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[Morphological studies of the effect of chromium-III-chloride on the islet cell organ in rats under the conditions of high and low fat diets].

It is well known, that the glucose tolerance factor amplifies the peripheral action of insulin. This factor contains trivalent chromium. This investigation deals with the influence of trivalent chromium on morphometric and histological parameters of pancreatic islets of wistar rats. Animals were given chromium-III-chloride for 8 weeks (perorally, daily 15 ppm or 3 ppm) under conditions of high (HFD) and low (LFD) fat diet. Staining of pancreatic slices was performed with Victoria blue and acid Fuchsin. The relative volume density of the endocrine cells was obtained as the ratio of the number of islet cells to the number of exocrine pancreatic cells. The statistical evaluation was performed by using Students t-test. In HFD animals (n = 12) chromium supplementation caused an increase by 41% of volume of islets compared to HFD controls. A lot of small islets were found, which may be newly formed. Moreover, polynesia and hyperplasia of islets were observed. LFD animals (n = 12) do not show any morphometric changes in comparison with LED controls; but macronesia, micronesia and polynesia of islets were observed. In conclusion we suggest, that under special conditions trivalent chromium has growth stimulatory effects on the endocrine pancreas.

Animal Feed↗

Craniometric variation among modern human populations.

Previous studies of genetic markers and mitochondrial DNA have found that the amount of variation among major geographic groupings of Homo sapiens is relatively low, accounting for roughly 10% of total variation. This conclusion has had implications for the study of human variation and consideration of alternative models for the origin of modern humans. By contrast, it has often been assumed that the level of among-group variation for morphological traits is much higher. This study examines the level of among-group variation based on craniometric data from a large sample of modern humans originally collected by W. W. Howells. A multivariate method based on quantitative genetics theory was used to provide an estimate of FST--a measure of among-group variation that can be compared with results from studies of genetic markers. Data for 57 craniometric variables on 1,734 crania were analyzed. These data represent six core areas: Europe, Sub-Saharan Africa, Australasia, Polynesia, the Americas, and the Far East. An additional set of analyses was performed using a three-region subset (Europe, Sub-Saharan Africa, and the Far East) to provide comparability with several genetic studies. The minimum FST (assuming complete heritability) for the three-region analysis is 0.065, and the minimum FST for the six-region analysis is 0.085. Both of these are less than the average FST from genetic studies (average estimates of 0.10-0.11). The smaller value of the minimum FST estimates is expected since it provides an estimate of FST expected under complete heritability. Using an estimate of average craniometric heritability from the literature provides an estimate of FST of 0.112 for the three-region analysis and 0.144 for the six-region analysis. These results show that genetic and craniometric data are in agreement, qualitatively and quantitatively, and that there is limited variation in modern humans among major geographic regions.

Africa↗

Ancient and modern mitochondrial DNA sequences and the colonization of the Pacific.

Mitochondrial DNA (mtDNA) is a valuable tool for the study of recent human evolution because it is easy to analyse, is inherited uniparentally and has a relatively rapid rate of evolution. mtDNA analysis has been used extensively for the elucidation of the pattern of migrations of human populations. Several studies have focused on the Pacific because Polynesia was settled by humans for the first time relatively recently and there is a wealth of archaeological and linguistic data to complement genetic data on the region. Results of mtDNA analyses on modern-day Pacific populations indicate reduced genetic variability, and suggest that the Polynesians descend from people who migrated relatively recently from island Southeast Asia and that a population bottleneck occurred during the settlement of the central Pacific. Several informative polymorphisms have been identified in the hypervariable control region of mtDNA in modern-day Pacific populations that are helpful in tracing the ancestral affinities of these people. Studies of these mtDNA polymorphisms in ancient bones of prehistoric Pacific islanders indicate that the proto-Polynesian colonizers may have descended from the early settlers of island Melanesia. Although fraught with technical difficulties, studies of ancient DNA can provide valuable evidence on the genetic affinities of past peoples.

Asia↗

Ancient DNA from Polynesian rats: extraction, amplification and sequence from single small bones.

The human colonisation of Polynesia was a major event in world prehistory. It represents one of the last human population migrations, and one which required crossing major water barriers. Though the subject of Pacific population origins has been approached by scholars from numerous fields for nearly a century, recent years have seen the problem addressed by human geneticists. Since the initial report describing the recovery of DNA from skeletal remains, ancient DNA studies have also focused on the Pacific region. In this paper we present the results of ancient DNA analyses of Rattus exulans, an animal that was transported by ancestral Polynesians through the Pacific to the far reaches of the Polynesian triangle. Analysis of DNA of R. exulans skeletal remains has many advantages over studies of ancient human remains, yet the one drawback has been the recovery of ancient DNA from single bones of these very small rodents. We have successfully modified standard extraction protocols for ancient DNA and have consistently extracted, amplified and sequenced mitochondrial DNA (mtDNA) from less than 0.1 g of R. exulans bone and tooth samples recovered from archaeological sites throughout the Pacific, ranging from 400 to 2000 years old.

