Grand Canyon-Parashant National Monument: Paleontological resource inventory (public version)

2021 ◽  
Author(s):  
Justin Tweet ◽  
Holley Flora ◽  
Summer Weeks ◽  
Eathan McIntyre ◽  
Vincent Santucci

Grand Canyon-Parashant National Monument (PARA) in northwestern Arizona has significant paleontological resources, which are recognized in the establishing presidential proclamation. Because of the challenges of working in this remote area, there has been little documentation of these resources over the years. PARA also has an unusual management situation which complicates resource management. The majority of PARA is administered by the Bureau of Land Management (BLM; this land is described here as PARA-BLM), while about 20% of the monument is administered by the National Park Service (NPS; this land is described here as PARA-NPS) in conjunction with Lake Mead National Recreation Area (LAKE). Parcels of state and private land are scattered throughout the monument. Reports of fossils within what is now PARA go back to at least 1914. Geologic and paleontologic reports have been sporadic over the past century. Much of what was known of the paleontology before the 2020 field inventory was documented by geologists focused on nearby Grand Canyon National Park (GRCA) and LAKE, or by students working on graduate projects; in either case, paleontology was a secondary topic of interest. The historical record of fossil discoveries in PARA is dominated by Edwin McKee, who reported fossils from localities in PARA-NPS and PARA-BLM as part of larger regional projects published from the 1930s to the 1980s. The U.S. Geological Survey (USGS) has mapped the geology of PARA in a series of publications since the early 1980s. Unpublished reports by researchers from regional institutions have documented paleontological resources in Quaternary caves and rock shelters. From September to December 2020, a field inventory was conducted to better understand the scope and distribution of paleontological resources at PARA. Thirty-eight localities distributed across the monument and throughout its numerous geologic units were documented extensively, including more than 420 GPS points and 1,300 photos, and a small number of fossil specimens were collected and catalogued under 38 numbers. In addition, interviews were conducted with staff to document the status of paleontology at PARA, and potential directions for future management, research, protection, and interpretation. In geologic terms, PARA is located on the boundary of the Colorado Plateau and the Basin and Range provinces. Before the uplift of the Colorado Plateau near the end of the Cretaceous 66 million years ago, this area was much lower in elevation and subject to flooding by shallow continental seas. This led to prolonged episodes of marine deposition as well as complex stratigraphic intervals of alternating terrestrial and marine strata. Most of the rock formations that are exposed in the monument belong to the Paleozoic part of the Grand Canyon section, deposited between approximately 510 and 270 million years ago in mostly shallow marine settings. These rocks have abundant fossils of marine invertebrates such as sponges, corals, bryozoans, brachiopods, bivalves, gastropods, crinoids, and echinoids. The Cambrian–Devonian portion of the Grand Canyon Paleozoic section is represented in only a few areas of PARA. The bulk of the Paleozoic rocks at PARA are Mississippian to Permian in age, approximately 360 to 270 million years old, and belong to the Redwall Limestone through the Kaibab Formation. While the Grand Canyon section has only small remnants of younger Mesozoic rocks, several Mesozoic formations are exposed within PARA, mostly ranging in age from the Early Triassic to the Early Jurassic (approximately 252 to 175 million years ago), as well as some middle Cretaceous rocks deposited approximately 100 million years ago. Mesozoic fossils in PARA include marine fossils in the Moenkopi Formation and petrified wood and invertebrate trace fossils in the Chinle Formation and undivided Moenave and Kayenta Formations.

2017 ◽  
Author(s):  
Jeff Martin ◽  
Rachel A. Martin ◽  
Jim I. Mead

Fossils of Bison (bison) are scarce on the Colorado Plateau, especially in and around the Greater Grand Canyon Region. Because of poor preservation and collection biases in the region, various resource managers have erroneously designated bison a nonnative and human-(re)introduced species. This decision directly impacts an extant herd of approximately 400 bison that periodically meander onto Grand Canyon National Park lands from neighboring U.S. Forest Service and State of Arizona lands. We re-examined and verified paleozoological museum specimens of this large mammal confirming a prehistoric and early historic presence of Bison on the Colorado Plateau. Our findings indicate that Bison bison should be considered a native species on the Colorado Plateau because they have a nearly continuous record of inhabitance in the region. This record is supported by 74 Bison-bearing fossil, subfossil, and historical localities since the latest Pleistocene.


Author(s):  
Nancy Stanton ◽  
Steven Buskirk ◽  
James Fowler

Hanging gardens are relatively small, isolated mesophytic communities surrounded by the xeric environment of canyon walls in the entrenched dendritic drainage pattern of the Colorado Plateau (Welsh 1989a, Malanson 1980, Welsh and Toft 1972). Various sandstone formations such as the NavaJo in Zion National Park serve as aquifers which produce permanent seeps or springs when underlain by impervious layers (Welsh and Toft 1972). These reliable sources of water and the associated processes of erosion and sedimentation, allow the formation of biotic communities that starkly contrast with the surrounding desert. Several endemic plant species have been found in Utah hanging garden surveys (Welsh 1989b, Loope 1977, Welsh and Toft 1972) and Dinosaur National Monument (T. Naumann, personal comm.). Virtually nothing is known about the invertebrate fauna. Our specific research objectives are to (1) survey the plant and invertebrate animal communities of hanging gardens in Zion National Park (ZION) and Glen Canyon National Recreation Area (GLCA), (2) map the geographic distribution of the endemics identified and determine levels of endemism within and among parks; (3) determine levels of similarity between each sampled hanging garden plant and insect community, and to (4) determine similarities among plant communities and among insect communities across gardens.


2020 ◽  
Author(s):  
Miranda Terwilliger ◽  
Cynthia Hartway ◽  
Kate Schoenecker ◽  
Gregory Holm ◽  
Linda Zeigenfuss ◽  
...  

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