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At least 19 recordsLinked to original sources

Genome sequence analysis provides evidence that a boreal crustacean colonised Svalbard well before the ongoing Atlantification of the Arctic.

The study of present-day species distributions often raises questions about historical demography. A particularly interesting phenomenon to put in historical context is contemporary human-induced atlantification and its role in reshaping Arctic ecosystems. Despite this, the colonisation history of the Arctic remains generally understudied. In this study, we investigated the demographic history of the northern acorn barnacle, Semibalanus balanoides, a typically boreal species on the Svalbard Archipelago. Our focus was to determine the source and timing of its colonisation of this Arctic archipelago. Using low-coverage whole-genome sequence data, we evaluated two competing hypotheses: whether S. balanoides populations colonised Svalbard through ancient natural processes before the Anthropocene, or if their appearance is more recent, either natural or a consequence of growing anthropogenic influences, such as increased connectivity and global warming. Our results suggest that this boreal species expanded into the Arctic during the later phase of the Holocene Thermal Optimum, well before human-induced climate change.

Animals

[Infant mortality: heredity and environment].

An analysis of familial liability to infant mortality is presented. Heritability estimates for three periods of the demographic evolution of an isolated population (Isle-aux-Coudres, Quebec) are provided. Average heritability is on the order of 27%. This is interpreted as being partly due to sibs common environment and partly to dominance variance effects of genes. The real additive variance of the familial liability might well be nil.

Environment

[Population structure and consaguinity in Dota, Costa Rica, 1888-1962].

A study of consanguinity and population structure was carried out in a sample of 498 consanguineous (MC) and 570 non-consanguineous matings (MNC) in the Parrish of Dota, Costa Rica, during a period of 75 years. The inbreeding coefficient (F) shows fluctuations in time (476 to 194 x 10(-5) with an increase from 1888 to 1917, followed by a decrease in the last years but remains high in nonmigrant marriages. There is a high frequency of unions among second cousins. The endogamy percentage is high, greater in MC (80%) than in MNC (61%). Exogamy tends to diminish with time among both types of union. Effects of age distributions in the groups was not found. Marital and migrational distances are short and tend to become shorter in the final periods. There is a positive correlation (r = 0.71; p less than 0.05) between these distances in MC but not in MNC; distances are shorter in MC. Immigration is minimal and reduced to short distances. Post-marital movement is intense (37%) and involves greater distances. Emigratory behavior is identical in MC and MNC.

Consanguinity

Next-generation phylogeography reveals unanticipated population history and climate and human impacts on the endangered floodplain bitterling (Acheilognathus longipinnis).

BACKGROUND: Floodplains harbor highly biodiverse ecosystems, which have been strongly affected by both past climate change and by recent human activities, resulting in a high prevalence of many endangered species in these habitats. Understanding the history of floodplain species over a wide range of timescales can contribute to effective conservation planning. We reconstructed the population formation history of the Itasenpara bitterling Acheilognathus longipinnis, an endangered floodplain fish species in Japan, over a broad timescale based on phylogenetic analysis, demographic modeling, and historical demographic analysis using mitogenome and whole-genome sequences. A genome sequence was newly assembled as a reference for the resequencing analysis. This bitterling is distributed in three plains separated by high mountain ranges and exhibits ecological characteristics well adapted to floodplain environments. RESULTS: Our analyses revealed an unexpected population branching pattern, gene flow, and timing of the differentiation that occurred within a few hundred thousand years, i.e., long after the mountain uplift that was assumed to be the primary geological cause of the population differentiation. The analyses also showed that all local populations experienced a severe decline during the last glacial and post-glacial periods. CONCLUSIONS: Our results suggest that the floodplain bitterling was able to disperse through unknown routes after mountain uplift and that its populations were strongly influenced by climatic and geographic changes in glacial-interglacial cycles and subsequent human activities, probably related to its floodplain-dependent ecology. The genomic data highlight the unanticipated distribution process of this species and the magnitude of the impact of human activities, with important implications for its conservation.

Endangered Species

The genetic and demographic impact of immigrants in a largely endogamous community.

Historical demographic data extending back approximately 300 years were analysed to determine the demographic and genetic impact of in-migrants to an endogamous Swiss Alpine village. In-migrants were involved in only 14% of the marriages recorded in the village. In addition, only slightly more than 50% of the in-migrants were represented in the 1970 gene pool of the village. However, in-migrants accounted for nearly 38% of this gene pool. This seemingly anomalous situation can be explained by the fact that while the fertility of in-migrants and the marriage rate among their children are reduced (accounting for the near 50% "drop-our rate" of in-migrants from the gene pool), the fertility of the children of in-migrants and the marriage rate among the grandchildren of in-migrants are increased relative to village natives (accounting for the high proportion of genes in the gene pool ultimately attributable to in-migrants). Our results clearly demonstrate that although this community forms an endogamous population, it is definitely not a genetic isolate. Other investigators are cautioned against automatic invocation of the simplifying (and, thus, extremely tempting) assumption that endogamy is equivalent to genetic isolation.

Emigration and Immigration

The changing U.S. labor force and occupational differentiation by sex.

The degree of occupational differentiation by sex in the U.S. labor force is examined utilizing various measures and occupational classifications over the period 1900-1970. A consideration of comparable occupations over time indicates that while occupational differentiation by sex is still substantial, an irregular, measurable decline in that differentiation has occurred during this century. Existing labor force structure seems relatively unimportant in explaining this ongoing change. Apparently more significant are social and historical factors as they have influenced specific occupations in certain decades.

Demography

The use of model life tables to estimate mortality for the United States in the late nineteenth century.

This paper seeks to extend our knowledge about mortality in the late nineteenth century United States by using census mortality data for older children and teenagers to fit model tables. The same method can also be used with partially underregistered death data. The most commonly used model tables, the Coale and Demeny West Model, apparently do not adequately depict the changing shape of mortality over the period 1850--1910. An alternative model life table system is presented, based on the Brass two parameter logit system and available reliable life tables from the period 1850--1910. The two parameter system must be reduced to a one parameter system by means of estimated relationships between the parameters so that the fitting procedure can be used. The resulting model system is, however, heavily dependent on the experience of northern, industrial states, especially Massachusetts.

Actuarial Analysis

The United States population by race and urban-rural residence 1790-1860: reference tables.

The U.S. population by race and urban-rural residence from 1790 to 1860 is presented. The definition of the urban population used is that population residing in incorporated places of 2,500 population or more. The rural population is the residual of the total population minus the urban population, as defined above. The tables provide previously unavailable data on the urban-rural distribution of the black and white populations 1790-1860 and are compatible with data for the total population published by the Census Bureau.

Black or African American