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zenodo32/100

Subspecies and Distribution. R. f fulvescens J. A. Allen, 1894 — SE Arnizona (SW USA) and NE Sonora State (NW Mexico). R.f.amoenusElliot,1905—knownonlyfromthetypelocalityinReforma,Oaxaca(SMexico). R.f.awrantiusJ.A.Allen,1895—fromSEKansasandSWMissouriSintoTexas,Louisiana,andMississippi(USA). R.f.canusBenson,1939—SWTexas(USA)andNCMexico. R.f.chiapensisA.H.Howell,1914—fromChiapasState(SEMexico)SEtoHonduras. R.f.difficilisMerriam,1901—WCVeracruz,EHidalgo,andPueblastates(ECMexico). R.f.griseoflavusMerriam,1901—CMexico. R.f.helvolusMerriam,1901—EGuerreroandOaxacastates(SMexico). R.f.infernatisHooper,1950—SedgeofPueblaandNOaxacastates(SMexico). R.f.intermediusJ.A.Allen,1895—STexas(USA)andNEMexico. R.f.laceyi].A.Allen,1896—CTexas(SUSA). R. f. menidionalis S. Anderson & J. K. Jones, 1960 — W Nicaragua. R.f.mustelinusA.H.Howell,1914—fromSMichoacanSEtoSOaxaca(SMexico). R.f.nelsoniA.H.Howell,1914—ColimaandWedgeofJalisco(WMexico). R.f.tenuis].A.Allen,1899—SSonoraandChihuahuaStoNayaritstates(WMexico). R.f.toltecusMerriam,1901—portionsofQuerétaro,Hidalgo,México,andMichoacanstates(ECMexico). R. f. tropicalis Davis, 1944 — from S Tamaulipas S to C Veracruz states (E Mexico). in Cricetidae

Subspecies and Distribution. R. f fulvescens J. A. Allen, 1894 — SE Arnizona (SW USA) and NE Sonora State (NW Mexico). R.f.amoenusElliot,1905—knownonlyfromthetypelocalityinReforma,Oaxaca(SMexico). R.f.awrantiusJ.A.Allen,1895—fromSEKansasandSWMissouriSintoTexas,Louisiana,andMississippi(USA). R.f.canusBenson,1939—SWTexas(USA)andNCMexico. R.f.chiapensisA.H.Howell,1914—fromChiapasState(SEMexico)SEtoHonduras. R.f.difficilisMerriam,1901—WCVeracruz,EHidalgo,andPueblastates(ECMexico). R.f.griseoflavusMerriam,1901—CMexico. R.f.helvolusMerriam,1901—EGuerreroandOaxacastates(SMexico). R.f.infernatisHooper,1950—SedgeofPueblaandNOaxacastates(SMexico). R.f.intermediusJ.A.Allen,1895—STexas(USA)andNEMexico. R.f.laceyi].A.Allen,1896—CTexas(SUSA). R. f. menidionalis S. Anderson & J. K. Jones, 1960 — W Nicaragua. R.f.mustelinusA.H.Howell,1914—fromSMichoacanSEtoSOaxaca(SMexico). R.f.nelsoniA.H.Howell,1914—ColimaandWedgeofJalisco(WMexico). R.f.tenuis].A.Allen,1899—SSonoraandChihuahuaStoNayaritstates(WMexico). R.f.toltecusMerriam,1901—portionsofQuerétaro,Hidalgo,México,andMichoacanstates(ECMexico). R. f. tropicalis Davis, 1944 — from S Tamaulipas S to C Veracruz states (E Mexico).

opennotspecifiedNov 2017View details →
zenodo32/100

Subspecies and Distribution. N.a.albigulaHartley,1894—fromextremeSENevada,Arizona,andmostofNewMexico(SWUSA)SintoNESonoraandCChihuahuastates(NMexico). N.a.brevicaudaDurrant,1934—restrictedtosmallisolatedareaalongtheUtah—Coloradoborder(WUSA). N.a.laplataensisF.W.Miller,1933—SEUtah,SWColorado,NArizona,andNWNewMexico(SWUSA). N.a.mearnsiGoldman,1915—smallregioninextremeSWArizona(SWUSA). N.a.seriTownsend,1912—restrictedtoTiburonIintheSeaofCortez(NWMexico). N.a.sheldoniGoldman,1915—smallregioninextremeNESonoraState(NWMexico). N. a. venusta True, 1894 — SE Californa, extreme S Nevada, and W Arizona (SW USA) and extreme NE Baja California and NW Sonora states (NW Mexico). in Cricetidae