Animals↗

Aspects of sound communication in the pearlfish Carapus boraborensis and Carapus homei (Carapidae).

Several species of Carapidae are known to have symbiotic relationships with marine invertebrates. The two most common species in Moorea (French Polynesia), Carapus boraborensis and Carapus homei, undergo conspecific and heterospecific encounters in the same holothurian host during which they produce sounds. Another characteristic of these fish lies in their abilities to produce sounds. The objective of this study was dual: (1) to seek if there was a sexual difference in the sounds produced by C. boraborensis; (2) to seek if there was a difference in the sound emissions between heterospecific and conspecific encounters. In each trial, sounds were only recorded when one individual entered the sea cucumber that was already occupied. In encounters, sounds were structured in regular pulse emissions whose pulse lengths and periods allowed to significantly distinguish each species, as well as both sexes in C. boraborensis. In the latter species, results show for the first time that temporal features of the emitted sounds can have a functional importance in sex identification. In heterospecific encounters, sounds were reduced 68% of the time to a single pulse emission and there was a modification in the pulse length of each species: it shortens in C. homei and it lengthens in C. boraborensis. It highlights that both carapids are able to adapt their sounds to the facing species. Because a modification of the sound appears to be done at the first emission, it is supposed that recognition precedes the sound emission.

Air Sacs↗

Spatial and temporal variation in mortality of newly settled damselfish: patterns, causes and co-variation with settlement.

Local abundance and dynamics of sedentary species with a dispersing life stage reflect factors that influence input and loss rates to patches of suitable habitat. For reef fishes, more attention has focused on sources of variation in input (larval settlement) than on patterns and causes of subsequent losses. We estimated spatial and temporal variation in juvenile mortality of a tropical damselfish, yellow-tail dascyllus (Dascyllus flavicaudus; Pomacentridae), using a fixed density experiment that was repeated 5 times at the same eight mid-lagoon localities at Moorea, French Polynesia. There was little temporal variation in the overall percent of outplanted fish lost in 48 h among five time periods (range: 32-37%), whereas there was substantial variation among the sites in the average percent lost (range: 16-56%). Differences in loss rates among the sites were highly consistent among the time periods. Densities of predators of juvenile dascyllus varied substantially among the eight sites and were highly correlated with loss rate of dascyllus. We used the empirically derived relationship between predator density and damselfish loss rate to predict the loss rate of dascyllus at four additional sites, and there was excellent agreement between the predicted and observed loss rates. There was a strong positive relationship between predator densities at the 12 sites and structural attributes of the reefs that do not change on a fast time scale, suggesting why there was strong spatial and weak temporal variation in mortality rates, with no interaction between spatial and temporal variation. Natural settlement rates of yellow-tail dascyllus and of a close congener (humbug dascyllus, D. aruanus) varied among the sites, and settlement of the two species was inversely correlated (r=-0.68). Settlement of these species was not statistically correlated with variation in mortality rate, but there was a weak trend for settlement of yellow-tail dascyllus to be greater at sites with higher mortality (r=0.27), and for settlement of humbug dascyllus to be greater at sites with lower mortality (r=-0.32). We calculated that even these weak co-variances could reduce (yellow-tail dascyllus) or increase (humbug dascyllus) the spatial variance in density of 48-h-old recruits arising at settlement by 19 and 27% respectively. Taken together, the findings suggest that the interactions between and relative contributions of input and loss processes can differ substantially over a scale of a few kilometers, resulting in a mosaic of local patches characterized by different abundances and dynamics.

Analysis of Variance↗

Dynamics of demographically open mutualists: immigration, intraspecific competition, and predation impact goby populations.

