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Growth regulation in Peromyscus species hybrids: a test for mitochondrial-nuclear genomic interaction.

Interspecific hybridization of Peromyscus maniculatus (deer mouse) and P. polionotus (oldfield mouse) is accompanied by pronounced size differences between reciprocal F1 animals beginning in the fetus and continuing throughout life. Since the mitochondrial genome is inherited through the maternal line in Peromyscus, we tested the hypothesis that increased disparity between the species sources of mitochondrial and nuclear genomes within animals would exaggerate the reciprocal size effects through misregulation of growth, whereas species-compatible genomes were postulated to diminish the effect. Four series of backcrosses were established from females of the two reciprocal F1, while insuring continuity of the maternal mitochondrial composition at each generation. Size and weight measurements were made on neonatal, ten-day and six-month old animals through four or more backcross generations. Contrary to the hypothesis, deer mice with P. polionotus mitochondrial DNA, but 98% or more P. maniculatus nuclear composition, and animals with P. maniculatus mitochondria and principally P. polionotus nuclear genome regressed in mean size parameters to those of P. maniculatus and P. polionotus, respectively. Most of the regression was accounted for by the second backcross generation, and second and later backcross progeny did not differ significantly from the respective parental species controls. Maternal inheritance of mitochondrial DNA was confirmed by restriction enzyme analysis at the second and fifth backcross generation. Hybrid maternal effects in this Peromyscus cross are likely attributable to mechanisms other than nuclear-mitochondrial genomic interaction.

Animals↗

Production of ultrasonic vocalizations by Peromyscus mice in the wild.

BACKGROUND: There has been considerable research on rodent ultrasound in the laboratory and these sounds have been well quantified and characterized. Despite the value of research on ultrasound produced by mice in the lab, it is unclear if, and when, these sounds are produced in the wild, and how they function in natural habitats. RESULTS: We have made the first recordings of ultrasonic vocalizations produced by two free-living species of mice in the genus Peromyscus (P. californicus and P. boylii) on long term study grids in California. Over 6 nights, we recorded 65 unique ultrasonic vocalization phrases from Peromyscus. The ultrasonic vocalizations we recorded represent 7 different motifs. Within each motif, there was considerable variation in the acoustic characteristics suggesting individual and contextual variation in the production of ultrasound by these species. CONCLUSION: The discovery of the production of ultrasonic vocalizations by Peromyscus in the wild highlights an underappreciated component in the behavior of these model organisms. The ability to examine the production of ultrasonic vocalizations in the wild offers excellent opportunities to test hypotheses regarding the function of ultrasound produced by rodents in a natural context.

Journal Article↗

Age-dependence of body weight and linear dimensions in adult Mus and Peromyscus.

Head plus body length (HBL), tail length (TL) and body weight (BW) were measured on two species of small myomorph rodents, Mus musculus and Peromyscus leucopus, throughout adult life. Both sexes of Mus show about a 15 per cent increase of HBL and TL between 5 and 24 months of age, and a BW increase of about 47 per cent. There is no age-trend of HBL in either sex of Peromyscus between 5 and 67 months of age, while TL increases about 7 per cent. In both species, cessation of skeletal growth is followed by a steady decrement of body mass, which averages about 0.23 per cent per month throughout adult life for the two sexes of Peromyscus, and over two per cent per month after cessation of skeletal growth in Mus. The weight loss in Mus in the last half of the lifespan is shown to be associated with age, rather than with the duration of subsequent survival. This evidence against the hypothesis that the late weight loss in Mus is due to terminal disease.

Age Factors↗

Polymorphism, genetic stability, and autosomal location of trimeric nucleoside phosphorylase in Peromyscus eremicus cell lines.

Nucleoside phosphorylase (NP: EC 2.4.2.1) has not been demonstrated to be an extensively polymorphic enzyme locus in mammals. We have studied NP electrophoretically in five independently derived cell lines established from Peromyscus eremicus as well as in various tissues of a sixth animal. Four different NP phenotypes involving three different alleles were resolved. The data suggest that (1) the enzyme is trimeric and its genetic locus is polymorphic in P. eremicus, (2) heterozygous enzyme phenotypes are stable during long-term culture, and (3) the enzyme locus is autosomal in Peromyscus.