Subspecies and Distribution. N.a.albigulaHartley,1894—fromextremeSENevada,Arizona,andmostofNewMexico(SWUSA)SintoNESonoraandCChihuahuastates(NMexico). N.a.brevicaudaDurrant,1934—restrictedtosmallisolatedareaalongtheUtah—Coloradoborder(WUSA). N.a.laplataensisF.W.Miller,1933—SEUtah,SWColorado,NArizona,andNWNewMexico(SWUSA). N.a.mearnsiGoldman,1915—smallregioninextremeSWArizona(SWUSA). N.a.seriTownsend,1912—restrictedtoTiburonIintheSeaofCortez(NWMexico). N.a.sheldoniGoldman,1915—smallregioninextremeNESonoraState(NWMexico). N. a. venusta True, 1894 — SE Californa, extreme S Nevada, and W Arizona (SW USA) and extreme NE Baja California and NW Sonora states (NW Mexico).

opennotspecifiedNov 2017View details →
zenodo32/100

Distribution. Patchily distributed from Mexico (Sonora along W coast to Yucatan Peninsula) through Central America to South America in Colombia, N Venezuela, Guyana, Suriname, French Guiana, E Ecuador, exioreme W & NE Brazil, E Peru, Bolivia, Paraguay, and N Argentina; also Trinidad I. in Molossidae

Distribution. Patchily distributed from Mexico (Sonora along W coast to Yucatan Peninsula) through Central America to South America in Colombia, N Venezuela, Guyana, Suriname, French Guiana, E Ecuador, exioreme W & NE Brazil, E Peru, Bolivia, Paraguay, and N Argentina; also Trinidad I.

opennotspecifiedOct 2019View details →
zenodo32/100

Distribution. SW & SC USA (from S California E to extreme W Arkansas and from SE Colorado and Utah S to Texas) and N & C Mexico (Baja California Peninsula, including San Martin I, Sonora, Chihuahua, Coahuila, Nuevo Leon, N Sinaloa, Durango, Zacatecas, San Luis Potosi, E Jalisco, and Hidalgo). in Soricidae

Distribution. SW & SC USA (from S California E to extreme W Arkansas and from SE Colorado and Utah S to Texas) and N & C Mexico (Baja California Peninsula, including San Martin I, Sonora, Chihuahua, Coahuila, Nuevo Leon, N Sinaloa, Durango, Zacatecas, San Luis Potosi, E Jalisco, and Hidalgo).

opennotspecifiedJul 2018View details →
zenodo32/100

FIGURES 16–21 in A new species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean pine-oak woodlands of northeastern Sonora, Mexico

FIGURES 16–21. Morphology of Aphonopelma bacadehuachi, sp. nov. from Sonora, Mexico (female paratype, APH-1356). 16, carapace, dorsal view; 17, right pedipalp, prolateral view; 18, coxa of right leg I, prolateral view; 19, spermathecae; 20, metatarsus and tarsus of left leg III, ventral view; 21, metatarsus and tarsus of left leg IV, ventral view. Scale bar = 5 mm (except for spermathecae, scale bar = 2 mm).

opennotspecifiedOct 2019View details →
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FIGURE 22 in A new species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean pine-oak woodlands of northeastern Sonora, Mexico

FIGURE 22. Map of the southwestern United States and northwestern Mexico showing the distributions of the Madrean members of the Marxi species group and Aphonopelma mooreae. The localities for A. mooreae are based on reports provided in iNaturalist (https://www.inaturalist.org/observations?taxon_id=264079, accessed 16 March 2019). The distribution for A. peloncillo only reflects specimens from the eastern foothills of the Peloncillo Mountains and the Animas Valley in New Mexico and does not include several specimens outside of this area as reported in Hamilton et al. (2016); further research is necessary to confirm the identity of the latter specimens. State abbreviations: AZ = Arizona, NM = New Mexico, SON = Sonora, CHI = Chihuahua. The Madrean pine-oak woodlands shapefile was "exploded" from a larger shapefile depicting the planet's biodiversity hotspots (downloaded from http://legacy.cepf.net/SiteAssets/hotspots_2016_1.zip, accessed 16 March 2019).

opennotspecifiedOct 2019View details →
zenodo32/100

FIGURE 3–4 in A new species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean pine-oak woodlands of northeastern Sonora, Mexico

FIGURE 3–4. Dorsal habitus of Aphonopelma bacadehuachi, sp. nov. from Sonora, Mexico. 3, male holotype (APH-1357); 4, female paratype (APH-1356). Scale bar = 20 mm.

opennotspecifiedOct 2019View details →
zenodo32/100

FIGURE 2 in A new species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean pine-oak woodlands of northeastern Sonora, Mexico

