| Literature DB >> 22102853 |
Violeta Muñoz-Fuentes1, Anna Di Rienzo, Carles Vilà.
Abstract
Meiotic recombination is a fundamental process needed for the correct segregation of chromosomes during meiosis in sexually reproducing organisms. In humans, 80% of crossovers are estimated to occur at specific areas of the genome called recombination hotspots. Recently, a protein called PRDM9 was identified as a major player in determining the location of genome-wide meiotic recombination hotspots in humans and mice. The origin of this protein seems to be ancient in evolutionary time, as reflected by its fairly conserved structure in lineages that diverged over 700 million years ago. Despite its important role, there are many animal groups in which Prdm9 is absent (e.g. birds, reptiles, amphibians, diptera) and it has been suggested to have disruptive mutations and thus to be a pseudogene in dogs. Because of the dog's history through domestication and artificial selection, we wanted to confirm the presence of a disrupted Prdm9 gene in dogs and determine whether this was exclusive of this species or whether it also occurred in its wild ancestor, the wolf, and in a close relative, the coyote. We sequenced the region in the dog genome that aligned to the last exon of the human Prdm9, containing the entire zinc finger domain, in 4 dogs, 17 wolves and 2 coyotes. Our results show that the three canid species possess mutations that likely make this gene non functional. Because these mutations are shared across the three species, they must have appeared prior to the split of the wolf and the coyote, millions of years ago, and are not related to domestication. In addition, our results suggest that in these three canid species recombination does not occur at hotspots or hotspot location is controlled through a mechanism yet to be determined.Entities:
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Year: 2011 PMID: 22102853 PMCID: PMC3213085 DOI: 10.1371/journal.pone.0025498
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1General structure of PRDM9 in rodents and primates and position of the primers used and stop codons found in this study in dogs, wolves and coyotes.
(A) PRDM9 as described for most metazoans, in particular primates and rodents [8], [9], [47]. (B) Region sequenced in this study aligning to the last exon of humans as shown by the ECR browser (see text for details); position of the primers is indicated by arrows and position of the stop codons is represented by asterisks (for detailed information, refer to the text and tables).
Primers used to amplify and sequence in dogs, wolves and coyotes the region aligning to the human last exon of the Prdm9 gene.
| Primer Name | Sequence |
| CanPrdm9.F |
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| CanPrdm9.R |
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| CanPrdm9.NR1 |
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| CanPrdm9.NF2 |
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| CanPrdm9.NR2 |
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| CanPrdm9.NF3 |
|
Polymorphic nucleotide positions found in dogs, wolves and coyotes in the region of the Prdm9 gene sequenced.
| Individual | Breed/Geographical origin | Data type | N (position in sequence) | 75 | 91 | 126 | 231 | 330 | 560 | 713 | 769 | 964 | 966 | 967 | 976 | 986 | 988 | 989 | 990 | 991 | 1034 | 1157 | 1177 | 1183 | 1208 | 1219 | 1306 | 1307 | 1308 | 1314 | 1332 | 1470 | 1555 | 1582 |
| Dog (CanFam2) | Boxer | Reference | T | T | G | T | T | G | G | C | A | G | A | G | G | A | G | G | A | G | C | T | C | C | C | – | A | A | A | A | C | A | T | |
| Dog_1 | German shepherd | Experimental | A | . | A | G | C | . | . | . | . | . | . | . | . | . | . | . | . | . | T | . | A | . | T | . | . | . | . | . | . | . | . | |
| Dog_2 | Mix breed | Experimental | W | . | A | K | Y | . | . | . | . | . | . | . | . | . | . | . | . | . | Y | . | . | . | Y | . | . | . | . | . | . | . | . | |
| Dog_3 | Mix breed | Experimental | A | . | A | G | C | . | . | . | . | . | . | . | . | . | . | . | . | . | T | . | A | . | T | A | . | . | . | . | . | . | . | |
| Dog_4 | Mix breed | Experimental | Pos. 1–17 | . | . | A | . | . | . | R | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . |
| Wolf_1 | Sweden | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | |
| Wolf_2 | Sweden | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | – | – | . | . | . | . | . | |
| Wolf_3 | Sweden | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | – | – | . | . | . | . | . | |
| Wolf_4 | Spain | Experimental | . | . | A | . | . | . | . | . | W | R | M | . | R | R | . | . | . | . | . | Y | . | Y | . | . | . | . | . | . | . | . | . | |
| Wolf_5 | Finland | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | – | . | . | . | . | . | . | |
| Wolf_6 | Finland | Experimental | Pos. 1–17 | A | Y | A | G | C | . | . | . | . | . | . | . | R | . | . | . | . | R | T | . | A | . | T | . | . | . | . | . | . | . | . |
| Wolf_7 | Finland | Experimental | Pos. 1–20 | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | A | . | . | . | . | . | . | . |
| Wolf_8 | Finland | Experimental | W | . | A | K | Y | . | . | . | . | . | . | . | . | . | . | . | . | R | Y | . | M | . | Y | . | . | . | . | . | . | . | . | |
| Wolf_9 | Italy | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | |
| Wolf_10 | Italy | Experimental | Pos. 1–17 | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | – | . | . | . | . | . | . |
| Wolf_11 | Italy | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | – | . | . | . | . | . | . | |
| Wolf_12 | North West Territories | Experimental | Pos. 1–17 | W | . | A | K | Y | R | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . |
| Wolf_13 | North West Territories | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | G | . | . | . | |
| Wolf_14 | North West Territories | Experimental | . | . | A | . | . | . | . | . | . | . | . | R | . | . | . | . | . | . | Y | . | . | . | Y | . | – | . | G | . | Y | R | W | |
| Wolf_15 | Captive, North America | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | – | . | G | . | Y | R | W | |
| Wolf_16 | Captive, North America | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | – | . | G | . | T | G | A | |
| Wolf_17 | British Columbia | Experimental | Pos. 1–17 | . | . | A | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . | . |
| Coyote_1 | Colorado | Experimental | . | . | A | . | . | . | . | . | . | . | . | . | . | . | – | – | – | . | . | . | . | . | . | . | . | . | . | . | T | G | A | |
| Coyote_2 | Nebraska | Experimental | Pos. 990–1307 | . | . | A | . | . | . | . | Y | . | . | . | . | . | . | N | N | N | N | N | N | N | N | N | N | N | . | . | . | T | G | A |
|
| Align to human and cat. | Four ZF-like regions. | Poly-A stretch. | |||||||||||||||||||||||||||||||
Breed in the case of dogs and the geographical origin in the case of wolves and coyotes is indicated.