Alleles↗

Immunological factors in Peromyscus speciation.

Reciprocal interspecific F1 hybrids of deermice (Peromyscus maniculatus) and oldfield mice (P. polionotus) differ significantly and substantially in fetal and placental, as well as adult, size and weight. Hybrid fetal mortality is associated with large conceptus size. Skin grafts were exchanged between and within the two species to ascertain whether any relationship exists between mean graft retention time and body size of fetuses and adults. P. maniculatus skin grafted to P. polionotus rejected significantly earlier than the reciprocal xenograft. All interspecific graft combinations rejected significantly earlier than intraspecific grafts. Pre-immunization of female P. maniculatus with con- and trans-specific paternal spleen cell antigens reduced fetal, placental, neonatal, and ten-day size compared with controls. Size, weight, fertility, and graft rejection data were compared with several theoretical models. The data were consistent with the hypothesis that immunological disparity between the species could produce marked size variations in reciprocal hybrids. Multiple minor histocompatibility factors can account for large placental size and fetal mortality in Peromyscus hybrids. Physiological reproductive isolation may result from immunological differences between closely allied species.

Animals↗

Medroxyprogesterone, immunosuppression, and conceptus size in Peromyscus.

Effects of exogenous medroxyprogesterone acetate (MPA) on skin transplant retention and conceptus size were studied in the deer mouse, Peromyscus maniculatus, and the oldfield mouse Peromyscus polionotus. Daily injections of 2 mg MPA significantly prolonged survival of allografts in P. maniculatus and transspecific grafts between P. maniculatus and P. polionotus. Allografts were retained significantly longer than transspecific grafts (17.2 vs 12.4 days) on MPA-treated P. maniculatus. Near-term fetal and placental sizes and weights were not detectably influenced by daily 1-mg MPA injections given to the mother from the 5th through the 19th day of pregnancy. The data are discussed relative to the possible immunosuppressive role of progestins in protecting the allogeneic conceptus from maternal immune rejection.

Animals↗

Phylogeography and systematics of the Peromyscus eremicus species group and the historical biogeography of North American warm regional deserts.

Phylogeographic relationships among 26 populations from throughout the geographic range of the Peromyscus eremicus species group are described based on sequence data for a 699-bp fragment of the mitochondrial DNA COIII gene. Distance, maximum-likelihood, and maximum-parsimony analyses of phylogenetic trees generated under four separate character-weighting strategies and representing five alternative biogeographic hypotheses revealed the existence of a cryptic species (Peromyscus fraterculus, previously included under P. eremicus) on the Baja California Peninsula and adjacent southwestern California and two distinct forms of P. eremicus, one from the Mojave, Sonoran, and northwestern Chihuahuan regional deserts (West) and one from the remainder of the Chihuahuan Desert (East). Distinctiveness of P. fraterculus is supported by previous morphometric and allozyme analyses, including comparisons with neighboring P. eremicus and parapatric P. eva, with which P. fraterculus shares a sister taxon relationship. Divergence of the eva + fraterculus, West + East eremicus, and P. merriami haplotype lineages likely occurred in the late Neogene (3 Ma), in response to northern extension of the Sea of Cortéz and elevation of the Sierra Madre Occidental; divergence of eva from fraterculus is concordant with the existence of a trans-Peninsular seaway during the Pleistocene (1 Ma); and divergence of West from East eremicus occurred during the Pleistocene pluvial-interpluvial cycles, but well before the Wisconsinan glacial interval. The sequence of divergence within the eremicus species group and causal association of geological events of the Neogene and Holocene provide a working hypothesis against which phylogeographic patterns among other arid-adapted species of the warm regional deserts of North America may be compared.

Animals↗

Retrotransposon Mys was active during evolution of the Peromyscus leucopus-maniculatus complex.

