Higher plant-gamma type biological transcription factor synergist

A technology of transcription factors and higher plants, applied in fertilizer mixtures, nitrogen fertilizers, inorganic fertilizers, etc., can solve problems such as nitrogen fertilizer groundwater nitrate exceeding the standard, achieve the effect of reducing application amount, promoting sustainable agricultural development, and increasing yield

Inactive Publication Date: 2017-06-20
江苏博尔丰源农业科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The massive loss of chemical fertilizers has caused a series of serious environmental problems. In some areas of highly intensive agriculture in the north, the irrational application of nitrogen fertilizers has caused groundwater nitrate to exceed the standard, and some areas even reached 100% seriously exceeded the standard.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0013] A higher plant-γ type biological transcription factor synergist, composed of B-JTE pump factor, disease resistance factor, cell stability factor, fruit expansion factor, calcium factor, rare earth element and selenium element; the higher plant-γ type Biological transcription factor synergist is a biopolymer polymer biochemically synthesized by microbial fermentation, and it is a polymeric amino acid that can be synthesized by microorganisms;

[0014] The content of the B-JTE pump factor is 15%, the content of the disease resistance factor is 8%, the content of the cell stabilization factor is 37%, the content of the fruit expansion factor is 10%, and the content of the calcium factor is 8%. , the content of the rare earth element is 17%, the content of the selenium element is 2%, and the content of the organic peptide is 3%.

Embodiment 2

[0016] A higher plant-γ type biological transcription factor synergist, composed of B-JTE pump factor, disease resistance factor, cell stability factor, fruit expansion factor, calcium factor, rare earth element and selenium element; the higher plant-γ type Biological transcription factor synergist is a biopolymer polymer biochemically synthesized by microbial fermentation, and it is a polymeric amino acid that can be synthesized by microorganisms;

[0017] The content of the B-JTE pump factor is 20%, the content of the disease resistance factor is 5%, the content of the cell stabilization factor is 35%, the content of the fruit expansion factor is 10%, and the content of the calcium factor is 10%. , the content of the rare earth element is 15%, the content of the selenium element is 1.5%, and the content of the organic peptide is 3.5%.

Embodiment 3

[0019] A higher plant-γ type biological transcription factor synergist, composed of B-JTE pump factor, disease resistance factor, cell stability factor, fruit expansion factor, calcium factor, rare earth element and selenium element; the higher plant-γ type Biological transcription factor synergist is a biopolymer polymer biochemically synthesized by microbial fermentation, and it is a polymeric amino acid that can be synthesized by microorganisms;

[0020] The content of the B-JTE pump factor is 25%, the content of the disease resistance factor is 7%, the content of the cell stabilization factor is 38%, the content of the fruit expansion factor is 10%, and the content of the calcium factor is 5%. , the content of the rare earth element is 10%, the content of the selenium element is 2.5%, and the content of the organic peptide is 2.5%.

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PUM

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Abstract

A higher plant-gamma type biological transcription factor synergist disclosed in the invention comprises a B-JTE pump factor, a disease resistance factor, a cell stabilizing factor, a fruit expanding factor, a calcium factor, rare earth elements and a selenium element; the higher plant-gamma type biological transcription factor synergist is a biological high-molecular polymer biochemically synthesized through fermenting microbes, and is a high-molecular polymerized amino acid synthesized from the microbes; and the content of the B-JTE pump factor is 5-50%, the content of the disease resistance factor is 3-12%, the content of the cell stabilizing factor is 20-50%, the content of the fruit expanding factor is 5-15%, the content of the calcium factor content is 2-18%, the content of the rare earth elements is 2-25%, and the content of the selenium element is 1-3%. The synergist regulates the microenvironment and the structure of soil, reduces the loss of water and soil nutrients, has a sustained-release effect through the interaction of water and fertilizers, improves the utilization rate of water and the fertilizers, reduces the surface water and groundwater pollution caused by fertilizer and pesticide loss, reduces the agricultural production cost, and improves the yield and the quality of crops.

Description

technical field [0001] The invention relates to the field of agricultural chemical fertilizers, in particular to a higher plant-γ-type biological transcription factor synergist. Background technique [0002] my country is a large agricultural country, and chemical fertilizers are the material guarantee for the sustainable development of agriculture and the basis for increasing grain production. The practice of the world's agricultural development has proved that the application of chemical fertilizers is the fastest, most effective and most important measure to increase agricultural production. Since 1980, the amount of chemical fertilizers used in my country has grown at an average annual rate of 4%, which has far exceeded the international average level. At present, my country has become the world's largest producer and consumer of chemical fertilizers. Although the arable land area only accounts for 7% of the world's total arable land area, the amount of fertilizer appl...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C05G3/00C05G3/04C05G3/80
CPCC05C11/00C05G3/00C05G3/80C05D3/00C05D9/02
Inventor 邵洪
Owner 江苏博尔丰源农业科技有限公司
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