Several species of the South American genus Akodon present fully fertile XY females besides XX ones. To analyze the possibility of a Sry mutation as the cause of sex reversal in A. azarae and A. boliviensis, we determined the sequence of the Sry gene in 2 males and 3 XY females from each of these species. The Sry gene sequence was also studied in A. dolores, a species that does not have XY females. In inter-specific comparisons, the percentage identities with respect to the region analyzed varied between 96.8% and 97.9%. An ORF of 543 nucleotides was identified, and the predicted Sry proteins comprised 180 amino acids, with an HMG domain of 83 amino acids. Our results indicate that female sex reversal in A. azarae and A. boliviensis cannot be explained by sequence differences in the Sry region analyzed here, which includes the complete ORF and, together with previous results concerning the inheritance of the XY condition, show that Sry mutation is not the basis of sex reversal.

1.
Acosta MJ, Marchal JA, Romero-Fernández I, Megías-Nogales B, Modi WS, et al: Sequence analysis and mapping of Sry gene in species of the subfamily Arvicolinae (Rodentia). Sex Dev 2010, in press.
2.
Akhverdyan M, Fredga K: EM studies of female meiosis in wood lemmings with different sex chromosome constitutions. J Exp Zool 290:504–516 (2001).
3.
Altschul A, Stephen F, Madden TL, Schäffer AA, Zhang J, et al: Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Res 25:3389–3402 (1997).
4.
Arakawa Y, Nishida-Umehara C, Matssuda Y, Sutou S, Suzuki H: X-chromosomal localization of mammalian Y-linked genes in two X0 species of the Ryukyu spiny rat. Cytogenet Genome Res 99:303–309 (2002).
5.
Baumstark A, Akhverdyan M, Schulze A, Reisert I, Vogel W, et al: Exclusion of SOX9 as the testis determining factor in Ellobius lutescens: evidence for another testis determining gene besides SRY and SOX9. Mol Genet Metab 72:61–66 (2001).
6.
Baumstark A, Hameister H, Akhverdyan M, Bakloushinskaya I, Just W: Characterization of Pisrt/Foxl2 in Ellobius lutescens and exclusion as sex-determining genes. Mamm Genome 16:281–289 (2005).
7.
Bianchi N: Akodon sex reversed females: the never-ending story. Cytogenet Genome Res 96:60–65 (2002).
8.
Bianchi NO, Contreras J: The chromosomes of the field mouse Akodon azarae (Cricetidae, Rodentia) with special reference to sex chromosome anomalies. Cytogenetics 6:306–313 (1967).
9.
Bianchi N, Reig O, Molina O, Dulout F: Cytogenetics of South American akodont rodents (Cricetidae) I. A progress report of Argentinian and Venezuelan forms. Evolution 25:724–736 (1971).
10.
Bianchi N, de la Chapelle A, Vidal-Rioja L, Merani M: The sex-determining zinc finger sequences in XY females of Akodon azarae (Rodentia, Cricetidae). Cytogenet Cell Genet 52:162–166 (1989).
11.
Bianchi N, Bianchi M, Bailliet G, de la Chapelle A: Characterization and sequencing of the sex determining region Y gene (Sry) in Akodon (Cricetidae) species with sex reversed females. Chromosoma 102:389–395 (1993).
12.
Bullejos M, Sánchez A, Burgos M, Hera C, Jiménez R, Díaz de la Guardia R: Multiple, polymorphic copies of SRY in both males and females of the vole Microtus cabrerae. Cytogenet Cell Genet 79:167–171 (1997).
13.
Bullejos M, Sánchez A, Burgos M, Jiménez R, Díaz De La Guardia R: Multiple mono- and polymorphic Y-linked copies of the SRY HMG-box in Microtidae. Cytogenet Cell Genet 86:46–50 (1999).
14.
Carlisle C, Winking H, Weichenhan D, Nagamine CM: Absence of correlation between Sry polymorphisms and XY sex reversal caused by the M. m. domesticus Y chromosome. Genomics 33:32–45 (1996).
15.
Chen Y, Dong Y, Xiang X, Zhang X, Zhu BC: Sex determination of Microtus mandarinus mandarinus is independent of Sry gene. Mamm Genome 19:61–68 (2008).
16.
Daneau I, Ethier JF, Lussier JG, Silversides DW: Porcine SRY gene locus and genital ridge expression. Biol Reprod 55:47–53 (1996).
17.
Fredga K: Aberrant chromosomal sex-determining mechanisms in mammals, with special reference to species with XY females. Phil Trans Roy Soc London B 322:83–95 (1988).
18.
Fredga K: Bizarre mammalian sex-determining mechanisms, in Short RV, Balaban E (eds): The Differences between the Sexes, pp 419–431 (Cambridge University Press, Cambridge 1994).
19.
Fredga K, Groop A, Winking H, Frank F: Fertile XX and XY type females in the wood lemming, Myopus schisticolor. Nature 261:225–227 (1976).
20.
Fredga K, Setterfield L, Mittwoch U: Gonadal development and birth weight in X*X and X*Y females of the wood lemming, Myopus schisticolor. Cytogenet Cell Genet 91:97–101 (2000).
21.
Geraldes A, Rogel-Gaillard C, Ferrand N: High levels of nucleotide diversity in the European rabbit (Oryctolagus cuniculus)SRY gene. Anim Genet 36:349–351 (2005).
22.
Hacker A, Capel A, Goodfellow B, Lovell-Badge R: Expression of Sry, the mouse sex determining gene. Development 121:1603–1614 (1995).