This individual seems to have a 3-bp deletion in one allele but not in the other,which made it impossible to read part of the sequence.
Sequence for which there is no data (N).
Positions 245–654. See text and Table S2 for more information.
Refer to the text and Tables 3 and S1 for more information.
Uncertainty in the nucleotide sequence due the prsence of a poly-A stretch. More information in the text.
Four C2H2 ZF-like regions (denoted 1, 2, 3 and 4) found in the three canid species studied (dogs, wolves and coyotes); for comparison, a ZF from the cat and the human are included.
| Species | Source | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 17 | 18 | 19 | 20 | 21 | 22 | 23 | 24 | 25 | 26 | 27 | 28 |
| HomoSapiens03_ZnFinger | Oliver |
| R | E |
| G | R | G | F | S | W | K | S | H | L | L | I |
| Q | R | I |
| T | G | E | K | P | Y | V |
| FelisCatus02_ZnFinger | Oliver |
| R | E |
| G | R | G | F | T | Q | R | S | N | L | F | R |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block1_CanisFamiliaris01 | This study |
| R | E |
| G | R | G | F | I | H | R | T | N | L | I | I |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block1_CanisLupus01 | This study |
| R | E |
| G | R | G | F | I | H | R | T | N | L | I | I |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block1_CanisLatrans01 | This study |
| R | E |
| G | R | G | F | I | H | R | T | N | L | I | I |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block1_CanisLatrans02 | This study |
| R | E |
| G | * | G | F | I | H | R | T | N | L | I | I |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block2_CanisFamiliaris01 | This study |
| R | E |
| G | Q | A | L | Y | R | G | Q | I | S | A | Y |
| R | G | H |
| Q | G | R | S | P | M | |
| ZF-like Block2_CanisLupus01 | This study |
| R | E |
| G | Q | A | L | Y | R | G | Q | I | S | A | Y |
| R | G | H |
| Q | G | R | S | P | M | |
| ZF-like Block2_CanisLatrans01 | This study |
| R | E |
| G | Q | A | L | Y | R | G | Q | I | S | A | Y |
| R | G | H |
| Q | G | R | S | P | M | |
| ZF-like Block3_CanisFamiliaris01 | This study |
| R | E |
| G | R | G | F | T | Q | R | S | T | L | N | E |
| Q | R | T |
| T | E | E | K | P | Y | V |
| ZF-like Block3_CanisLupus01 | This study |
| R | E |
| G | R | G | F | T | Q | R | S | T | L | N | E |
| Q | R | T |
| T | E | E | K | P | Y | V |
| ZF-like Block3_CanisLupus02 | This study |
| R | E |
| G | R | G | F | T | Q | R | S | T | L | I | T |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block3_CanisLupus03 | This study |
| R | E |
| G | R | G | F | T | Q | R | S | T | L | N | E |
| Q | K | T |
| T | E | E | K | P | Y | V |
| ZF-like Block3_CanisLatrans01 | This study |
| R | E |
| G | R | G | F | T | Q | R | S | T | L | N | E |
| Q | R | T |
| T | E | – | K | P | Y | V |
| ZF-like Block4_CanisFamiliaris01 | This study |
| R | E |
| G | R | S | F | T | R | R | S | T | L | I | T |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block4_CanisLupus01 | This study |
| R | E |
| G | R | S | F | T | R | R | S | T | L | I | T |
| Q | R | T |
| T | G | E | K | P | Y | V |
| ZF-like Block4_CanisLatrans01 | This study |
| R | E |
| G | R | S | F | T | R | R | S | T | L | I | T |
| Q | R | T |
| T | G | E | K | P | Y | V |