Mys is a retrovirus-like transposable element found throughout the genus Peromyscus. Several mys subfamilies identified on the basis of restriction site variation occur in more than one species. The distribution of these subfamilies is consistent with the accepted species phylogeny, suggesting that mys was present in the ancestor of Peromyscus and has been active through much of the evolution of this genus. Quantitative Southern blot analysis was used to examine the variability of subfamilies in P. leucopus and maniculatus. We found that subfamilies with phylogenetically narrow distributions were more variable in copy number both within and between species than subfamilies with a broader distribution. Taken together, our data suggest that mys has undergone multiple rounds of transposition since the peromyscine radiation, and that five subfamilies have been amplified during the evolution of the leucopus-maniculatus species complex.

Animals↗

Chronic polychlorinated biphenyls exposure on three generations of oldfield mice (Peromyscus polionotus): effects on reproduction, growth, and body residues.

Effects of chronic dietary exposure to low levels of PCBs (polychlorinated biphenyls) on reproduction, growth and whole body burdens were investigated in three generations of Peromyscus polionotus. Mated pairs were maintained on a diet containing 5 mg/kg PCBs (Aroclor 1254) for 12 months, beginning exposure as young adults; matched controls received a similar diet without PCBs. Offspring were maintained on the parental regime and paired at maturity with non-siblings in the same group. In first and second generation offspring, birth and weaning weights were significantly lower in PCB-exposed animals; in the second generation, there were also significantly fewer mice born/month, longer intervals prior to birth of the first litter, and decreased survival to weaning (25 days) among exposed mice. Whole body residue of PCBs increased significantly with each generation of exposure. This study clearly shows that chronic exposure to PCBs at a dosage of 5 mg/kg depressed fertility, growth and survival in Peromyscus, and that these effects were amplified through multigenerational exposure.

Animals↗

Peromyscus alcohol dehydrogenase: lack of cross-reacting material in enzyme-negative animals.

Two forms of alcohol dehydrogenase (ADH), coded by allelic genes, have been purified to homogeneity from Peromyscus. Monospecific antisera to the purified enzymes have been raised in rabbits. These antisera fail to detect cross-reacting material in the liver of ADH-negative animals on Ouchterlony plates. Immuno-titration of anti-ADH antiserum with ADH in liver extracts from AdhS/AdhS and AdhS/AdhN animals results in identical equivalence points, again suggesting the absence of cross-reacting material coded by the AdhN allele. Over a wide range of anti-ADH antiserum dilutions, radiolabeled protein was not immunoprecipitable from liver extracts of AdhN/AdhN animals. These immunochemical tests, in conjunction with previous studies, suggest that the AdhN allele in Peromyscus does not produce inactive polypeptide in normal levels that bears immunological determinants similar to those of the fast and slow ADH isozymes.

Alcohol Oxidoreductases↗

Sequence, expression, and polymorphism of the Peromyscus leucopus Mhc class Ib gene, M4.

The H2 M region harbors about 20 class I genes or gene fragments the function of which are largely obscure. The rat Mhc ( RT1) appears to contain several orthologs of H2 M region genes although orthologs in more distantly related species have yet to be clearly identified. In this report, the sequence of a genomic clone containing a Peromyscus leucopus Mhc ( Pele) class I gene is presented and based on sequence similarity was found to be the Pele ortholog of H2-M4. Unlike H2-M4, which is a pseudogene, PeleM4 appeared to be an intact Mhc class Ib gene. Appropriately splice PeleM4 mRNA transcripts were detected in the liver, lung, and thymus. Polymorphism of PeleM4 was examined by sequencing exon 2 and 3 of the PeleM4 gene from seven different Pele haplotypes and six PeleM4 alleles were identified. These results suggest that the existence of some H2 M region class Ib genes predates the divergence of Peromyscus and Mus genera which occurred 40-60 million years ago and provide an example of unique pathways in the evolution of Mhc class Ib genes.

Amino Acid Sequence↗

Isolation, purification, and characterization of deer mouse (Peromyscus maniculatus bairdii) prolactin.

