Abstract Sea-level rise, erosion, and expanding human development threaten coastal archaeological sites all over the world. These problems are exacerbated by twenty-first century climate change, which accelerates sea-level rise, intensifies storm erosion, and draws populations toward the opportunities available on the coast. Archaeologists measure this threat with vulnerability analysis, remote sensing, and site monitoring, all of which demonstrate the massive scale of site damage and loss to be expected in the coming decades. The coastal archaeological record cannot be preserved, whole and intact. The authors advocate for an approach that moves beyond saving individual sites and instead considers the goal of heritage within a specific context. They suggest identifying the communities most affected by heritage loss and engaging with them on priorities and solutions, rather than focusing only on the loss of scientific data about the past. Indigenous-driven projects that bring together concerns about cultural and natural resources provide models for work that serves community heritage goals. Projects with strong community engagement can simultaneously gather valuable scientific information, monitor damage to archaeological sites, and help communities connect with their heritage. Limited resources are most efficiently used in ensuring that the work serves the future as well as the past.
Atlantic sturgeon (Acipenser oxyrinchus ssp. oxyrinchus) has been a food resource in North America for millennia. However, industrial-scale fishing activities following the establishment of European colonies led to multiple collapses of sturgeon stocks, driving populations such as those in the Chesapeake area close to extinction. While recent conservation efforts have been successful in restoring census numbers, little is known regarding genomic consequences of the population bottleneck. Here, we characterize its effect on present-day population structuring and genomic diversity in James River populations. To establish a pre-collapse baseline, we collected genomic data from archaeological remains from Middle Woodland Maycock's Point (c. 200-900 CE), as well as Jamestown and Williamsburg colonial sites. Demographic analysis of recovered mitogenomes reveals a historical collapse in effective population size, also reflected in diminished present-day mitogenomic diversity and structure. We infer that James River fall- and spring-spawning populations likely took shape in recent years of population recovery, where genetic drift enhanced the degree of population structure. The mismatch of mitogenomic lineages to geographical-seasonal groupings implies that despite their homing instinct and differential adaptation manifested as season-specific behaviour, colonization of new rivers has been a key ecological strategy for Atlantic sturgeon over evolutionary timescales.
The northwest coast of Wimal (Santa Rosa Island) has long been a focus of archaeological research, including former Santa Barbara Museum of Natural History archaeologist, geologist, and paleontologist Phil Orr's work from the 1940s-1960s. Orr pioneered the use of radiocarbon dating on the California Channel Islands, built extensive archaeological collections, and constructed a detailed cultural sequence. Here, we discuss the history and status of Orr's island research camp, archaeological site CA-SRI-766H, describing monitoring and erosion of the site during the past several decades. Two radiocarbon dates obtained from adjacent CA-SRI-7 (Orr's Camp shell midden) document Island Chumash occupation of the site between similar to 2820-1160 cal BP, helping place the area into broader regional context. Revisiting the historical documents and physical remains of past research can help understand the evolution of archaeological practice, evaluate outdated procedures of conducting research without tribal consultation and consent, and promote a more inclusive future of the discipline.
ABSTRACT Research at the Selin Farm site in northeastern Honduras examined changing cultural landscapes in a region whose prehistory is poorly understood. Low-impact field methods and radiocarbon dates reveal how this cultural landscape changed in response to shifting priorities among its inhabitants from a.d. 300–1000. We found evidence for rapid accumulation of deposits beginning around a.d. 600, when the site nearly doubled in size over the span of just decades, before retracting again within a few centuries. Although it was caught up in some of the broader social and political changes that began around a.d. 600 throughout northern Honduras and southern Mesoamerica, the longevity of this site suggests stability of the cultural and ecological systems in which it was embedded until the final centuries of occupation. Well-preserved, long-term deposits make Selin Farm an ideal location in which to explore entangled processes of environmental and social change in the little-known small-scale societies of Central America.
Historical ecology has revolutionized our understanding of fisheries and cultural landscapes, demonstrating the value of historical data for evaluating the past, present, and future of Earth's ecosystems. Despite several important studies, Indigenous fisheries generally receive less attention from scholars and managers than the 17th-20th century capitalist commercial fisheries that decimated many keystone species, including oysters. We investigate Indigenous oyster harvest through time in North America and Australia, placing these data in the context of sea level histories and historical catch records. Indigenous oyster fisheries were pervasive across space and through time, persisting for 5000-10,000 years or more. Oysters were likely managed and sometimes "farmed," and are woven into broader cultural, ritual, and social traditions. Effective stewardship of oyster reefs and other marine fisheries around the world must center Indigenous histories and include Indigenous community members to co-develop more inclusive, just, and successful strategies for restoration, harvest, and management.
