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Strain Detail


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 Strain information
  CARD ID
2841 
Type of strain Targeted mutant. 
Strain name STOCK Tktl2em1Osb 
Internal Code Tktl2 KO 
Submitter Ikawa Masahito  
Submitter affiliation or code Animal Resource Center for Infectious Diseases Research Institute for Microbial Diseases Osaka University 
Stock Type  
Material Transfer Conditions Other conditions. 
The RECIPIENT of BIOLOGICAL RESOURCE shall obtain a prior written consent on use of it from the DEPOSITOR. RECIPIENT which wants to use the BIOLOGICAL RESOURCE for the purpose other than education or not-for-profit research is requested to enter into a Material Transfer Agreement with Osaka University. In publishing the research results obtained by use of the BIOLOGICAL RESOURCE, a citation of the following literature(s) designated by the DEPOSITOR is requested. The RECIPIENT which wants to use the BIOLOGICAL RESOURCE even after five years must obtain a written consent from the DEPOSITOR again. 
Production method In-house breading.
 
Origin
(In-house)
Organization  
Organization code  
Developer  
Origin
(From other organizations)
Organization  
Organization code  
Developer  
Year introduced  
Introduced 
Generation
 
Remarks  
 
 Gene information
 Gene information 1
  Gene symbol
Tktl2 
Gene name transketolase-like 2 
Allele symbol Tktl2em1Osb 
Allele name transketolase-like 2, endonuclease-mediated mutation 1, Research Institute for Microbial Diseases, Osaka University 
MGI MGI:1921669 
Chromosome 8 (33.14) 
Gene classification Targeted or trapped gene(knockout etc.) 
Method Other 
OMIM
 

 Reference information
 reference information 1
  Author
Yonggang Lu, Seiya Oura, Takafumi Matsumura, Asami Oji, Nobuyuki Sakurai, Yoshitaka Fujihara, Keisuke Shimada, Haruhiko Miyata, Tomohiro Tobita, Taichi Noda, Julio M Castaneda, Daiji Kiyozumi, Qian Zhang, Tamara Larasati, Samantha A M Young, Mayo Kodani, Caitlin A Huddleston, Matthew J Robertson, Cristian Coarfa, Ayako Isotani, R John Aitken, Masaru Okabe, Martin M Matzuk, Thomas X Garcia, Masahito Ikawa 
Title CRISPR/Cas9-mediated genome editing reveals 30 testis-enriched genes dispensable for male fertility in mice 
Journal Biol Reprod. 
Volume  
Page  
Year 2019 
PMID