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首页> 外文期刊>Biotechnology and Applied Biochemistry >Application of chitin and chitosan as elicitors of coumarins and furoquinolone alkaloids in Ruta graveolens L. (common rue)
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Application of chitin and chitosan as elicitors of coumarins and furoquinolone alkaloids in Ruta graveolens L. (common rue)

机译:甲壳素和壳聚糖作为香豆素和呋喃喹诺酮生物碱的引发剂在芸香(普通芸香)中的应用

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摘要

Common rue (Ruta graveolens L.) accumulates various types of secondary metabolites, such as coumarins furanocoumarins, acridone and quinolone alkaloids and flavonoids. Elicitation is a tool extensively used for enhancing secondary-metabolite yields. Chitin and chitosan are examples of elicitors inducing phytoalexin accumulation in plant tissue. The present paper describes the application of chitin and chitosan as potential elicitors of secondary-metabolite accumulation in R. graveolens shoots cultivated in vitro. The simple coumarins, linear furanocoumarins, dihydrofuranocoumarins and furoquinolone alkaloids biosynthesized in the presence of chitin and chitosan were isolated, separated and identified. There was a significant increase in the growth rate of R. graveolens shoots in the presence of either chitin or chitosan. Moreover, the results of the elicitation of coumarins and alkaloids accumulated by R. graveolens shoots in the presence of chitin and chitosan show that both compounds induced a significant increase in the concentrations of nearly all the metabolites. Adding 0.01% chitin caused the increase in the quantity (mu g/g dry weight) of coumarins (pinnarin up to 116.7, rutacultin up to 287.0, bergapten up to 904.3, isopimpinelin up to 490.0, psoralen up to 522.2, xanhotoxin up to 1531.5 and rutamarin up to 133.7). The higher concentration of chitosan (0.11%) induced production of simple coumarins (pinnarin up to 116.7 and rutacultin up to 287.0), furanocoumarins (bergapten up to 904.3, isopimpinelin up to 490.0, psoralen up to 522.2, xanhotoxin up to 1531.5) and dihydrofuranocoumarins (chalepin up to 18 and rutamarin up to 133.7). Such a dramatic increase in the production of nearly all metabolites suggests that these compounds may be participating in the natural resistance mechanisms of R. graveolens. The application of chitin- and chitosan-containing media may be considered a promising prospect in the biotechnological production of xanthotoxin, isopimpinelin, psoralen, chalepin or methoxylated dictamnine derivatives.
机译:普通芸香(Rutagravolens L.)会积聚各种类型的次级代谢产物,例如香豆素呋喃香豆素,cri啶酮和喹诺酮生物碱和类黄酮。激发是广泛用于提高次代谢产物产率的工具。几丁质和壳聚糖是诱导植物组织中植物抗毒素积聚的引发剂的实例。本文描述了几丁质和壳聚糖作为潜在的引发剂在体外培养的R.gravolens芽中二次代谢产物积累的应用。分离,分离和鉴定在甲壳质和壳聚糖存在下生物合成的简单香豆素,线性呋喃香豆素,二氢呋喃香豆素和呋喃喹诺酮生物碱。在甲壳质或壳聚糖的存在下,R.gravolens芽的生长速率显着增加。此外,在甲壳质和壳聚糖存在下,由R.gravolens枝条积累的香豆素和生物碱的诱导结果表明,这两种化合物都导致几乎所有代谢物的浓度均显着增加。添加0.01%几丁质会导致香豆素数量增加(μg / g干重)(品纳林最多116.7,芸苔素最多287.0,Bergapten最多904.3,异海洛因最多490.0,补骨脂素最多522.2,黄嘌呤最多1531.5和芸苔素高达133.7)。较高的壳聚糖浓度(0.11%)诱导了简单的香豆素(品纳林的含量高达116.7,芸苔素的含量高达287.0),呋喃香豆素(Bergapten的含量高达904.3,异奥比林的含量高达490.0,补骨脂素的含量高达522.2,黄嘌呤毒素的含量高达1531.5)和二氢呋喃香豆素的产生。 (最高达18的羽衣甘蓝和最高达133.7的芸香豆素)。几乎所有代谢物产量的如此急剧增加表明这些化合物可能参与了R.gravolens的天然抗性机制。含有甲壳质和壳聚糖的培养基的应用可能被认为是生物技术生产黄嘌呤毒素,异opimpinelin,补骨脂素,chalepin或甲氧基化的烟酰胺衍生物的有前途的前景。

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