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13 results for “gila river”
Long-term monitoring of herpetofauna along the Salt and Gila Rivers in and near the greater Phoenix metropolitan area, ongoing since 2012 (Reformatted to the ecocomDP Design Pattern)
This data package is formatted as an ecocomDP (Ecological Community Data Pattern). For more information on ecocomDP see https://github.com/EDIorg/ecocomDP. This Level 1 data package was derived from the Level 0 data package found here: https://pasta.lternet.edu/package/metadata/eml/knb-lter-cap/627/5. The abstract below was extracted from the Level 0 data package and is included for context:
Long-term monitoring of herpetofauna along the Salt and Gila Rivers in and near the greater Phoenix metropolitan area, ongoing since 2012 (Reformatted to a Darwin Core Archive)
This data package is formatted as a Darwin Core Archive (DwC-A, event core). For more information on Darwin Core see https://www.tdwg.org/standards/dwc/. This Level 2 data package was derived from the Level 1 data package found here: https://pasta.lternet.edu/package/metadata/eml/edi/192/5, which was derived from the Level 0 data package found here: https://pasta.lternet.edu/package/metadata/eml/knb-lter-cap/627/5. The abstract below was extracted from the Level 0 data package and is included for context:
Long-term monitoring of herpetofauna along the Salt and Gila Rivers in and near the greater Phoenix metropolitan area, ongoing since 2012
Waterways are often the focus of restoration efforts in urban areas. In arid regions, passive discharge of urban water sources may stimulate the recovery or growth of wetland and riparian features in dewatered or ephemeral aquatic systems. In the greater Phoenix metropolitan area (GPMA), sections of the Salt and Gila Rivers have been the targets of active restoration through seeding, planting, and irrigation. At the same time, revegetation has occurred in some sections of the rivers in response to runoff from urban water sources (e.g., storm drains). This dataset catalogs the results of herpetological surveys conducted at several locations along the Salt and Gila Rivers in and around the GPMA beginning in March 2012. Survey locations include riparian areas in urban and non-urban locations that have been (actively) restored or have revegetated in response to urban runoff, and that feature ephemeral or perennial sources of water. This is a long-term monitoring effort of the CAP LTER with on-going data collection.
Rephotography along the Salt and Gila Rivers in Maricopa County, AZ between Granite Reef Dam and Gillespie Dam (1895-1999)
Scanned black-and-white photographic images for the Salt and Gila Rivers in Maricopa, County, Arizona, between Granite Reef Dam and Gillespie Dam at 77 sites. Some sites lack images (they are known to exist, but the imagery is not useful). For each site, there is at least one historical image that starts the series, and then one, two, or three subsequent images that are re-photographs of the original sites decades later. The original images are from as early as the 1890s, but the majority are from the 1940s. Repeat photographs are from the 1980s and 1990s. Many of the original images are from U.S. Army Corps of Engineers flood project surveys in the 1940s. The images show changing conditions in and along the main river channels, documenting ecosystem adjustments in vegetation, geomorphology, and surface hydrology. Some images document change in the built environment in and near the rivers. In some cases, particularly in the central urban area, sites have become so altered that it is impossible to relocate the exact spot of the original image. At these sites the location of repeat images changed 10 m or less; in fewer than 5 cases modern construction obliterated the original site. GPS was not available at outset of the project, so that positions were located by alignment of landmarks and landscape features.
Data from: Rio Grande sucker Pantosteus plebeius is native to the Gila River Basin
In the late 1940s, Rio Grande Sucker Pantosteus plebeius was reported in tributaries of the Gila River in the Colorado Basin and presumed to be introduced because of its absence in mid-19th century surveys. We assayed genetic variation at 10 microsatellite loci and two mtDNA genes (cyt b and ND4) to test the hypothesis of human-mediated introduction into the Gila within the last century. Phylogeographic analysis indicated that Gila River populations shared recent common ancestry with populations in the Mimbres River. Using approximate Bayesian computation (ABC), we rejected the hypothesis that Rio Grande Sucker was introduced to the upper Gila River within the last century. Rather, we hypothesize an older (~4000 years before present) headwater capture event that facilitated transfer of fishes from the Mimbres to Sapillo Creek in the Gila Basin. From there, suckers dispersed to the San Francisco River and became established in upland stream habitats. Rio Grande Sucker exhibits low levels (< 10%) of introgression with Desert Sucker but maintains species cohesion in the Gila Basin. We conclude that Rio Grande Sucker is native to the Gila Basin, and that these populations harbor unique diversity that could play an important role in species conservation. More generally, rigorous testing for human mediated translocation is a difficult analytical problem, but a definitive means to do so is essential to fully understand the biogeography of freshwater fishes of the American Southwest.
