4.7 Article

Endophytic fungus Mucor circinelloides DF20 promote tanshinone biosynthesis and accumulation in Salvia miltiorrhiza root

期刊

PLANT SCIENCE
卷 307, 期 -, 页码 -

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2021.110898

关键词

Salvia miltiorrhiza Bunge; Endophytic fungi; Mucor circinelloides; Plant growth-promoting fungus (PGPF); Biosynthesis of tanshinones

资金

  1. National Natural Science Foundation of China [81773835, 81973415]
  2. Zhejiang Provincial Natural Science Foundation of China [LR21H280002]
  3. National College Students Innovation and Entrepreneurship Training Program of China [201910338030, 202010338040]

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The endophytic fungus Mucor circinelloides DF20 can significantly promote the biosynthesis and accumulation of tanshinones in the root of Salvia miltiorrhiza, especially tanshinone IIA content, which is 22 times that of the control group. DF20 hyphae mainly colonize in the root tissue interspace of S. miltiorrhiza, with some located inside the cells. DF20 colonization can increase the expression level of key enzyme genes in the tanshinone biosynthesis pathway, mainly in the early stage of co-culture.
As a traditional Chinese medicine, Salvia miltiorrhiza rhizome is mainly used to treat cardiovascular diseases. Symbiosis of endophytic fungi with their host plants, is an effectively regulatory means to promote the growth and secondary metabolism of medicinal plants. Here, an endophytic fungus Mucor circinelloides DF20 was cocultivated with the sterile seedlings of S. miltiorrhiza, to clarify the promoting mechanism on tanshinone biosynthesis and accumulation in S. miltiorrhiza root. The assay of promoting-growth activities in vitro showed that DF20 have the ability to produce IAA and siderophores. DF20 could significantly promote the biosynthesis and accumulation of tanshinones in the root of S. miltiorrhiza, especially the content of tanshinone IIA, reaching 4.630 ? 0.342 mg/g after 56 days of DF20 treatment, which is 22-fold of the control group. The result also showed that the hyphae of M. circunelloides DF20 mainly colonized in the root tissue interspace of S. miltiorrhiza, and a small amount of hyphae were located inside the cells. The results of florescent real-time quantitative RTPCR showed that DF20 colonization significantly increase the expression level of some key enzyme genes (DXS, DXR, HMGR, GGPPS) in tanshinone biosynthesis pathway, but the regulatory effect mainly occurred in the early stage of co-culture, while the expression level decreased in different degrees in the later stage. In conclusion, the endophytic fungus M. circunelloides DF20 can form an interaction relationship with its host, then to promote the biosynthesis and accumulation of tanshinones in root by upregulating the key enzyme genes expression levels of the biosynthesis pathway.

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