| Literature DB >> 26289165 |
Jilun Hou1, Takafumi Fujimoto1, Taiju Saito1, Etsuro Yamaha2, Katsutoshi Arai1.
Abstract
Generation of clonal zebrafish will facilitate large-scale genetic screening and help us to overcome other biological and biotechnological challenges due to their isogenecity. However, protocols for the development of clonal lines have not been optimized. Here, we sought to develop a novel method for generation of clonal zebrafish by androgenesis induced by cold shock. Androgenetic zebrafish doubled haploids (DHs) were induced by cold shock of just-fertilized eggs, and the eggs were then heat shocked to double the chromosome set. The yield rate of putative DHs relative to the total number of eggs used was 1.10% ± 0.19%. Microsatellite genotyping of the putative DHs using 30 loci that covered all 25 linkage groups detected no heterozygous loci, confirming the homozygosity of the DHs. Thus, a clonal line was established from sperm of a DH through a second cycle of cold-shock androgenesis and heat-shock chromosome doubling, followed by genetic verification of the isogenic rate confirming the presence of identical DNA fingerprints by using amplified fragment length polymorphism markers. In addition, our data provided important insights into the cytological mechanisms of cold-shock-induced androgenesis.Entities:
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Year: 2015 PMID: 26289165 PMCID: PMC4542340 DOI: 10.1038/srep13346
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Induced haploid androgenesis by cold-shock in zebrafish (Danio rerio).
(a) Cleavage rate, survival rate at 24 h, and haploid rate of just-fertilized eggs cold-shocked at 1 ± 0.5 °C, 4 ± 0.5 °C, 7 ± 0.5 °C, and 10 ± 0.5 °C for 30 min. Different letters above the columns denote significant differences as determined by one-way ANOVA and Duncan’s multiple comparisons (P < 0.05). (b) Cleavage rate, survival rate at 24 h, and haploid rate of just-fertilized eggs cold-shocked at 7 ± 0.5 °C for 20, 30, 40, 50, or 60 min. Different letters above the columns denote significant differences as determined by one-way ANOVA and Duncan’s multiple comparisons (P < 0.05). (c–j) Relative DNA content and metaphase chromosomes of different ploidy larvae hatched from intact control eggs and eggs subjected to cold shock at 7 ± 0.5 °C for 30 min. (c) 1N abnormal larvae from the cold-shock group; (d) 1.3N abnormal larvae from the cold-shock group; (e) 2N normal larvae from the intact control group; (f) 3N abnormal larvae from the cold-shock group; (g) 1N abnormal larvae with 25 chromosomes from the cold-shock group; (h) 1.3N abnormal larvae with 32 chromosomes from the cold-shock group; (i) 2N normal larvae with 50 chromosomes from the intact control group; (j) 3N abnormal larvae with 75 chromosomes from the cold-shock group. Scale bars denote 10 μm.
Figure 2Histological observation of zebrafish (Danio rerio) androgenetic-induced eggs from 5 to 43 min after fertilization (AF).
(a–d) androgenetic haploid type; (e–h) triploid type; and (i–l) diploid or aneuploid type. (a) 5 min AF, the spindle was destroyed by cold-shock treatment, and part of the blastodisc swelled up with all the chromosomes; (b) 30 min AF, the blastodisc swelled further with all the chromosomes; (c) 35 min AF, the swelled blastodisc released as second polar body with all chromosomes; (d) 43 min AF, only one pronucleus was observed in the egg; (e) 5 min AF, part of the blastodisc swelled; (f) 30 min AF, the blastodisc swelled further with no chromosomes; (g) 35 min AF, few parts of the blastodisc were released, and all chromosomes remained in the egg; (h) 43 min AF, the zygote was formed by the fusing of female and male pronuclei; (i) 5 min AF, the unswelled blastodisc; (j) 15 min AF, parts of the blastodisc swelled up with some chromosomes, and other chromosomes were found at unswelled parts of the blastodisc; (k) 35 min AF, the second polar body was released with some chromosomes, and the unreleased chromosomes in the egg developed into the female pronucleus; (l) 43 min AF, the female pronucleus became bigger. Scale bars denote 10 μm. Abbreviation: 2PB, 2nd polar body; 2MeC, 2nd meiotic chromosomes; FN, female nucleus; FPN, female pronucleus; MPN, male pronucleus; ZY, zygote.
Figure 3Induced androgenetic doubled haploids and clonal line in zebrafish (Danio rerio).
(a–f) The four different types of larvae hatched from eggs subjected to cold-shock treatment for 30 min at 7 ± 0.5 °C, followed by heat-shock treatment at 43 min AF. (a) and (b) Normal wild-type larva; (c) abnormal wild-type larva; (d) and (e) normal golden-type larva; and (f) abnormal golden-type larva. Scale bar denotes 1 mm. (g) DNA fingerprints were determined by amplified fragment length polymorphism using the selective primer combination E-AGC/M-CTT. dl: DNA ladder; ♂: golden-type male doubled haploid whose sperm was used for androgenesis induction; c1–c7: normal golden-type diploid progeny hatched from androgenesis (clonal fish); i1–i4: female intact control; i5–i8: male intact control.
Normal androgenetic doubled haploid induction rate (♀: wild-type, ♂: golden-type) in zebrafish (Danio rerio).
| 1 | 778 | 216 (27.76) | 9 (1.16) |
| 2 | 824 | 202 (24.51) | 7 (0.85) |
| 3 | 781 | 301 (38.54) | 8 (1.02) |
| 4 | 725 | 197 (27.17) | 10 (1.38) |
| Mean ± SD | 229 ± 29(29.50 ± 5.36) | 9 ± 1(1.10 ± 0.19) |