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首页> 外文期刊>American Journal of Plant Sciences >Molecular Regulation of the Metabolic Pathways of the Medicinal Plants: Phyla dulcis
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Molecular Regulation of the Metabolic Pathways of the Medicinal Plants: Phyla dulcis

机译:药用植物代谢途径的分子调控:Phyla dulcis

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摘要

Phyla (Lippia) dulcis contains hernundulcin sesquiterpene zero-caloric sweetener that is about a thousand times sweeter than sucrose, and also bitter constituents including camphor and limonene. There is yet no simple method to remove the undesirable constituents. The yield of sweetener hernundulcin is very low, and there is no simple method to maximize its composition. The aim of the project was to characterize the mRNA targets that regulate the primary and terpenoid metabolic enzymes of P. dulcis. Restriction fragment differential display polymerase chain reaction of P. dulcis glutamate dehydrogenase-synthesized RNA showed that many mRNAs encoding β-caryophyllene, (+)-epi-α-bisabolol, bicyclogermacrene, bifunctional sesquiterpene, and geraniol synthases shared sequence homologies with ribulose-1,5-bisphophatase carboxylase, granule-bound starch synthase, pyruvate kinase, glucose-6-phosphate dehydrogenase, and phosphoenol pyruvate carboxylase. Sequence similarities between mRNAs encoding primary metabolic enzymes and terpene synthases suggested that photosynthesis could regulate terpenoid metabolism in order to increase the yield of sweetener hernundulcin.
机译:Phyla(Lippia)dulcis含有Hernundulcin倍半萜烯的零热量甜味剂,其甜度是蔗糖的一千倍,还含有苦味成分,包括樟脑和柠檬烯。还没有简单的方法来去除不希望的成分。甜味剂hernundulcin的收率非常低,没有简单的方法可以使其组成最大化。该项目的目的是表征调节P. dulcis初级和萜类代谢酶的mRNA靶标。谷氨酸棒杆菌脱氢酶合成的RNA的限制性片段差异显示聚合酶链反应显示,许多编码β-石竹烯,(+)-上-α-双沙酚醇,双环锗烯,双功能倍半萜烯和香叶醇合酶的mRNA与核糖1共享序列同源性。 ,5-双磷酸酶羧化酶,颗粒结合淀粉合酶,丙酮酸激酶,葡萄糖-6-磷酸脱氢酶和磷酸烯醇丙酮酸羧化酶。编码初级代谢酶和萜烯合成酶的mRNA之间的序列相似性表明,光合作用可以调节萜类化合物的代谢,以增加甜味剂hernundulcin的产量。

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