Hybridization Broussonetia papyrifera seedling growing method

A technology of tree-building and seedling-raising containers, which is applied in the field of hybrid tree-growing seedlings, can solve the problems of easy vitrification of seedlings, large capital investment, and low rooting rate, and achieve the effect of slow release of sufficient nutrients and high nutrient content

Inactive Publication Date: 2017-07-14
河池乐康生态农业科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the cultivation of hybrid tree seedlings is the bottleneck that inhibits the hybrid tree industry. There are technical factors such as the difficulty of clustering buds and the easy vitrification of seedlings in the tissue culture of hybrid tree. Tissue culture requires high technology and equipment and a large amount of capital investment. Practitioners have high professional and technic

Method used

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  • Hybridization Broussonetia papyrifera seedling growing method
  • Hybridization Broussonetia papyrifera seedling growing method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0045] 1. Raw material preparation:

[0046] 1. The slow-release fertilizer is made of the following raw materials in parts by weight: 1 part of trace elements, 1 part of urea, 1 part of ammonium chloride, 0.5 part of turtle shell, 0.5 part of pig testicle, 1.5 part of white sugar, 0.5 part of coconut bark, banyan tree 0.5 parts of dead branches, 0.5 parts of lotus stems, 0.5 parts of wild pea vines, 0.5 parts of wild leeks, 0.5 parts of dead branches of acacia trees and 1.5 parts of cellulase

[0047] 2.5 parts of N-butylthiophosphoric triamide, 2.5 parts of 3-methylpyrazole, 2 parts of sodium carboxymethylcellulose, and 3 parts of cyanide;

[0048] Among them, trace elements include 1 part of boron fertilizer, 0.5 part of cobalt fertilizer, 1 part of zinc fertilizer, 1 part of copper fertilizer, 0.5 part of molybdenum fertilizer, 0.5 part of manganese fertilizer, and 0.5 part of iron fertilizer;

[0049] The raw materials of above-mentioned ratio are applied to following me...

Embodiment 2

[0076] 1. Raw material preparation:

[0077] 1. The slow-release fertilizer is made of the following raw materials in parts by weight: 5 parts of trace elements, 4 parts of urea, 3 parts of ammonium chloride, 2 parts of turtle shell, 2 parts of pig testicles, 0.5 part of white sugar, 1 part of coconut bark, banyan tree 1 part of dead branch, 2 parts of lotus stem, 1 part of wild pea vine, 1 part of wild leek, 1 part of dead branch of acacia tree and 1.5 parts of cellulase

[0078] 5 parts of N-butylthiophosphoric triamide, 5 parts of 3-methylpyrazole, 2 parts of sodium carboxymethyl cellulose, 2 parts of cyanoacrylate-acetylated hydroxypropyl cellulose, hydroxyethyl cellulose 2 parts of cellulose and 2 parts of methyl cellulose;

[0079] Among them, trace elements include 2 parts of boron fertilizer, 3 parts of cobalt fertilizer, 3 parts of zinc fertilizer, 3 parts of copper fertilizer, 3 parts of molybdenum fertilizer, 3 parts of manganese fertilizer and 3 parts of iron fertil...

Embodiment 3

[0107] 1. Raw material preparation:

[0108] 1. The slow-release fertilizer is made of the following raw materials in parts by weight: 3 parts of trace elements, 2 parts of urea, 2 parts of ammonium chloride, 1.5 parts of turtle shell, 1.5 parts of pig testicles, 1 part of white sugar, 1 part of coconut bark, banyan tree 1.5 parts of dead branches, 1 part of lotus stem, 1.5 parts of wild pea vine, 1 part of wild leek, 1 part of dead branches of acacia tree and 1.5 parts of cellulase

[0109] N-butyl thiophosphoric triamide 4 parts, 3-methylpyrazole 5 parts, cyanoacrylate-acetylated hydroxypropyl cellulose 2 parts, hydroxyethyl cellulose 2 parts and methyl cellulose 2 parts share;

[0110] Among them, trace elements include 0.5 part of boron fertilizer, 1 part of cobalt fertilizer, 0.5 part of zinc fertilizer, 0.5 part of copper fertilizer, 0.5 part of molybdenum fertilizer, 1 part of manganese fertilizer and 1 part of iron fertilizer;

[0111] The raw materials of above-ment...

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Abstract

The invention belongs to the agriculture plantation technical field, and discloses a hybridization Broussonetia papyrifera seedling growing method comprising the following steps: 1, matrix disinfection: loading the matrix into a seedling growing container, using 75% quality concentration alcohol to disinfect the matrix, using the quality concentration 3% limewash to disinfect the matrix, using a film to cover the matrix for preparation; the matrix is formed by mixing the following raw materials by weight parts: slow release fertilizer 10-15 parts, activation rock phosphate 8-12 parts, medium sand 5-10 parts, husk 5-10 parts, humus soil 3-8 parts, diatomite 3-5 parts, earthworm powder 3-8 parts, rock wool 3-5 parts, chitosan 3-5 parts, and puffed chicken manure 3-5 parts; 2, cutting branch selection and processing; 3, cutting; 4, cutting anaphase management. The seedling growing stock obtained by the method is high in survival rate, and the seed selection breeding Broussonetia papyrifera is suitable to promote and plant in rocky regions in our nation.

Description

technical field [0001] The invention belongs to the technical field of agricultural planting, and in particular relates to a method for raising seedlings of hybrid mulberry trees. Background technique [0002] The mulberry tree is a unique fiber-containing tree species in my country. It is a special economic forest. Its bast fiber infusion is extremely valuable, and it is resistant to drought and barrenness. It is a more suitable tree species for barren hills and rocky desertification. . The leaves of paper mulberry contain very high protein, about 20-30%, much higher than that of corn, wheat, amino acids, vitamins, and carbohydrates. They are used for livestock feed, and bark and rods are used for papermaking. As the country proposes paper mulberry Priority requirements for poverty alleviation industries. Hybrid mulberry is a fast-growing and high-yield tree species with excellent stress resistance that has been artificially cultivated through genetic improvement. It can mee...

Claims

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Application Information

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IPC IPC(8): A01G9/10C05G3/00C05G3/04C05G5/00C05G3/80
CPCA01G9/0299C05B17/00C05C3/00C05G3/00C05G3/80C05G5/12C05G5/30C05C9/00C05D9/02C05F1/00C05F1/005C05F11/00C05D9/00C05F3/00C05F5/002C05F11/02
Inventor 陈婉霞罗墩唐庆乐
Owner 河池乐康生态农业科技有限公司
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