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Development, Vol 123, Issue 1 451-460, Copyright © 1996 by Company of Biologists
JOURNAL ARTICLES |
EW Knapik, A Goodman, OS Atkinson, CT Roberts, M Shiozawa, CU Sim, S Weksler-Zangen, MR Trolliet, C Futrell, BA Innes, G Koike, MG McLaughlin, L Pierre, JS Simon, E Vilallonga, M Roy, PW Chiang, MC Fishman, W Driever and HJ Jacob
Cardiovascular Research Center, Massachusetts General Hospital, Charlestown 02129, USA. knapik@helix.mgh.harvard.edu
The ultimate informativeness of the zebrafish mutations described in this issue will rest in part on the ability to clone these genes. However, the genetic infrastructure required for the positional cloning in zebrafish is still in its infancy. Here we report a reference cross panel of DNA, consisting of 520 F2 progeny (1040 meioses) that has been anchored to a zebrafish genetic linkage map by 102 simple sequence length polymorphisms. This reference cross DNA provides: (1) a panel of DNA from the cross that was used to construct the genetic linkage map, upon which polymorphic gene(s) and genetic markers can be mapped; (2) a fine order mapping tool, with a maximum resolution of 0.1 cM; and (3) a foundation for the development of a physical map (an ordered array of clones each containing a known portion of the genome). This reference cross DNA will serve as a resource enabling investigators to relate genes or genetic markers directly to a single genetic linkage map and avoid the problem of integrating different maps with different genetic markers, as must be currently done when using randomly amplified polymorphic DNA markers, or as has occurred with human genetic linkage maps.
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A F Schier, A L Joyner, R Lehmann, and W S Talbot From screens to genes: prospects for insertional mutagenesis in zebrafish. Genes & Dev., December 15, 1996; 10(24): 3077 - 3080. [PDF] |
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W Driever, L Solnica-Krezel, A. Schier, S. Neuhauss, J Malicki, D. Stemple, D. Stainier, F Zwartkruis, S Abdelilah, Z Rangini, et al. A genetic screen for mutations affecting embryogenesis in zebrafish Development, January 12, 1996; 123(1): 37 - 46. [Abstract] [PDF] |
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L Solnica-Krezel, D. Stemple, E Mountcastle-Shah, Z Rangini, S. Neuhauss, J Malicki, A. Schier, D. Stainier, F Zwartkruis, S Abdelilah, et al. Mutations affecting cell fates and cellular rearrangements during gastrulation in zebrafish Development, January 12, 1996; 123(1): 67 - 80. [Abstract] [PDF] |
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D. Stemple, L Solnica-Krezel, F Zwartkruis, S. Neuhauss, A. Schier, J Malicki, D. Stainier, S Abdelilah, Z Rangini, E Mountcastle-Shah, et al. Mutations affecting development of the notochord in zebrafish Development, January 12, 1996; 123(1): 117 - 128. [Abstract] [PDF] |
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J Malicki, S. Neuhauss, A. Schier, L Solnica-Krezel, D. Stemple, D. Stainier, S Abdelilah, F Zwartkruis, Z Rangini, and W Driever Mutations affecting development of the zebrafish retina Development, January 12, 1996; 123(1): 263 - 273. [Abstract] [PDF] |
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J Malicki, A. Schier, L Solnica-Krezel, D. Stemple, S. Neuhauss, D. Stainier, S Abdelilah, Z Rangini, F Zwartkruis, and W Driever Mutations affecting development of the zebrafish ear Development, January 12, 1996; 123(1): 275 - 283. [Abstract] [PDF] |
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S. Neuhauss, L Solnica-Krezel, A. Schier, F Zwartkruis, D. Stemple, J Malicki, S Abdelilah, D. Stainier, and W Driever Mutations affecting craniofacial development in zebrafish Development, January 12, 1996; 123(1): 357 - 367. [Abstract] [PDF] |
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