FIGURE 2. Maximum likelihood phylogeny of the Madrean members of the Marxi species group based on COX1 mtDNA. For presentation sake, specimen labels have been removed from the tree tips. Numbers along branches indicate maximum likelihood bootstrap support values. Photograph is an adult male Aphonopelma madera from the Huachuca Mountains in southeastern Arizona.

opennotspecifiedOct 2019View details →
zenodo32/100

FIGURES 5–15 in A new species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean pine-oak woodlands of northeastern Sonora, Mexico

FIGURES 5–15. Morphology of Aphonopelma bacadehuachi, sp. nov. from Sonora, Mexico (male holotype, APH-1357). 5, carapace, dorsal view; 6, patella and tibia of left leg I, prolateral view; 7, tibial apophysis of left leg I, prolateral view; 8, metatarsus and tarsus of left leg III, ventral view; 9, metatarsus and tarsus of left leg IV, ventral view; 10, left pedipalp, retrolateral view; 11, left pedipalp, prolateral view; 12, femur of leg III, dorsal view; 13, palpal bulb, prolateral view; 14, palpal bulb, retrolateral view; 15, palpal bulb, dorsal view. Scale bar = 5 mm (except for palpal bulb and illustration of tibial apophysis, scale bar = 2 mm).

opennotspecifiedOct 2019View details →
zenodo32/100

FIGURE 1 in A new species of Aphonopelma (Araneae: Mygalomorphae: Theraphosidae) from the Madrean pine-oak woodlands of northeastern Sonora, Mexico

FIGURE 1. Scatterplot of principal components for measurements of mature male (top) and female (bottom) Madrean Aphonopelma species. Percentage values indicate the proportion of variation explained by a particular principal component (PC1 and PC2).

opennotspecifiedOct 2019View details →
zenodo32/100

Figure 2 in Distribution of tiger salamanders in northern Sonora, Mexico: comparison of sampling methods and possible implications for an endangered subspecies

Figure 2. Relationship between mean volume filtered and mean DNA index (±95% confidence interval) for sites where we detected Western Tiger Salamanders (Ambystoma mavortium) with eDNA methods. For every 1% increase in volume of water filtered, DNA recovered decreased by 1.42% (DNA Index = e1.54 [95%CI = 4.14] × Volume (ml) −1.42 [95%CI = 0.80]; R2 = 0.25).

opennotspecifiedNov 2021View details →
zenodo32/100

Figure 3 in Distribution of tiger salamanders in northern Sonora, Mexico: comparison of sampling methods and possible implications for an endangered subspecies

Figure 3. Effect of total aquatic vegetation (standardized) on detection of Western Tiger Salamanders (Ambystoma mavortium; ±95% confidence interval), based on all sampling methods. Total aquatic vegetation is the sum of percent cover of emergent vegetation, submerged vegetation, and algae.

opennotspecifiedNov 2021View details →
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Figure 1 in Distribution of tiger salamanders in northern Sonora, Mexico: comparison of sampling methods and possible implications for an endangered subspecies

Figure 1. Waterbodies sampled for Western Tiger Salamanders (Ambystoma mavortium) and sub-species in northern Sonora, Mexico, during 2015-2018. Yellow circles indicate locations where salamanders were estimated to be present, white circles indicate where salamanders were not detected, and turquoise triangles indicate sites where Jones et al. (1988) sampled in 1983 and did not detect A. mavortium. The red star indicates the approximate location of Cananea, Sonora.

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE 3 in A phylogenetic analysis of Neotoma varia (Rodentia: Cricetidae), a rediscovered, endemic, and threatened rodent from Datil Island, Sonora, Mexico

FIGURE 3. Oclusal view of the upper molars: (A) N. varia, (B) N. albigula albigula, (C) N. a. melanura, (D) N. a. seri, and (E) N. a. venusta. M1 is the first molar, M2 the second molar, and M3 the third molar. (I) Is the contact area between the lobes of the fist molar and the second. (II) Is the presence of three lobes in the third molar.

opennotspecifiedOct 2010View details →
zenodo32/100

FIGURE 1. Localities for Neotoma varia and N in A phylogenetic analysis of Neotoma varia (Rodentia: Cricetidae), a rediscovered, endemic, and threatened rodent from Datil Island, Sonora, Mexico

FIGURE 1. Localities for Neotoma varia and N. albigula specimens examined in this study. The numbers correspond to specific localities in Table 1.

opennotspecifiedOct 2010View details →
zenodo32/100

Sonora Cholla: A Grid of Cloud-free, Solar Metallicity Models in Chemical Disequilibrium for the JWST Era