Prolactin (PRL) secreted by Peromyscus maniculatus bairdii anterior pituitaries was purified by gel filtration on Sephadex G-100 and ion-exchange chromatography on DEAE-cellulose. Peromyscus PRL (pmPRL) eluted from Sephadex G-100 with an elution-to-void volume ratio of 1.9 and at a salt concentration of 100 mM NaCl on DEAE-cellulose. Electrophoretic homogeneity of the hormone was demonstrated in several gel systems. On 7 1/2% alkaline polyacrylamide gels, pmPRL migrated with an Rf of 0.65. The molecular weight of pmPRL was estimated at 24,000 to 26,000 by sodium dodecyl sulfate electrophoresis and molecular exclusion chromatography. The amino acid composition of pmPRL was similar to other mammalian PRLs including two tryptophan residues and three disulfide bonds. Leucine was found to be the NH2-terminal residue. Circular dichroism (CD) spectra indicated an alpha-helix content of 55 +/- 5%, a value typical for prolactin molecules. However, in the region of side-chain absorption, the CD spectrum displayed a weak, asymmetric, negative band near 299 nm, with the CD returning to slightly positive values at 292 nm. This CD pattern is not typical of other secreted or stored prolactins. In the pigeon crop-sac assay, pmPRL showed a prolactin-like activity of 21 IU/mg.

Amino Acids↗

Suppression of pineal melatonin in Peromyscus leucopus by different monochromatic wavelengths of visible and near-ultraviolet light (UV-A).

The purpose of this study was to examine the effects of monochromatic visible and near-ultraviolet radiation (UV-A) on pineal melatonin suppression in the white-footed mouse, Peromyscus leucopus. To this end, mice were entrained to a daily cycle of 8 h of light and 16 h of darkness. During the night when pineal melatonin contents were high, mice were individually exposed for 5 min to specific wavelengths of monochromatic light (10 nm half-peak bandwidths). Control animals received the same handling conditions but no experimental exposure. Pineal glands were collected from animals 18 min after the 5 min experimental exposure and were later assayed for melatonin content. In groups of animals exposed to equal photon densities (2.64 X 10(15) photons/cm2) of either 320, 340, 360, 500, or 560 nm, mean pineal melatonin content was significantly suppressed as compared to the unexposed control animals. The 640 nm wavelength (red) at the same photon density did not suppress pineal melatonin. These experiments are the first to demonstrate light-induced suppression of pineal melatonin in Peromyscus leucopus. In addition, these data reveal a novel finding: the suppression of pineal melatonin content by ultraviolet wavelengths as low as 320 and 340 nm.

Animals↗

Preference and aversion for deterrent chemicals in two species of Peromyscus mouse.

Deterrent chemicals such as quinine hydrochloride (QHC1) are generally considered to be aversive to mammals at all detectable concentrations. However, several species contain individuals that drink solutions containing low concentrations of deterrents in preference to plain water. The present study examines this paradoxical preference in two species of mouse, Peromyscus melanotis and P. aztecus. Preliminary findings had suggested that whereas some P. aztecus prefer low concentrations of QHC1, no P. melanotis prefer any concentration of QHC1. Experiment 1 tested the hypothesis that individual mice that prefer low concentrations of QHC1 would respond similarly to four other deterrents described by humans as bitter and/or astringent (ouabain, hop extract, sucrose octaacetate, and tannic acid) in 48-h, two-bottle choice tests. Peromyscus aztecus displayed a large amount of intraspecific variation in response to all five deterrents. Those P. aztecus that drank low concentrations of QHC1 in preference to plain water were significantly more likely to respond similarly to low concentrations of the other deterrents. No P. melanotis displayed a preference for any concentration of either deterrent. Experiment 2 examined the temporal stability of the response to 0.1 mM QHC1 in P. aztecus over six consecutive choice tests. Mice were divided into three groups based on their initial response to the QHC1 solution (preference, no response, or rejection) and then subjected to the 12-day test. The response of mice within each of the groups did not change significantly over time.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Regional analysis of 5-HT1A receptors in two species of Peromyscus.

