Literature DB >> 15492396

Analysis of hematopoietic development in the zebrafish.

Noëlle N Paffett-Lugassy1, Leonard I Zon.   

Abstract

The zebrafish (Danio rerio) has emerged as a powerful vertebrate genetic and developmental model that is particularly amenable to the study of hematopoiesis. The zebrafish embryo develops externally and its optical clarity allows the number and morphology of circulating blood cells to be visualized using a dissecting microscope. Both the morphology of the blood lineages and the expression of critical blood genes are highly conserved between zebrafish and mammals. The high fecundity and short generation time of zebrafish facilitate genetic analysis, and a number of large-scale mutagenesis screens have identified mutations in genes affecting blood development. The discovery of novel hematopoietic genes, as well as the cloning of zebrafish homologs of known hematopoietic genes, necessitates the use of efficacious and reliable methods for complete gene characterization. In this chapter, we illustrate frequently used techniques that are essential for evaluating hematopoiesis in the zebrafish, including whole-mount in situ hybridization, the detection of erythrocytes by o-dianisidine staining, and a description of the microinjection procedure, which has various applications, including overexpression of messenger ribonucleic acid, gene "knockdown" by antisense technology, and the creation of transgenic zebrafish. Also included is an explanation of the use of flow cytometry to separate hematopoietic lineages from the adult kidney and to isolate relatively pure populations of cell types from transgenic embryos based on the expression of fluorescent markers.

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Year:  2005        PMID: 15492396     DOI: 10.1385/1-59259-826-9:171

Source DB:  PubMed          Journal:  Methods Mol Med        ISSN: 1543-1894


  29 in total

1.  Fgf21 is essential for haematopoiesis in zebrafish.

Authors:  Hajime Yamauchi; Yuhei Hotta; Morichika Konishi; Ayumi Miyake; Atsuo Kawahara; Nobuyuki Itoh
Journal:  EMBO Rep       Date:  2006-04-13       Impact factor: 8.807

2.  The zebrafish (Danio rerio) embryo as a model system for identification and characterization of developmental toxins from marine and freshwater microalgae.

Authors:  John P Berry; Miroslav Gantar; Patrick D L Gibbs; Michael C Schmale
Journal:  Comp Biochem Physiol C Toxicol Pharmacol       Date:  2006-08-10       Impact factor: 3.228

3.  Identification of a new adtrp1-tfpi regulatory axis for the specification of primitive myelopoiesis and definitive hematopoiesis.

Authors:  Li Wang; Xiaojing Wang; Longfei Wang; Muhammad Yousaf; Jia Li; Mengxia Zuo; Zhongcheng Yang; Dongzhi Gou; Binghao Bao; Lei Li; Ning Xiang; Haibo Jia; Chengqi Xu; Qiuyun Chen; Qing Kenneth Wang
Journal:  FASEB J       Date:  2017-09-06       Impact factor: 5.191

4.  Stromal cell-derived factor-1 and hematopoietic cell homing in an adult zebrafish model of hematopoietic cell transplantation.

Authors:  Tiffany J Glass; Troy C Lund; Xiaobai Patrinostro; Jakub Tolar; Teresa V Bowman; Leonard I Zon; Bruce R Blazar
Journal:  Blood       Date:  2011-05-26       Impact factor: 22.113

5.  Mutations in the zebrafish hmgcs1 gene reveal a novel function for isoprenoids during red blood cell development.

Authors:  Jose A Hernandez; Victoria L Castro; Nayeli Reyes-Nava; Laura P Montes; Anita M Quintana
Journal:  Blood Adv       Date:  2019-04-23

6.  MicroRNAs Establish Uniform Traits during the Architecture of Vertebrate Embryos.

Authors:  Dionna M Kasper; Albertomaria Moro; Emma Ristori; Anand Narayanan; Guillermina Hill-Teran; Elizabeth Fleming; Miguel Moreno-Mateos; Charles E Vejnar; Jing Zhang; Donghoon Lee; Mengting Gu; Mark Gerstein; Antonio Giraldez; Stefania Nicoli
Journal:  Dev Cell       Date:  2017-03-27       Impact factor: 12.270

7.  Genome editing of factor X in zebrafish reveals unexpected tolerance of severe defects in the common pathway.

Authors:  Zhilian Hu; Yang Liu; Michael C Huarng; Marzia Menegatti; Deepak Reyon; Megan S Rost; Zachary G Norris; Catherine E Richter; Alexandra N Stapleton; Neil C Chi; Flora Peyvandi; J Keith Joung; Jordan A Shavit
Journal:  Blood       Date:  2017-06-02       Impact factor: 22.113

8.  Functional conservation of erythropoietin signaling in zebrafish.

Authors:  Noëlle Paffett-Lugassy; Nelson Hsia; Paula G Fraenkel; Barry Paw; Irene Leshinsky; Bruce Barut; Nathan Bahary; Jaime Caro; Robert Handin; Leonard I Zon
Journal:  Blood       Date:  2007-06-19       Impact factor: 22.113

9.  Spliceosomal component Sf3b1 is essential for hematopoietic differentiation in zebrafish.

Authors:  Adriana De La Garza; Rosannah C Cameron; Sara Nik; Sara G Payne; Teresa V Bowman
Journal:  Exp Hematol       Date:  2016-06-01       Impact factor: 3.084

10.  Loss of fibrinogen in zebrafish results in an asymptomatic embryonic hemostatic defect and synthetic lethality with thrombocytopenia.

Authors:  Zhilian Hu; Kari I Lavik; Yang Liu; Andy H Vo; Catherine E Richter; Jorge Di Paola; Jordan A Shavit
Journal:  J Thromb Haemost       Date:  2019-02-25       Impact factor: 5.824

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