Plant propagation method

A plant and composite technology, applied in the field of garden plants, can solve the problems of inability to cut and dry materials, invalid input, and large differences in seedling growth.

Inactive Publication Date: 2020-06-16
BEIJING FORESTRY UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the invention classifies the mother seedlings after the seedlings are raised, the seedlings germinated from the seeds have a large difference in growth. After classification, some materials with weaker growth will not be able to be cut off, resulting in ineffective investment in the early stage. There are certain limitations in use

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0124] Embodiment 1 preparation rooting-sprouting promoting compound

[0125] 1. Prepare rooting-sprouting-promoting compound A

[0126] Take an appropriate amount of lanolin, place it in a beaker, heat and melt it into a liquid state, add 6-BA, IBA, and IAA, stir and mix evenly, and make rooting-sprouting-promoting compound A, wherein the 6-BA in compound A The concentration is 10-30mg / L; the concentration of IBA is 50-150mg / L; the concentration of IAA is 50-120mg / L.

[0127] Take 20mg / L 6-BA+100mg / L IBA+90mg / LIAA in the rooting-stimulating compound A in the embodiment of the present invention, and lanolin is mixed as an example to illustrate, and the concentration of 6-BA in the compound A is 10-30mg / L; the concentration of IBA is 50-150mg / L; the concentration of IAA is 50-120mg / L and is applicable to the present invention;

[0128] 2. Prepare rooting-sprouting-promoting compound B

[0129] Take an appropriate amount of lanolin, put it in a beaker, heat and melt it into a...

Embodiment 2

[0143] The selection of embodiment 2 plant, root system and the selection and pre-treatment of rooting-promoting germination treatment site

[0144] From the end of October to the beginning of November in 2018 and from the end of March to the beginning of April in 2019, the technical scheme of the present invention was implemented in the black locust forest of Mijiabao Nursery in Yanqing District, Beijing, respectively, and the effects of different treatment times on germination promotion were compared.

[0145] Choose a site with a flat slope and good soil conditions; choose a robust and well-growing black locust mother plant for seedling breeding and propagation. A diagram of the root system of a plant figure 1 As shown, 2 is a plant.

[0146] 1. Root selection and pretreatment

[0147] 1A) At the same site, select three Robinia pseudoacacia individual A strains, B strains, and C strains with three times the height of the tree (the purpose is to make the three mother plant...

Embodiment 3

[0153] Embodiment 3 plant rooting-hormone treatment of germination promoting treatment site

[0154] To the primary root, secondary root and fine root of A plant in embodiment 2, do not carry out physical incision treatment, only carry out hormone treatment to rooting-product treatment site; Wherein:

[0155] Dip the prepared paste-like rooting-sprouting compound with a brush, and apply it around the root system on the rooting-sprouting treatment site of the primary root and secondary root of the plant, and apply it around the root system, the rooting-sprouting compound Wrap root rooting-promoting germination treatment point, the width of the smear area is advisable with 5cm long (usually 3-8cm, namely the smear length along the length direction of root is 3-8cm, preferably 5cm), smear thickness (i.e. The thickness of the rooting-germination-promoting compound) is 1-2mm (usually 0.5-4mm), spread evenly, and then wrap it with water moss;

[0156] Soak the fine root rooting-ger...

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Abstract

The invention discloses a plant propagation method. The plant propagation method comprises the steps of selecting a rooting-germination accelerating treatment site on a non-isolated root system of a plant, and then carrying out cutting treatment or / and hormone treatment on the rooting-germination accelerating treatment site. According to the plant propagation method, the non-isolated root system is used as a material for propagation, and a large number of young individuals with the same genotype as mother plants can be obtained; moreover, the method is low in cost and easy to operate, a physical and chemical combined method is adopted, propagated individuals share mother plant root systems to absorb nutrients, the survival rate is high, plants are robust, management is almost not needed before transplanting, newly-grown seedlings have independent root systems, the mother plant root systems do not need to be cut off during transplanting, the influence of conventional root cutting on themother plants is avoided, and the problem that tender individuals with the same genotype as the mother plants are difficult to quickly obtain in scientific research and production is solved.

Description

technical field [0001] The invention relates to a method for asexual propagation of plants, in particular to a method for asexual propagation of shallow-rooted plants, and belongs to the field of garden plants. Background technique [0002] The germination promotion of trees is widely used in the construction of ear picking gardens and rapid vegetative propagation. At present, asexual reproduction methods such as tissue culture, grafting, root cuttings and cuttings are mostly used in seedling cultivation and plantation. Although the purpose of rapid reproduction can be achieved, there are respective limitations in the above several methods. Tissue culture has high requirements on the operating environment and the quality of operators, and the initial investment is large. The survival rate is difficult to guarantee. Different breeding materials need a corresponding set of breeding systems, and it is difficult to directly promote and utilize them in production. Grafting and ...

Claims

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Application Information

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IPC IPC(8): A01G2/00A01G7/06A01N43/90A01N43/38A01N43/12A01N45/00A01N61/00A01P21/00
CPCA01G7/06A01N43/12A01N43/38A01N43/90A01N45/00A01N61/00A01G2/00
Inventor 李云张子杰孙宇涵董黎韩超王少明李艳星郭文斌
Owner BEIJING FORESTRY UNIVERSITY
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