The places in which people live and spend time are steeped in history, memory, and meaning from the intersection of daily life, environmental interactions, cultural practices, and ritual. Geologic features, plants, animals, and ecosystems merge with these cultural histories, forming critical parts of the landscape and areas of “high cultural salience,” or “cultural keystone places” (CKPs). We identify Kumqaq’ (Point Conception) and the surrounding area in California as a Chumash CKP. Ethnohistoric accounts and contemporary Chumash community members have long demonstrated the importance of Point Conception in Chumash worldview and identity, whereas biologists, ecologists, and conservationists reference the area's rich biodiversity and significance as a biogeographical boundary. Recent archaeological survey of the coastline surrounding Kumqaq’ highlights these connections, identifying over 50 archaeological sites—including shell middens, villages, lithic scatters, and rock art—with at least 9,000 years of occupation. Ongoing collaborations among archaeologists, the Nature Conservancy, and Chumash community members help document and understand the long-term linkages between cultural and biological diversity and how integrating these perspectives can help ensure the resilience of this nexus of human and natural history in the Anthropocene future.
The island laboratory concept has long been an important construct in island archaeology, with an emphasis on human biogeography and issues of isolation, connectivity, interaction, evolution, and extinction. The Pacific Coast of Alta and Baja California contains several offshore islands that offer a framework for evaluating a variety of cultural and ecological issues. The California Islands include large islands (>100 km2) with abundant resources that were attractive to ancient people for 13,000 years and numerous small islands (5 km2 in area or less), many of which contain evidence of human occupation for centuries to millennia. Most of these small islands have seen limited archaeological research and often are presumed to have been marginal locations for past human settlement. Today, small islands from San Francisco Bay to Baja California provide key habitat for endemic species, breeding seabirds and marine mammals, and rare plants. Here, we review the archaeology of small islands on California's outer coast, focusing on paleogeography, human settlement dynamics, and ecology and biodiversity. Synthesis of archaeological and environmental data demonstrate the utility of small islands as model systems for evaluating changes in island ecology.
Archaeologists have long emphasized the importance of large-scale excavations and multi-year or even decades-long projects at a single site or site complex. Here, we highlight archaeological field strategies, termed coring, profiling, and trenching (CPT), that rely on relatively small-scale excavations or the collection of new samples from intact deposits in previously excavated trenches (aka test units or pits). Examples from multiple sites in Africa, Asia, and North America demonstrate that CPT is highly effective for obtaining high-resolution archaeobiological and geoarchaeological samples (e.g., faunal and botanical remains, sediments) and artefacts from areas that have seen limited or no archaeological research, little systematic application of archaeological science methods, or research only on a relatively narrow time period or geographic scale. Designed to complement large-scale excavations at single sites, CPT is ideal for multi-scalar research that works in tandem with remote sensing techniques, providing samples for detailed laboratory analyses and offering a bridge between surface surveys and large-scale excavation. Given the threats facing archaeological sites around the world from climate change and human development, as well as financial, training and infrastructure constraints, and concerns from many Indigenous communities about large excavations, we argue that CPT is an important method for addressing 21st century human-environmental research questions.
During the last 10 years, we have learned a great deal about the potential for a coastal peopling of the Americas and the importance of marine resources in early economies. Despite research at a growing number of terminal Pleistocene archaeological sites on the Pacific Coast of the Americas, however, important questions remain about the lifeways of early Paleocoastal peoples. Research at CA-SRI-26, a roughly 11,700 year old site on California’s Santa Rosa Island, provides new data on Paleoindian technologies, subsistence strategies, and seasonality in an insular maritime setting. Buried beneath approximately two meters of alluvium, much of the site has been lost to erosion, but its remnants have produced chipped stone artifacts (crescents and Channel Island Amol and Channel Island Barbed points) diagnostic of early island Paleocoastal components. The bones of waterfowl and seabirds, fish, and marine mammals, along with small amounts of shellfish document a diverse subsistence strategy. These data support a relatively brief occupation during the wetter “winter” season (late fall to early spring), in an upland location several km from the open coast. When placed in the context of other Paleocoastal sites on the Channel Islands, CA-SRI-26 demonstrates diverse maritime subsistence strategies and a mix of seasonal and more sustained year-round island occupations. Our results add to knowledge about a distinctive island Paleocoastal culture that appears to be related to Western Stemmed Tradition sites widely scattered across western North America.
