Difference between revisions of "Canis lupus familiaris"
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|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/928124129/ '''XM_533568'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/928124129/ '''XM_533568'''] | ||
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− | * F: | + | * F:GGATGACCGAGTGGGAGA |
* R: TGCAATGTA/GTCCTGCAAAGA | * R: TGCAATGTA/GTCCTGCAAAGA | ||
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* F:AGGTCATTTCTTCCGCCAA | * F:AGGTCATTTCTTCCGCCAA | ||
− | * R: | + | * R: AGGATGCTCCACAGGATTCA |
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|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/XM_844472.1 '''XM_844472'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/XM_844472.1 '''XM_844472'''] | ||
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− | * F: | + | * F:ATCGCTGGTTGGCTCAGTAG |
* R:AGAGAGAGGCAGAGACGGTG | * R:AGAGAGAGGCAGAGACGGTG | ||
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|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001003142.1 '''NM_001003142'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/NM_001003142.1 '''NM_001003142'''] | ||
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− | * F: | + | * F:CACAGTCAAGGCTGAGAACG |
* R:CACCAGCATCACCCCATTT | * R:CACCAGCATCACCCCATTT | ||
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|align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/XM_846915.1 '''XM_846915'''] | |align="center"| [https://www.ncbi.nlm.nih.gov/nuccore/XM_846915.1 '''XM_846915'''] | ||
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− | * F: | + | * F: GATCCCTCATGATGCAGACTC |
− | * R: | + | * R: GGCACAGGGACCTGATAAAA |
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* F:AGGTTGTAGTCGTGCGCTGT | * F:AGGTTGTAGTCGTGCGCTGT | ||
− | * R: | + | * R: CATGCCTCTAACTGTCCGC |
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Revision as of 02:04, 15 August 2017
Contents
Description
- Canis lupus familiaris, as a member of genus Canis (canines) that forms part of the wolf-like canids, is the most widely abundant carnivore. Pet domestic dogs are highly responsive to human actions and attentional states[1][2].
- Common Name: Domestic dog
- NCBI Taxonomy
Different Disease Groups & Tissues
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
RPL13A[1] | Ribosomal protein L13a |
|
AJ388525 |
|
87 | 85 | SYBR |
RPL32[1] | Ribosomal protein L32 |
|
XM_848016.1 |
|
100 | 87 | SYBR |
Molecular Types
- mRNA
Evaluation Methods
Contact
- Name: Iain R. Peters
- Email: I.R.Peters@Bristol.ac.uk
- Institution: School of Clinical Veterinary Science, University of Bristol, Langford House, Langford, Bristol BS40 5DU, UK
Citation Statistics
Cited by 126 (Based on Google Scholar [2017-08-10])
Different Developmental Stages & Tissues
Internal Control Genes
Gene Symbol | Gene Name | Application Scope | Accession Number | Primers (5'-3') [Forward/Reverse] |
Size [bp] | Tm [℃] | Detection |
---|---|---|---|---|---|---|---|
RPS5[3] | Ribosomal protein S5 |
|
XM_533568 |
|
122 | 60 | SYBR |
RPL8[3] | Ribosomal protein L8 |
|
XM_532360 |
|
164 | 60 | SYBR |
RPS19[3] | Ribosomal protein S19 |
|
XM_533657 |
|
175 | 60 | SYBR |
RPL32[3] | 60S Ribosomal protein L32 |
|
XM_844472 |
|
112 | 60 | SYBR |
GAPDH[3] | Glyceraldehyde-3-phospate dehydrogenase |
|
NM_001003142 |
|
101 | 60 | SYBR |
MRPS7[3] | Mitochondrial ribosomal protein S7 |
|
XM_846915 |
|
196 | 60 | SYBR |
RPL13A[3] | Ribosomal protein L13A |
|
AJ388525 |
|
167 | 60 | SYBR |
Moleculer Type
- mRNA
Evaluation Methods
- geNorm method && Related Reference
- NormFinder method && Related Reference
- BestKeeper method && Related Reference
Contact
- Name: Kyu-Tae Chang
- Email: changkt@kribb.re.kr
- Institution: S.-U. Kim ? K.-T. Chang (&) National Primate Research Center, Korea Research Institute of Bioscience and Biotechnology, Ochang, Chungbuk 363-883, Republic of Korea
Citation Statistics
Cited by 13 (Based on Google Scholar [2017-08-10])
References
- ↑ 1.0 1.1 1.2 Peters I R, Peeters D, Helps C R, et al. Development and application of multiple internal reference (housekeeper) gene assays for accurate normalisation of canine gene expression studies[J]. Veterinary immunology and immunopathology, 2007, 117(1): 55-66.
- ↑ Udell M A R, Dorey N R, Wynne C D L. The performance of stray dogs (Canis familiaris) living in a shelter on human-guided object-choice tasks[J]. Animal Behaviour, 2010, 79(3): 717-725.
- ↑ 3.0 3.1 3.2 3.3 3.4 3.5 3.6 Park, Sang-Je, et al. "Selection of internal reference genes for normalization of quantitative reverse transcription polymerase chain reaction (qRT-PCR) analysis in the canine brain and other organs." Molecular biotechnology 54.1 (2013): 47-57.