Although it is now recognized that mutualistic species are common and can have stable populations, the forces controlling their persistence are poorly understood. To better understand the mechanisms that impact the stability of obligate mutualists, I conducted several field experiments within a sandy coral reef lagoon in Moorea, French Polynesia that manipulated densities of fish (gobies) that interact mutualistically with shrimp. Obligate, mutualistic partnerships of gobies and shrimp are common on Indo-Pacific coral reefs and have been shown previously to interact as follows: shrimp construct burrows in which both species reside, and gobies warn shrimp of predators through tactile communication. Augmentation of gobies by up to 100% above ambient densities within 9 m2 plots produced no change in overall density of gobies or shrimp because gobies competed intraspecifically for a limited number of shrimp burrows and smaller gobies were outcompeted by larger individuals. I used predators to assess the impact of goby removal on the stability of goby and shrimp populations. First, although surveys taken throughout the lagoon revealed no relationship between goby and predator densities, predators correlated negatively with the proportion of adult gobies and positively with the proportion of small gobies paired with large shrimp. Second, experimental augmentation of predators resulted in a dramatic reduction of adult gobies within predator-addition plots, but had no impact on overall densities as immigrants rapidly replaced the missing adult gobies. Furthermore, goby turnover resulted in an increase in the proportion of small gobies paired with large shrimp because body sizes of gobies and shrimp in a burrow were similar prior to predator introduction, and predators apparently had a greater impact on gobies than shrimp. The mechanisms that prevent expansion (intraspecific competition) and collapse (immigration) of goby-shrimp populations likely contribute to local-scale stability of mutualistic populations in other terrestrial and aquatic environments.

Animals↗

One year evaluation of immunogenicity conferred by a Chinese hamster ovary cell recombinant hepatitis B vaccine in a French Polynesian newborn immunization programme.

In 1988, a hepatitis immunization programme, using a Chinese hamster ovary (CHO) cell recombinant vaccine, was implemented for newborn children in the Austral archipelago (French Polynesia). Three different schedules were used: (i) 4 vaccine doses at months (M) 0, M1, M2 and M12; (ii) 3 vaccine doses at M0, M1, M6; and (iii) 3 vaccine doses at M0, M1, M2. Results at the one year follow-up may be summarized as follows. Of 197 infants who received one or more doses of CHO-recombinant vaccine, (i) none was an HBsAg carrier; (ii) 89.5% had anti-HBs-antibody titres greater than 10 miu/ml; and (iii) 95.9% had seroconverted for at least one of the 2 antibodies studied (anti-HBs or anti-pre-S2). After 2 doses (M0, M1), anti-HBs seroconversion rate and geometric mean titre were, respectively, 82.6% and 98.47 miu/ml. After 3 doses, seroconversion rates and geometric mean titres were, respectively, 91.1% and 200.59 miu/ml using schedule M0, M1, M2, and 100% and 1253.4 miu/ml using the M0, M1, M6 schedule. None of the 7 vaccinated neonates born to HBsAg/HBeAg positive mothers was found to be an HBsAg carrier. These preliminary results indicate that, in field conditions, vaccination with a CHO-recombinant vaccine resulted in high immunogenicity.

Female↗

Toxicity of Australian and French polynesian strains of Gambierdiscus toxicus (Dinophyceae) grown in culture: characterization of a new type of maitotoxin.

Gambierdiscus toxicus strains isolated from Australia and French Polynesia were grown in modified f2 and f10 nutrient media and the cells extracted for ciguatoxin and maitotoxin. The high nutrient enrichment of f2 media induced aberrant cell morphology in both strains whereas the majority of cells grown in f10 media had the typical lenticular shape of wild G. toxicus cells. The Australian strain grew faster and produced greater cell densities than the French Polynesian strain. Different chromatographic types of maitotoxin were extracted from the two G. toxicus strains and purified to homogeneity using reverse-phase high-performance liquid chromatography. The toxins elicited similar bioassay signs in mice, but produced different death-time vs dose relationships. The maitotoxin extracted from the Australian strain eluted later on both straight-phase and reverse-phase chromatographic columns than did the maitotoxin extracted from the French Polynesian strain. The maitotoxin extracted from the French Polynesian strain was chromatographically identical to reference maitotoxin. For each strain no differences were found between maitotoxins extracted from cells grown in f2 or f10 media. Only one toxin was produced by each strain of G. toxicus. Ciguatoxin was not produced by either strain.

Animals↗

Study of factors that influence the clinical response to ciguatera fish poisoning.

A 1-year observational study of all standardized medical records of ciguatera fish poisoning notified cases was conducted in French Polynesia. The objective was to determine the factors that influence the clinical response to ciguatera fish poisoning. During the year 1991, there were 551 cases notified on standardized code sheets by physicians (notification rate 276 per 100,000). The mean age was 36.6 years (S.D. 15.6). The largest age group was that between 30 and 49 years old (notification rate 562 per 100,000). The gender ratio (M/F) was 1.6. Of the 551 cases, 257 (47%) presented with a history of a previous attack. A clinical score was calculated to assess the outcome for each case. The adjusted odds ratio (OR) for a severe disease (33% with a score greater than 5) was significantly increased when the fish ingested was carnivorous (OR = 1.62, P = 0.02) and when a history of a previous attack was reported (OR = 1.71, P = 0.006). The increased severity of multiple episodes and the increase of the notification rate with age suggest a possible accumulation of toxin in the human organism.

