Method for hydroponic breeding of huperzine serrate and induced improvement to huperzine a of huperzine serrate

A technology of huperzine A and melaleuca tower is applied in the field of medicinal plant reproduction and secondary metabolite production increase, which can solve the problems of low activity, slow growth, limited wild resources and the like, so as to improve the content of huperzine A and alleviate The effect of shortage of resources and broad application prospects

Inactive Publication Date: 2014-01-22
CHANGSHA HUIRI BIOLOGICAL TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Due to the special molecular structure of huperzine A itself, its chemical synthesis steps are cumbersome, costly, and low in activity, so it does not have the value of large-scale commercial production
Although people have made beneficial explorations on alternative resources such as the search for related plants of Melaleuca, spore propagation, artificial cultivation, tissue culture, and endophytic fungal fermentation, but with little success, it is basically in the initial stage of research and development
Therefore, the raw materials required for huperzine A preparations completely depend on the extraction of natural resources of Melaleuca,

Method used

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  • Method for hydroponic breeding of huperzine serrate and induced improvement to huperzine a of huperzine serrate
  • Method for hydroponic breeding of huperzine serrate and induced improvement to huperzine a of huperzine serrate
  • Method for hydroponic breeding of huperzine serrate and induced improvement to huperzine a of huperzine serrate

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Embodiment 1

[0026] Embodiment one: the hydroponic propagation of Melaleuca tower

[0027] This embodiment includes the following steps.

[0028] ①Selection of seedlings: Select wild 2-5-year-old Melaleuca seedlings (excavated from Xuefeng Mountain, Hongjiang, Hunan) with well-developed root system, green leaves, and good growth conditions, and cultivate them in the greenhouse for one week with original soil.

[0029]② Production and pretreatment of cuttings: Remove the soil from the seedlings cultivated in the greenhouse and wash them with clean water. Put the whole plant in 0.05wt% potassium permanganate solution for disinfection for 10 minutes, and then rinse with clean water 6 times. Dry the washed seedlings in open water, cut 4-5cm branches with stem tips from the top as cuttings, cut the incision into a wedge shape, remove the excess leaves at the base, and fix them in the planting cup with clay granules. Plant a plant in the hole, and then insert the planting cup into the planting ...

Embodiment 2

[0035] Embodiment two: the induction of huperzine A content improves

[0036] When the root system of cuttings was fully developed in the embodiment one, choose 70 leaves emerald green, good growth state plants, spray the salicylic acid of 8mg / L to the leaf surface every day in 15 days before harvest, cultivation and detection method are with embodiment one ④ ⑤. The elicitor effect had no significant effect on plant survival and other physiological functions. According to HPLC analysis, the content of huperzine A in the hydroponic plants treated with salicylic acid spraying reached 0.040%, which was about 92% higher than that of unsprayed huperzine A, see Figure 4 .

Embodiment 3

[0037] Embodiment three: the induction of huperzine A content improves

[0038] When the root system of cuttings was fully developed in embodiment one, choose 70 leaves emerald green, plants in good growth state to spray 4mg / L lanthanum nitrate rare earth compound to the root every day in the first 10 days of detection, and the cultivation and detection methods were the same as in embodiment one ④⑤. The treatment of lanthanum nitrate had no significant effect on the survival and other physiological functions of the plants. According to HPLC analysis, the content of huperzine A in the hydroponic plants sprayed with lanthanum nitrate reached 0.048%, which was about 1.3 times higher than that of unsprayed huperzine A, see Figure 5 .

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Abstract

The invention discloses a method for hydroponic breeding of huperzine serrate and induced improvement to huperzine a of the huperzine serrate. According to the method, wild naturalized huperzine-serrate branches with stem tips are used as cuttings, and rapid hydroponic breeding of the huperzine serrate is achieved in a nutrient solution containing hormones and precursor substances with a certain ratio; compared with conventional soil cutting, the method realizes that rooting time is short, the breeding coefficient is large, and the rooting percentage is as high as 98%. The precursor substances enable the huperzine a content of the hydroponic huperzine serrate to be increased by 70% compared with wild plants; the leaf surfaces or/and the roots of the plants are sprinkled with elicitors in a certain concentration, so that a secondary metabolism system of the huperzine serrate is regulated, the huperzine a content of the hydroponic huperzine serrate is increased 1.3-1.6 times, the yield of the huperzine a is increased, and the situation of shortage of huperzine-serrate resources is alleviated to a certain degree. Besides, the method achieves low production cost and a short cultivation period, is not restricted by the natural environment and climate, and has broad application prospects and high popularization value.

Description

technical field [0001] The invention relates to a method for increasing the production of medicinal plants and their secondary metabolites, in particular to the rapid propagation of the hydroponic Melaleuca tower and the induced increase of the content of huperzine A. Background technique [0002] Melaleuca, also known as Huperzia serrata, is a precious medicinal fern of the genus Huperzia, and the secondary metabolite contained in it-Huperzine A has been proved to be a highly efficient, low-toxic, reversible and highly selective acetylcholinesterase inhibitors. At present, huperzine A preparations have been listed as the first choice drug for the treatment of senile dementia at home and abroad for clinical and research purposes. [0003] Due to the special molecular structure of huperzine A, its chemical synthesis steps are cumbersome, costly, and low in activity, so it does not have the value of large-scale commercial production. Although people have made beneficial expl...

Claims

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Application Information

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IPC IPC(8): A01G31/00
Inventor 曹德华皮剑波唐爱铭伍耀先
Owner CHANGSHA HUIRI BIOLOGICAL TECH
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