Prospective Studies of the Natural History of Diabetes Mellitus and Its Complications in the Gila River Indian Community
ClinicalTrials.gov study NCT00339482. IPD Sharing: UNDECIDED. Countries: 1. Publications: 9.
Data from: Rio Grande sucker Pantosteus plebeius is native to the Gila River Basin
Open the record for dataset details and reuse information.
Figure 3 from: Hershler R, Ratcliffe V, Liu H, Hay C (2014) Taxonomic revision of the Pyrgulopsis gilae (Caenogastropoda, Hydrobiidae) species complex, with descriptions of two new species from the Gila River basin, New Mexico. ZooKeys 429: 69-85. https://doi.org/10.3897/zookeys.429.7865
Figure 3 - Shells, opercula and radula, Pyrgulopsis marilynae n. sp. A Holotype, USNM 1135068 B Shell, USNM 1135067 C, D Opercula (outer, inner sides), USNM 1135067 E Portion of radular ribbon, USNM 1135067 F Central teeth, USNM 1135067 G Lateral and inner marginal teeth, USNM 1135067. Scale bars A, B 1.0 mm; C, D 100 µm; E 20 µm, F, G 10 µm.
Figure 5 from: Hershler R, Ratcliffe V, Liu H, Hay C (2014) Taxonomic revision of the Pyrgulopsis gilae (Caenogastropoda, Hydrobiidae) species complex, with descriptions of two new species from the Gila River basin, New Mexico. ZooKeys 429: 69-85. https://doi.org/10.3897/zookeys.429.7865
Figure 5 - Shells, opercula and radula, Pyrgulopsis similis n. sp. A Holotype, USNM 1135064 B Shell, USNM 854684 C, D Opercula (outer, inner sides), USNM 1135065 E Portion of radular ribbon, USNM 1135065 F Central teeth, USNM 1135065 G Lateral and inner marginal teeth, USNM 1135065. Scale bars A, B 1.0 mm; C, D 200 µm; E 20 µm, F, G 10 µm.
Figure 2 from: Hershler R, Ratcliffe V, Liu H, Hay C (2014) Taxonomic revision of the Pyrgulopsis gilae (Caenogastropoda, Hydrobiidae) species complex, with descriptions of two new species from the Gila River basin, New Mexico. ZooKeys 429: 69-85. https://doi.org/10.3897/zookeys.429.7865
Figure 2 - Bayesian tree based on the combined (COI, NDI) dataset. Posterior probabilities for nodes are given when >95%. Specimen codes are from the Table 1.
Figure 4 from: Hershler R, Ratcliffe V, Liu H, Hay C (2014) Taxonomic revision of the Pyrgulopsis gilae (Caenogastropoda, Hydrobiidae) species complex, with descriptions of two new species from the Gila River basin, New Mexico. ZooKeys 429: 69-85. https://doi.org/10.3897/zookeys.429.7865
Figure 4 - Penes (dorsal, ventral surfaces). A, B Pyrgulopsis marilynae n. sp., USNM 883175 C, D Pyrgulopsis similis n. sp., USNM 1135065 E, F Pyrgulopsis gilae, BellMNH 20898. Scale bars A–F 200 µm. Dg2 dorsal gland along left edge Dg3 dorsal gland along right distal edge Ipg inner (left) penial gland Opg outer (right) penial gland Tg terminal gland Vg ventral gland.
Figure 1 from: Hershler R, Ratcliffe V, Liu H, Hay C (2014) Taxonomic revision of the Pyrgulopsis gilae (Caenogastropoda, Hydrobiidae) species complex, with descriptions of two new species from the Gila River basin, New Mexico. ZooKeys 429: 69-85. https://doi.org/10.3897/zookeys.429.7865
Figure 1 - Map showing the distribution of mtDNA clades I-III.
Figure 6 from: Hershler R, Ratcliffe V, Liu H, Hay C (2014) Taxonomic revision of the Pyrgulopsis gilae (Caenogastropoda, Hydrobiidae) species complex, with descriptions of two new species from the Gila River basin, New Mexico. ZooKeys 429: 69-85. https://doi.org/10.3897/zookeys.429.7865
Figure 6 - Shells, Pyrgulopsis gilae. A USNM 1135052 B USNM 854574. Scale bars A, B, 1.0 mm.
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