Adolescent↗

Age-grading and growth of Wuchereria bancrofti (Filariidea: Onchocercidae) larvae by growth measurements and its use for estimating blood-meal intervals of its Polynesian vector Aedes polynesiensis (Diptera: Culicidae).

Growth in length and width of Wuchereria bancrofti (Filariidea: Onchocercidae) larvae developing in its Polynesian vector Aedes polynesiensis (Diptera: Culicidae) was analysed using a mathematical approach to objectively extract patterns. L1 had a U-shaped growth in length, while widths followed an S-shaped function. L2 had an S-shaped growth in length and width. Growth in length of L3 was also S-shaped, while widths had an asymptotic size following a period of rapid shrinkage. The greatest difference between length and width was in stage 3 where the length was over 75 times greater than the width. The ratio of length to width was approximately 50 for microfilariae and only 10 for the L1 ('sausage') stage. Characteristic mean length (and width) were approximately 280(7) microm for microfilariae, approximately 181 microm for L1 at their smallest, and approximately 1584(22) microm for L3 infective larvae. There was a great increase in length during stage 2 from approximately 322(27) to approximately 982(31) microm. Stage duration decreased with increasing temperature while growth rate increased, giving steeper growth curves. There was no effect of temperature on size, except for L3, which were shorter when mosquitoes were reared at higher temperature. It appears that larval growth is a continuous process from microfilariae to the young L3 stage, and continuously modifies the larval parasite aspect, even within each stage. Thus, information on larval shape may be used as an age indicator and in some cases, may give an estimation on time elapsed since infection of the vector. An important demographic parameter used in most mathematical models describing transmission of parasites by insect vectors is the length of the gonotrophic cycle of the vector, i.e. the time interval between two successive blood-meals. Usual methods for computing such a parameter are based on mark-recapture techniques. However, reliable estimates need substantial capture rates, which are not always possible. This paper presents another approach in which marked mosquitoes are those naturally infected by W. bancrofti. For one mosquito, the time since infection is simply the age of the developing larval parasite. Our method first expresses the age of larval parasite as a fraction of total development time (from microfilariae entering the vector to L3 larvae) using a regression model based on measurements of the parasite's length and width. This fraction of development is then converted to a chronological age since infection, using a back-calculation procedure involving ambient temperatures and growth rates of W. bancrofti larvae in the vector. The method is applied to wild caught Ae. polynesiensis in French Polynesia to compute the length of the gonotrophic cycle. This mosquito species comes to bite approximately 3, 6-7 and 9 days after a first infectious blood-meal. Then the length of the gonotrophic cycle may be of 3-4 days.

Aedes↗

Melanesian origin of Polynesian Y chromosomes.

BACKGROUND: Two competing hypotheses for the origins of Polynesians are the 'express-train' model, which supposes a recent and rapid expansion of Polynesian ancestors from Asia/Taiwan via coastal and island Melanesia, and the 'entangled-bank' model, which supposes a long history of cultural and genetic interactions among Southeast Asians, Melanesians and Polynesians. Most genetic data, especially analyses of mitochondrial DNA (mtDNA) variation, support the express-train model, as does linguistic and archaeological evidence. Here, we used Y-chromosome polymorphisms to investigate the origins of Polynesians. RESULTS: We analysed eight single nucleotide polymorphisms (SNPs) and seven short tandem repeat (STR) loci on the Y chromosome in 28 Cook Islanders from Polynesia and 583 males from 17 Melanesian, Asian and Australian populations. We found that all Polynesians belong to just three Y-chromosome haplotypes, as defined by unique event polymorphisms. The major Y haplotype in Polynesians (82% frequency) was restricted to Melanesia and eastern Indonesia and most probably arose in Melanesia. Coalescence analysis of associated Y-STR haplotypes showed evidence of a population expansion in Polynesians, beginning about 2,200 years ago. The other two Polynesian Y haplotypes were widespread in Asia but were also found in Melanesia. CONCLUSIONS: All Polynesian Y chromosomes can be traced back to Melanesia, although some of these Y-chromosome types originated in Asia. Together with other genetic and cultural evidence, we propose a new model of Polynesian origins that we call the 'slow-boat' model: Polynesian ancestors did originate from Asia/Taiwan but did not move rapidly through Melanesia; rather, they interacted with and mixed extensively with Melanesians, leaving behind their genes and incorporating many Melanesian genes before colonising the Pacific.