Two species of deer-mice, Peromyscus maniculatus (P. man) and Peromyscus leucopus (P. leu), were compared for differences in 5-hydroxytryptamine1A (5-HT1A) receptor number and affinity. Both species enter into torpor; however, P. man enters spontaneous torpor with a higher frequency and for a longer duration than P. leu. Further, compared to P. leu a higher percentage of P. man exhibit daily torpor. Deer mice can be induced to enter torpor by a reduction in food supply, shortened photoperiods, and decreasing ambient temperature. Under these conditions, P. man enters into torpor more frequently, for longer durations, and with a higher percentage of individuals as compared to P. leu. [3H]8-OH-DPAT was used to label 5-HT1A brain receptors in three brain regions: the frontal cortex, brainstem, and striatum. In addition, the hypothalamus and hippocampus were examined for 5-HT1A receptor differences; however, no measurable specific binding could be determined in these regions. In the frontal cortex, the Bmax values were significantly lower in P. man compared to P. leu. There were no significant differences in the Bmax values in the striatum and brainstem between P. man and P. leu. Further, there were no significant differences in the Kd values between the two species in any of the brain regions examined. The absence of any difference in receptor number or affinity in any of the brain regions examined, except the cortex, suggests that the 5-HT1A receptor is most likely not involved in a more efficient pathway to torpor.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Hepatic aldehyde dehydrogenase activity in Peromyscus genetically deficient in alcohol dehydrogenase.

1. Hepatic aldehyde dehydrogenase (ALDH) activity was measured in two strains of deer-mouse, Peromyscus maniculatus. 2. There is no difference in the subcellular distribution of ALDH activity in the two strains. Animals of AdhN/AdhN genotype, lacking liver alcohol dehydrogenase (ADH), had 90% of total ALDH activity in the mitochondrial fraction compared to 94% for the AdhF/AdhF animals with normal ADH activity. Almost all of the remaining ALDH activity was in the hepatic cytosol with less than 1% in the microsomal fraction. 3. By contrast, in mice (Mus musculus) 43% of total hepatic ALDH activity was found in the cytosolic fraction and 55% in the mitochondrial. 4. It was concluded that the subcellular distribution of hepatic ALDH activity in Peromyscus does not vary with the presence or absence of ADH and that this ALDH distribution is not similar to that reported for other rodents.

Alcohol Dehydrogenase↗

Social and photoperiod effects on reproduction in five species of Peromyscus.

At temperate latitudes, mammals and birds use changes in day length to time their reproductive activities to coincide with seasonal fluctuations in the environment. Close to the equator, however, conditions permissive of breeding do not track changes in day length as well, so other cues may be more important than photoperiod. In a variety of vertebrates, social interactions regulate breeding condition. We hypothesized that individuals of different species of Peromyscus mice found closer to the equator would respond more strongly to housing with an opposite sex conspecific than they would to photoperiod. To test this hypothesis, we compared the effects of long and short day lengths versus 8 days of pair housing with a female on reproductive tissue weights and testosterone (T) concentrations in five species of Peromyscus (P. aztecus, P. eremicus, P. maniculatus, P. melanophrys, and P. polionotus). After 13 weeks of short days (8L:16D), P. maniculatus, P. melanophrys, and P. polionotus significantly reduced relative testes mass compared to long day (16L:8D) housed animals. Social housing, however, had no effect on tissue weights in any species. However, male P. polionotus paired with females for 8 days increased T concentrations compared to single-housed males, whereas paired P. maniculatus reduced T. These data suggest that mechanisms of photoperiodic and social regulation of reproductive function are mediated by different physiological mechanisms among closely-related species and that both phylogeny and environmental factors contribute to patterns of reproductive plasticity.

Animals↗

Genetic and serotypic characterization of Sin Nombre-like viruses in Canadian Peromyscus maniculatus mice.

In Canada, hantavirus infected deer mice (Peromyscus maniculatus) have been collected from British Columbia to Newfoundland. Partial sequencing of G1 and N protein encoding regions from Canadian Peromyscus maniculatus-borne hantaviruses demonstrated the existence of significant genotypic divergence among strains. Phylogenetic analysis showed that Sin Nombre (SN)-like viruses from eastern and western Canadian deer mice can be divided into at least two broad-based genogroups. Sequencing of mitochondrial DNA from infected deer mice originating from various eastern and western provinces showed that SN-like virus genogroups appeared to be associated with distinct haplotypes of mice. Sera from deer mice infected with eastern and western viral genotypes neutralized the Sin Nombre virus strain, Convict Creek 107, but not the New York 1 hantavirus. Despite the genetic heterogeneity of Canadian SN-like strains these hantaviruses do not appear to define unique hantavirus serotypes.

Amino Acid Sequence↗