Archaeobotanical remains recovered from a large similar to 8000-year-old-shell midden (CA-SRI-666) on Santa Rosa Island provide the first ancient plant data from this large island, shedding light on ancient patterns of plant use, subsistence, and sedentism. Faunal data from shell midden samples retrieved from three site loci contain evidence for harvesting of rocky intertidal shellfish and estuarine clams and oysters from a paleo-estuary in the vicinity. CA-SRI-666 appears to have been an Early Holocene village site occupied year round. A key to the development of early sedentary societies on the island may have been geophytes, especially Brodiaea-type corms, which provided an abundant source of carbohydrates and calories that complemented marine resources rich in fat and whole animal proteins. Our data demonstrate the value of integrating paleobotanical and zooarchaeological data from island and coastal archaeological sites to help elucidate human social, cultural, and environmental dynamics, including sedentism.
Powerful hurricanes in 2017—Hurricanes Harvey, Irma, and Maria—were stark examples of how these previously rare catastrophes are becoming increasingly normal due to climate change, with dire consequences for cultural resources. These storms, sometimes called megastorms or superstorms, were the first in which high-resolution satellite imagery was available in the immediate aftermath, providing a new tool for rapidly evaluating damage to archaeological sites. Using Hurricane Harvey as a case study, we examined two recent spatial models of archaeological site vulnerability to long-term climate change to determine whether these models are also adequate for predicting the impacts of short-term climate catastrophes. We further examined a number of individual variables that we expected to be useful in predicting which sites would be most vulnerable to flooding, such as proximity to rivers, the coast, or the floodplain. Neither the models nor the individual variables correlated well to increased risk to archaeological sites, with the exception of land use. Sites located within developed areas benefited from measures to protect property and were less often flooded. We suggest that strategies for responding to megastorms would be most effective through a combination of preparedness, analysis of remote sensing data, and existing field research methods.
Worldwide, prehistoric hunter-gatherers and horticulturalists translocated a variety of animals and plants to islands. Translocations enhanced island ecosystems, introducing animals and plants used for food or raw materials. We review recent zooarchaeology, genetics, and stable isotope data to evaluate the evidence for ancient translocations to the islands of Baja and Alta California. Native peoples likely translocated foxes, mice, ground squirrels, domesticated dogs, iguanids, and possibly skunks to some California Islands. Although some animal translocations were for subsistence or broader environmental enhancement, others were either unintentional (mice) or more closely associated with ritual and other cultural practices. The dearth of translocations tied directly to subsistence suggests that marginal island food sources were not a primary factor driving translocation.
From the icy shores of Labrador to the warm mangroves of the Florida Keys, North America’s Atlantic Coast was a magnet for human subsistence and settlement for millennia. North America’s Atlantic Coast is a land of diversity united by rich coastal and terrestrial ecosystems that were home to a wide variety of Native American societies and distinct cultural adaptations and systems. This introductory chapter synthesizes the coastal archaeology as well as historical ecology and paleography of North America’s Atlantic Coast, focusing on major research developments of the last 30 years. It also provides the context and framework for the rest of the volume.
Since the collapse of the Clovis-first model of the peopling of the Americas some 30 years ago, there has been growing interest in the Pacific Coast as a potential early human dispersal corridor. With postglacial eustatic sea level rise inundating most New World paleoshorelines older than ~7000 years, however, locating terminal Pleistocene sites along modern coastlines is challenging. Using the distribution and archaeology of subaerial Paleocoastal archaeological sites on California’s Northern Channel Islands as a guide, we developed a Geographic Information Systems (GIS) predictive model to locate and map submerged high probability landforms, which might contain Paleocoastal sites. Our results illustrate how archaeologists can narrow targets in their search for evidence of the first Americans along submerged Pacific Coast paleoshorelines.
Forty years ago, Knut Fladmark (1979) argued that the Pacific Coast offered a viable alternative to the ice-free corridor model for the initial peopling of the Americas—one of the first to support a “coastal migration theory” that remained marginal for decades. Today, the pre-Clovis occupation at the Monte Verde site is widely accepted, several other pre-Clovis sites are well documented, investigations of terminal Pleistocene subaerial and submerged Pacific Coast landscapes have increased, and multiple lines of evidence are helping decode the nature of early human dispersals into the Americas. Misconceptions remain, however, about the state of knowledge, productivity, and deglaciation chronology of Pleistocene coastlines and possible technological connections around the Pacific Rim. We review current evidence for several significant clusters of early Pacific Coast archaeological sites in North and South America that include sites as old or older than Clovis. We argue that stemmed points, foliate points, and crescents (lunates) found around the Pacific Rim may corroborate genomic studies that support an early Pacific Coast dispersal route into the Americas. Still, much remains to be learned about the Pleistocene colonization of the Americas, and multiple working hypotheses are warranted.
Human use of estuarine shellfish and other coastal marsh resources began on California's Santa Rosa Island at least 11800-11100 years ago. Productive estuaries in California and elsewhere in the Americas were present by the Late Pleistocene, providing shellfish, waterfowl, fish and seaweeds that attracted some of the First Americans.