesis genes involved in the calycosin and formononetin pathway. Overall, the findings in this work not only highlight a feasible chitosan elicitation practice to enhance the in vitro production of two bioactive isoflavones for nutraceutical and food applications, but also contribute to understanding the phytoalexin biosynthesis in response to chitosan elicitation.
机译:壳聚糖作为一种有效的生物激发剂,可以诱导植物防御反应,从而增强植物抗毒素的积累。因此,在黄芪毛状根培养物中(AMHRC)进行壳聚糖激发以促进两种植物抗毒素的产生,即formononetin和calycosin(也称为促进健康的异黄酮)。与100 mg / L处理的34日龄AMHRCs相比,甲酸单粘菌素(764.19±±50.81μg/ g DW)和花胶苷(611.53±±42.22μg/ g DW)的产量与对照相比分别提高了12.45和6.17倍。分别为24 forh的壳聚糖。此外,壳聚糖的诱导可能引起氧化爆发,从而诱导与有丝分裂原激活的蛋白激酶信号转导(MAPK)级联相关的基因(MPK3和MPK6)的表达,从而促进了发病相关基因(β-1,3)的转录激活。 -葡聚糖酶,几丁质酶和PR-1)以及参与calycosin和formononetin途径的8个生物合成基因。总体而言,这项工作中的发现不仅突出了可行的壳聚糖诱导实践,以增强两种生物活性异黄酮在营养保健品和食品应用中的体外生产,而且有助于理解响应壳聚糖的植物抗毒素新生物合成。

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