23.
Herbst E, Fredga K, Frank F, Winking H, Gropp A: Cytological identification of two X-chromosome types in wood lemming (Myopus schisticolor). Chromosoma 69:185–191 (1978).
24.
Iwasa MA, Suzuki H: Evolutionary networks of maternal and paternal gene lineages in voles (Eothenomys) endemic to Japan. J Mammal83:852–865 (2002).
25.
Iwasa MA, Utsumi Y, Nakada K, Kartavtseva IV, Nevedomskaya IA, Kondoh N, Suzuki H: Geographic patterns of cytochrome b and Sry gene lineages in the gray red-backed vole Chlethrionomys rufocanus from the East Asia including Sakhalin and Hokkaido. Zool Sci 17:477–484 (2000).
26.
Just W, Rau W, Vogul W, Akhverdyan M, Fredga K, Graves J, Lyapunova E: Absence of Sry in species of the vole Ellobius. Nature Genet 11:117–118 (1995).
27.
Just W, Baumstark A, Hameister H, Schreiner B, Reisert I, Akhverdyan M, Vogel W: The sex determination in Ellobius lutescens remains bizarre. Cytogenet Genome Res 96:146–153 (2002).
28.
Liu W-S, Eriksson L, Fredga K: XY sex reversal in the wood lemming is associated with deletion of Xp21–23 as revealed by chromosome microdissection and fluorescence in situ hybridization. Chromosome Res 6:379–383 (1998).
29.
Liu W-S, Nordqvist K, Lau Y-F, Fredga K: Characterization of the Xp21–23 region in the wood lemming, a region involved in XY sex reversal. J Exp Zool 290:551–557 (2001).
30.
Lizarralde M, Bianchi N, Merani M: Cytogenetics in South American akodont rodents (Cricetidae) VII. Origin of sex chromosome polymorphism in Akodon azarae. Cytologia 47:183–193 (1982).
31.
Lobato L, Cantos G, Araujo B, Bianchi N, Merani M: Cytogenetics of South American akodont rodents (Cricetidae) VIII. Akodon mollis: a species with XY female and B-chromosomes. Genetica 57:199–205 (1982).
32.
Marchal JA, Acosta MJ, Bullejos M, Díaz de la Guardia R, Sánchez A: Origin and spread of the SRY gene on the X and Y chromosomes of the rodent Microtus cabrerae: role of L1 elements. Genomics 91:142–151 (2008).
33.
Nagai K: Molecular evolution of Sry and Sox gene. Gene 270:161–169 (2001).
34.
Nagamine CM: The testis-determining gene, SRY, exists in multiple copies in Old World rodents. Genet Res 64:151–159 (1994).
35.
Nishida S, Pastene LA, Goto M, Koike H: SRY gene structure and phylogeny in the cetacean species. Mammal Study 28:57–66 (2003).
36.
Ortiz M, Dalmasso G, Dezi R, Pinna-Senn E, Lisanti JA: AC-band polymorphism of the X chromosome in Akodon azarae (Rodentia, Cricetidae). Cytologia 63:365–369 (1998).
37.
Ortiz MI, Pinna-Senn E, Dalmasso G, Lisanti JA: Chromosomal aspects and inheritance of the XY female condition in Akodon azarae (Rodentia, Sigmodontinae). Mamm Biol 74:125–129 (2009).
38.
Phillips NB, Jancso-Radek A, Ittah V, Singh R, Chan G, Haas E, Weiss MA: SRY and human sex determination: The basic tail of the HMG box functions as a kinetic clamp to augment DNA bending. J Mol Biol 358:172–192 (2006).
39.
Pinna-Senn E, Ortiz MI, Arroyo-Yebras F, López-Fernández C, Lisanti JA: Partial sequences of Sry and Dax-1 in Akodon boliviensis and A. azarae. Biocell 29:233 (2005).
40.
Sambrook J, Fritsch EF, Maniatis T: Molecular Cloning: A Laboratory Manual. 2nd ed. (Cold Spring Harbor Laboratory Press, Cold Spring Harbor NY 1989).
41.
Sim H, Argentaro A, Harley VR: Boys, girls and shuttling of SRY and SOX9. Trends Endocrinol Metabol 19:213–222 (2008).
42.
Soullier S, Hanni C, Catzeflis F, Berta P, Laudet V: Male sex determination in the spiny rat Tokudaia osimensis (Rodentia: Muridae) is not Sry dependent. Mamm Genome 9:590–542 (1998).
43.
Sumner AT: A simple technique for demonstrating centromeric heterochromatin. Exp Cell Res 75:304–306 (1972).
44.
Sutou S, Mitsui Y, Tsuchiya K: Sex determination without the Y chromosome in two Japanese rodents, Tokudaia osimensis and Tokudaia osimensis spp. Mamm Genome 12:17–21 (2001).
45.
Thompson JD, Higgins DG, Gibson TJ: CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Res 22:4673–4680 (1994).
46.
Turner ME, Martin C, Martins AS, Dunmire J, Farkas J, Ely DL, Milsted A: Genomic and expression analysis of multiple Sry loci from a single Rattus norvegicus Y chromosome. BMC Genet 8:11 (2007).
47.
Washburn LL, Albrecht KH, Eicher EM: C57BL/6J-T-associated sex reversal in mice is caused by reduced expression of a Mus domesticus Sry allele. Genetics 158:1675–1681 (2001).
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