Corn coleorhiza endogenous hormone detection technology

A technology of endogenous hormones and corn embryos, applied in the field of seed science, can solve the problems of large sample demand, low collection amount, interference and other problems

Active Publication Date: 2015-07-29
QINGDAO AGRI UNIV
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Problems solved by technology

However, the content of endogenous hormones in plants is extremely low, their properties are unstable, and they are easily interfered by other secondary metabolites. In addition, the radicle sheath tissue is very small, and the amount of collection is very small, and the extraction process of endogenous hormones in different plant samples is different. Exploring and optimizing the extraction, purification, and detection methods and processes of maize radicle endogenous hormones, and improving the detection accuracy and effect ...

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  • Corn coleorhiza endogenous hormone detection technology
  • Corn coleorhiza endogenous hormone detection technology

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Embodiment Construction

[0008] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0009] Such as figure 1 , figure 2 As shown, the present invention is based on the GC-MS internal standard method, and adopts "horizontal and vertical stripping + leaching + solid phase extraction + Agilent DB-17ms" technology combination to improve 8 kinds of endogenous hormones (GA 1 、GA 3 、GA 4 , IAA, JA, DHJA, cis-ABA and trans-ABA) detection efficiency and precision. The corn radicle sheath endogenous hormone detection process involved in the present invention includes sample collection operation, sample extraction operation, purification and enrichment operation, GC-MS / SIM detection operation, post-treatment and other processes.

[0010] The specific implementation method of the endogenous hormone detection process of corn radicle sheaths involved in the present invention is as follows.

[0011] (1) Sample collection operation: germinate c...

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Abstract

The invention relates to the field of seed science, especially to a corn coleorhiza endogenous hormone detection technology based on a GC-MS internal standard method. The technology comprises processes of sample acquisition work, sample extraction work, purification and enrichment work, GC-MS/SIM detection work, post-processing and the like. A coleorhiza tissue sample is acquired by a horizontal and vertical stripping method; 80% methanol (cold) is used for extraction, and endogenous hormone is extracted through eight steps; by the use of a Sep-Pak C18 column, sample purification and enrichment including nine steps are carried out; hormone is detected by the use of GC-MS Agilent DB-17ms; and hormone content is obtained through post-processing such as optimization of detection conditions and the like. Contents of eight endogenous hormones of corn coleorhiza are detected based on the GC-MS internal standard method, and the detection effect is enhanced by the technical combination of ''horizontal and vertical stripping+ extraction+ solid-phase extraction+ Agilent DB-17ms''. The technology can be applied in researches on the mechanism of corn seed germination.

Description

technical field [0001] The invention relates to the field of seed science, in particular to a process for detecting endogenous hormones in corn radicle sheaths. Background technique [0002] Seed germination is the growth and development stage in which the embryo recovers from a relatively static state of life activities to a vigorous physiological metabolism. The process of seed germination is accompanied by various physiological and biochemical changes, such as: cell activation and repair, embryo growth and anabolism, etc. These physiological and biochemical changes are inseparable from the participation of plant endogenous hormones. Plant endogenous hormones are trace organic substances synthesized in plants that have a significant effect on plant growth and development. They can be transferred from the site of production to the site of action, and can regulate plant growth and development at low concentrations. They are almost involved in every process of seed germinati...

Claims

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Application Information

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IPC IPC(8): G01N30/88G01N30/08
Inventor 江绪文李贺勤
Owner QINGDAO AGRI UNIV
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