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Molecular marker evaluation method for wild training panda immune adaptation

A technology of immune adaptation and molecular markers, applied in biochemical equipment and methods, microbiological determination/testing, DNA/RNA fragments, etc., can solve the lack of training on giant panda immune characteristics, lack of monitoring means and evaluation methods, and the results of reactions Lag and other problems, to achieve the effect of enriching routine physical examination indicators, fast experimentation, and reliable results

Active Publication Date: 2021-04-30
CHINA CONSERVATION & RES CENT FOR THE GIANT PANDA SICHUAN
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, due to the lack of basic information on the immune characteristics of training giant pandas, the lack of monitoring methods and evaluation methods, it is impossible to evaluate and dynamically monitor the immune health of training giant pandas
Although giant pandas undergoing wild training also have regular physical examinations, routine physical examinations not only have few indicators, but also lag behind in response results, which cannot reflect the immune status of individuals in a timely, accurate and comprehensive manner. State and its dynamic changes

Method used

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  • Molecular marker evaluation method for wild training panda immune adaptation
  • Molecular marker evaluation method for wild training panda immune adaptation
  • Molecular marker evaluation method for wild training panda immune adaptation

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Embodiment 1

[0044] A molecular marker evaluation method for the immune adaptation of wild trained giant pandas, using the innate and adaptive immune genes that are significantly differentially expressed between well-adapted wild trained giant pandas and captive giant pandas as markers, through real-time fluorescent quantitative PCR , to perform quantitative detection of the Marker in the sample to be tested.

Embodiment 2

[0046] This embodiment is on the basis of embodiment 1:

[0047] Special primers used in PCR amplification:

[0048] Marker1: forward primer 5'-GTGCAAGGGGACAGACGAAC-3'

[0049] Reverse primer 5'-CTTGAGTGTTTGCAGCCTTGGA-3';

[0050] Marker2: forward primer 5'-GATAGACCCACGACTGCACC-3'

[0051] Reverse primer 5'-GGTCTCGCCTCTTTCACAGG-3';

[0052]Marker3: forward primer 5'-CTGGCTGTTGCTCTCTTGGC-3'

[0053] Reverse primer 5'-ATGGTTTCTGTTTCTCAGCCCTCTT-3';

[0054] Marker4: Forward primer 5'-GAAGGTAAAAGTCGGGCCTGG-3'

[0055] Reverse primer 5'-GGCAGTTTTCTGCAGCTACTGTATG-3'

[0056] Marker5: forward primer 5'-CTACGACACGTCCACCGACA-3'

[0057] Reverse primer 5'-CCAAAGCCGCTGTTCTGGATG-3';

[0058] Marker6: Forward primer 5'-CGAGTCACCTACCAGGGCTA-3'

[0059] Reverse primer 5'-TCCGTGAACTCTGACTCCGT-3'.

Embodiment 3

[0061] This embodiment is on the basis of embodiment 1:

[0062] The primers of the internal reference gene amplified by real-time fluorescent quantitative PCR are:

[0063] Forward primer 5'-GGTATGACAACGAATTTGGCTACA-3'

[0064] Reverse primer 5'-GATGGAAACAGTGGAGGTCAGGA-3'.

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Abstract

The invention provides a molecular marker evaluation method for wild training panda immune adaptation. The method comprises the following steps of: performing quantitative detection on Marker in a to-be-detected sample through real-time fluorescent quantitative PCR by using congenital immune and adaptive immune genes with remarkable differential expression between wild training pandas and captive pandas with good adaptation as Marker, and evaluating the immune adaptation condition of the wild training panda in the training period from the molecular biology level.

Description

technical field [0001] The invention relates to a method for evaluating the immune adaptation of giant pandas trained in the wild, in particular to a molecular marker evaluation method for the immune adaptation of wild trained giant pandas. Background technique [0002] The giant panda (Ailuropoda melanoleuca) is a rare and protected animal in China, and it is also the flagship species of biodiversity conservation in the world. As the time for captive giant pandas to be released into the wild gradually matures, rewilding training and reintroduction work has been put on the agenda. According to past experience, the survival rate of captive large mammals directly released into the wild is low. Reintroduced animals should undergo necessary wild training before release to restore their ability to adapt to the wild environment. The China Conservation and Research Center for the Giant Panda has officially started the wild training and reintroduction project of captive giant pand...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C12Q1/6888C12Q1/686C12N15/11
CPCC12Q1/6888C12Q1/686C12Q2600/124C12Q2600/156C12Q2561/113C12Q2563/107C12Q2545/114
Inventor 黄炎杨苗凌珊珊沈海波吴虹林何鸣张修月
Owner CHINA CONSERVATION & RES CENT FOR THE GIANT PANDA SICHUAN
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