<p>Exoplanet and brown dwarf atmospheres commonly show signs of disequilibrium chemistry. In the James Webb Space Telescope&nbsp;era high resolution spectra of directly &nbsp;imaged exoplanets will allow the characterization of their atmospheres in more detail, and allow systematic tests for the &nbsp;presence of chemical species that deviate from thermochemical equilibrium in these atmospheres. Constraining &nbsp;the presence of disequilibrium chemistry in these atmospheres as a function of parameters &nbsp;such as their effective temperature and surface gravity will allow us to &nbsp;place better constrains in the physics governing these atmospheres.</p> <p>This database&nbsp;contains&nbsp;a grid of cloud-free, solar metallicity &nbsp;atmospheres for brown dwarfs and wide separation giant planets with key molecular species such as&nbsp;CH<sub>4</sub>, H<sub>2</sub>O, CO and NH<sub>3</sub> &nbsp;in disequilibrium. The grid covers atmospheres with T<sub>eff</sub>~[500 K,1300 K], log<em>g</em>~[3.0,5.5] (cgs) and an eddy diffusion parameter &nbsp;of log K<sub>zz</sub>=2, 4 and 7 (cgs). A description of the code and a study of the effect of different parameters&nbsp;within the grid on the temperature and composition profiles of our atmospheres is presented in the accompanying paper &quot;The Sonora Substellar Atmosphere Models. II.&nbsp;Cholla: A Grid of Cloud-free, Solar &nbsp;Metallicity Models in Chemical Disequilibrium for the<em> JWST&nbsp;</em>Era&quot; (accepted to ApJ, Oct. 2021)</p>

opencc-by-4.0Oct 2021View details →
zenodo32/100

FIGURE 3 in The family Nyctaginaceae (Caryophyllales) in Sonora, Mexico

FIGURE 3. Neotype of the name Senkenbergia coulteri (K000572646). © copyright of the Board of Trustees of the Royal Botanic Gardens, Kew. http://specimens.kew.org/herbarium/K000572646

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 4 in The family Nyctaginaceae (Caryophyllales) in Sonora, Mexico

FIGURE 4. Distribution of the Nyctaginaceae genera in the State of Sonora. A: genera Abronia, Allionia, Acleisanthes, Okenia, and Pisonia; B: genus Boerhavia; C: genus Mirabilis; D: genera Boldoa, Commicarpus, Cyphomeris, and Salpianthus.

opennotspecifiedDec 2022View details →
zenodo32/100

FIGURE 2 in The family Nyctaginaceae (Caryophyllales) in Sonora, Mexico

FIGURE 2. Some Nyctaginaceae species occurring in Sonora (Mexico). A: Abronia maritima; B: Abronia villosa; C: Allionia incarnata; D: Boerhavia xanti; E: Boerhavia coccinea; F: Commicarpus scandens; G: Mirabilis coccinea; H: Mirabilis laevis; I: Pisonia capitata; J: Salpianthus macrodontus (photos by J. J. Sánchez-Escalante).

opennotspecifiedDec 2022View details →
zenodo28/100

Sonora 2018: Cloud-free, solar C/O substellar evolution and photometry

<p>These models of the evolution and predicted&nbsp;photometry for non-irradiated, substellar mass objects (brown dwarfs and extrasolar giant planets) belong to the Sonora 2018 model series, to be described in Marley et al., currently in preparation for submission&nbsp;to Astrophysical Journal. Evolution tables provide luminosity,&nbsp;effective temperature, radius, gravity, and moment of inertia as a function of object mass and age. Photometry tables provide expected brightness in a selection of commonly used passbands, including those of JWST.</p> <p>This particular set of tables are for cloudless, solar C/O ratio objects at three metallicities ([M/H]=-0.5, 0.0, +0.5)&nbsp;(relative to Lodders (2010) abundances) with&nbsp;3.25 &le; log g(cgs) &le; 5.5&nbsp;and&nbsp;200 &le; T<sub>eff</sub>(K) &le; 2400.&nbsp;&quot;Rainout&quot; chemical equilibrium is assumed.&nbsp;</p> <p>&quot;co1.0&quot; in filename&nbsp;nomenclature refers to 1.0 times the solar C/O ratio.&nbsp;</p> <p>The solar composition [M/H]=0.0 files are the same as in&nbsp;https://zenodo.org/record/1309035#.XoKM6y-ZN3k except for the addition here of moment of inertia column.</p> <p>Errata:</p> <p>README.pdf</p> <p>- units on luminosity are erg/s not erg/s/cm^2&nbsp;(4/13/2020)</p> <p>&nbsp;</p>

opencc-by-4.0Mar 2020View details →

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