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中国农学通报 ›› 2018, Vol. 34 ›› Issue (7): 31-35.doi: 10.11924/j.issn.1000-6850.casb17100013

所属专题: 生物技术

• 生物技术科学 • 上一篇    下一篇

珠子参皂苷合成途径3 个关键酶基因 CAS、DS 和β-AS 时空表达分析

黄文静,谢 培,杨 洁,蔡兴航,武 婧,孙晓春,宋忠兴,唐志书   

  1. 陕西中医药大学/陕西省中药资源产业化协同创新中心,陕西中医药大学/陕西省中药资源产业化协同创新中心,陕西中医药大学/陕西省中药资源产业化协同创新中心,陕西中医药大学/陕西省中药资源产业化协同创新中心,陕西中医药大学/陕西省中药资源产业化协同创新中心,陕西中医药大学/陕西省中药资源产业化协同创新中心,陕西中医药大学/陕西省中药资源产业化协同创新中心,陕西中医药大学/陕西省中药资源产业化协同创新中心
  • 收稿日期:2017-10-10 修回日期:2017-12-12 接受日期:2017-12-22 出版日期:2018-03-07 发布日期:2018-03-07
  • 通讯作者: 唐志书
  • 基金资助:
    陕西省社会发展科技攻关项目“陕西珍稀道地药材珠子参中皂苷合成三个关键酶基因的克隆和时空表达分析”(2015SF300);陕西省教育 厅自然科学专项项目“桔梗不同部位的化学成分及关键基因的差异表达研究”(15JK1206);陕西省中医药管理局2017-2018 年度中医药科研项目“子 洲黄芪高产、高抗逆型悬浮种衣剂的研发与应用”(ZYMS002)。

Spatiotemporal Expression Analysis of Three Key Enzyme Gene CAS, DS and β-AS in the Biosynthesis Pathway of Saponins in Panax japonicus var. major

  • Received:2017-10-10 Revised:2017-12-12 Accepted:2017-12-22 Online:2018-03-07 Published:2018-03-07

摘要: 旨在明确环阿屯醇合成酶(CAS)、达玛烯二醇合成酶(DS)和β-香树酯合成酶(β-AS)基因在珠子参中的时空表达情况及其与总皂苷含量的关系。以珠子参叶、茎、花和根状茎为材料,采用实时荧光定量技术检测了3 个酶基因在不同时期的表达情况,并分析了基因表达与总皂苷含量之间的关系。CAS、DS和β-AS均在珠子参地上部分高表达,在根状茎中低表达;5—9 月间CAS在根状茎中的表达呈现出“高—低—高”的趋势,而DS和β-AS 则表现出相反的趋势;珠子参总皂苷含量变化呈“S”型曲线,其前期含量与DS和β-AS 的表达呈正相关关系。推测珠子参皂苷最初和主要的合成部位为叶,根状茎可能是后期部分皂苷合成的场所。

Abstract: The aim is to elucidate the spatiotemporal expression of Cycloartenol synthase (CAS), Dammarenediol-Ⅱ-synthase (DS) and β-amyrine synthase (β- AS) gene and their relationship and the total saponin content of Panax japonicus var. major Leaves, stems, flowers and rhizomes of Panax japonicus var. major were used as materials, and the expressions ofCAS ,DS and β-AS in different phases were determined by real-time RT-PCR, and the relationship between gene expression and total saponin content was analyzed. CAS ,DS and β-AS were highly expressed in the overground part of Panax japonicus var. major, and were low expressed in rhizomes. The expression levels of CAS showed a tendency of high- low- high from May to September, butDS and β-AS showed the reverse trend. The change of total saponin content showed an“S” curve and it was positively correlated with the expression ofDS and β-AS at the early stage of Panax japonicus var. major. It is speculated that leaf may be the initial and primary site of saponins synthesis and rhizome may be the site of partial saponins synthesis at the later growth stage of Panax japonicus var. major.

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