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11 results for “Chiricahua Mountains”
FIGURE 9. Cave Creek Canyon localities. A in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 9. Cave Creek Canyon localities. A. Lower Cave Creek Canyon, view south-southwest. Exposed cliffs of rhyolite rise above the valley floor. B. View northwest toward Paradise from FR42, just north of its junction with FR42B and East Turkey Creek, Upper Cave Creek Canyon, showing scrub oak-juniper habitat typical of the area. C. Holotype locality for U. chiricahuensis: "Hippy Hollow," at the East Turkey Creek crossing of FR42 near the road's junction with FR42B, Upper Cave Creek Canyon. See figure 7.
FIGURE 6 in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 6. Chiricahua Mountains. The black circle marks the town of Portal near the mouth of Cave Creek Canyon. Inset, top right: the range sits in the southeast corner of Arizona, near the borders of New Mexico and Mexico.
FIGURE 8. Chiricahua Mountains. A in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 8. Chiricahua Mountains. A. The Chiricahua Mountains from NM Hwy 9 near its junction with NM Hwy 80, view of the east flank. B. Cave Creek Canyon from Foothills Rd., view southwest into canyon mouth.
FIGURE 5. Ululodes chiricahuensis. A in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 5. Ululodes chiricahuensis. A. Terminalia, lateral aspect, male, JRJ_10038. B. Terminalia, ventral aspect, male, JRJ_10038. C. Terminalia, lateral aspect, female. Inset: interdens, lateral aspect, JRJ_03217. D. Terminalia, ventral aspect, female, JRJ_03217.
FIGURE 2 in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 2. Ululodes chiricahuensis. Wings diagrammed (male). Note the relative brevity and depth of the HW and the concavity along the margin of both wings in the CuP region.
FIGURE 7. Collection localities for U in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 7. Collection localities for U. chiricahuensis, Cave Creek Canyon. The larger black circle to the east marks the town of Portal, and the smaller circle to the northwest marks the intermittently occupied hamlet of Paradise. The black rectangle indicates the Southwestern Research Station main campus. Black circles indicate paratype localities. The black star is the holotype locality. Abbreviations: CCC, Cave Creek Canyon; ETC, East Turkey Creek; FR, Forest Road; HM, Herb Martyr Campground; SFR, South Fork Road.
FIGURE 3. Ululodes chiricahuensis. A in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 3. Ululodes chiricahuensis. A. Eyes and postocular sclerite setae, JRJ_03217. Note the fringe of erect setae on the sclerite. B. Tegular setal tuft, JRJ_03217. The tuft is erect and white in both sexes, different from that seen in sympatric U. mexicanus.
FIGURE 1 in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 1. Images on all figures are of Ululodes chiricahuensis, n. sp. Scale = 10 mm. A. Habitus, male holotype, JRJ_02581. Note the antennae are straight. In sympatric U. mexicanus, the antennae are sigmoidally curved. B. Habitus, female, JRJ_02584. As in males of U. chiricahuensis, the antennae are straight. The diminutive distal wing maculae are also not seen in U. mexicanus.
FIGURE 10 in A new species of Ululodes owlfly (Ascalaphidae: Ululodinae) from Cave Creek Canyon in the Chiricahua Mountains of Arizona
FIGURE 10. Cave Creek Canyon localities (continued). A. Herb Martyr Recreational Area, Upper Cave Creek Canyon, view southwest, representative of habitat in all areas where specimens of U. chiricahuensis thus far have been collected. B. FR42A at Herb Martyr Campground, where specimen JRJ_02584 was collected. C. Greenhouse Trail parking lot on FR42, where specimen JRJ_02583 was collected, using the light sheet setup shown.
Woody plant diversity before and after the Horseshoe Two Fire in the Chiricahua Mountains, Arizona, USA
<p>Aim: Drastic changes in fire regimes are altering plant communities, inspiring ecologists to better understand the relationship between fire and plant species diversity. We examined the impact of a 90,000-ha wildfire on woody plant species diversity in an arid mountain range in southern Arizona, USA. We tested recent fire-diversity hypotheses by addressing the impacts of fire severity, fire variability, historical fire regimes, and topography on diversity.</p> <p>Location: Chiricahua National Monument, Chiricahua Mountains, Arizona. USA., part of the Sky Islands of the US-Mexico borderlands.</p> <p>Taxon: Woody plant species.</p> <p>Methods: We sampled woody plant diversity in 138 plots before (2002-2003) and after (2017-2018) the 2011 Horseshoe Two Fire in three vegetation types and across fire severity and topographic gradients. We calculated gamma, alpha, and beta diversity and examined changes over time in burned vs. unburned plots and the shapes of the relationships of diversity with fire severity and topography.</p> <p>Results: Alpha species richness declined and beta and gamma diversity increased in burned but not unburned plots. Fire-induced enhancement of gamma diversity was confined to low fire severity plots. Alpha diversity did not exhibit a clear continuous relationship with fire severity. Beta diversity was enhanced by fire severity variation among plots and increased with fire severity up to very high severity, where it declined slightly.</p> <p>Main Conclusions: The results reject the intermediate disturbance hypothesis for alpha diversity but weakly support it for gamma diversity. Spatial variation in fire severity promoted variation among plant assemblages, supporting the pyrodiversity hypothesis. Long-term drought probably amplified fire-driven diversity changes. Despite the apparent benign impact of the fire on diversity, the replacement of two large conifer species with a suite of drought-tolerant shrubs signals the potential loss of functional diversity, a pattern that may warrant restoration efforts to retain these important compositional elements.</p>
Woody plant diversity before and after the Horseshoe Two Fire in the Chiricahua Mountains, Arizona, USA
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