Asia↗

Thespesenone and dehydrooxoperezinone-6-methyl ether, new sesquiterpene quinones from Thespesia populnea.

Thespesia populnea grows as a small tree or large shrub that occurs throughout Polynesia. We report the isolation of 7-hydroxycadalene (6), thespesenone (7), and dehydrooxoperezinone-6-methyl ether (8) from its red heartwood. Compounds 7 and 8 are reported for the first time in nature. Several other sesquiterpene quinones were isolated including mansonone E (4), mansonone F (3), mansonone D (1), mansonone G (9), mansonone M (10), and thespesone (4); the (13)C NMR spectra of these compounds are reported for the first time.

Malvaceae↗

Species of Stephanostomum Looss, 1899 (Digenea: Acanthocolpidae) from fishes of Australian and South Pacific waters, including five new species.

Nine species of Stephanostomum are described from Australian and Southern Pacific marine fishes: Stephanostomum madhaviae n. sp. [syn. S. orientalis of Madhavi (1976)] from Caranx ignobilis, off Hope Island, Queensland, with 30-34 circum-oral spines and vitelline fields almost reaching to the posterior extremity of the cirrus-sac; S. bicoronatum (Stossich, 1883) from Argyrosomus hololepidotus, off Southport Broadwater, Queensland; S. votonimoli n. sp. from Scomberoides lysan, off Moorea, French Polynesia (type-locality) and Western Samoa, with 33-38 circum-oral spines, a uroproct and the vitelline fields not reaching the cirrus-sac; S. nyoomwa n. sp. from Caranx sexfasciatus, off Heron Island, Queensland, with 33-38 circum-oral spines, a uroproct and the vitelline fields reaching the cirrus-sac; S. cobia n. sp. from Rachycentron canadum, off Heron Island, with 36 circum-oral spines, a uroproct and the vitelline fields reaching the cirrus-sac; S. petimba Yamaguti, 1970 from Seriola hippos, off Rottnest Island, Western Australia; S. pacificum (Yamaguti, 1951) from Pseudocaranx wrighti, off Fremantle, Western Australia; S. aaravi n. sp. from Lethrinus miniatus, off Heron Island, with 36-39 circum-oral spines, probably a uroproct and the vitelline fields reaching the ventral sucker; S. pagrosomi (Yamaguti, 1939) from L. nebulosus, L. miniatus and L. atkinsoni off Heron Island, Pagrus auratus, off Rottnest Island, Western Australia and Gymnocranius audleyi, off Heron Island. A digest of described species of Stephanostomum is included as an appendix.

Animals↗

Population structure, history and gene flow in a group of closely related land snails: genetic variation in Partula from the Society Islands of the Pacific.

Previous studies of Partula land snails from the Society Islands, French Polynesia, have shown that populations within species are highly differentiated in terms of their morphology, behaviour, ecology and molecular genetic variation. Despite this level of variability, differences between species are sometimes small, possibly reflecting the fact that reproductive isolation is not always complete and there exists the opportunity for genetic exchange between taxa through hybridization. The present study uses sequence data from a mitochondrial gene to further investigate genetic variation in Society Island Partula. Most populations are found in this study to be highly differentiated, but within individual species there seems to be no simple relationship either between genetic distance and geographical proximity, or between variation in mitochondria and that in allozymes or morphological characteristics. Among species there appears to be no simple correlation between degrees of reproductive isolation and genetic relatedness according to mitochondrial DNA. The results suggest that past events as well as ongoing drift and selection may have been important in affecting patterns of variation. Similarities among species at specific localities suggest that there must have been some genetic exchange in the past, although this may not necessarily reflect ongoing rates of hybridization. The discrepancy between results for different markers probably reflects the differential effects of drift and selection on mitochondrial and nuclear genes.

Animals↗

European Y-chromosomal lineages in Polynesians: a contrast to the population structure revealed by mtDNA.

We have used Y-chromosomal polymorphisms to trace paternal lineages in Polynesians by use of samples previously typed for mtDNA variants. A genealogical approach utilizing hierarchical analysis of eight rare-event biallelic polymorphisms, seven microsatellite loci, and internal structural analysis of the hypervariable minisatellite, MSY1, has been used to define three major paternal-lineage clusters in Polynesians. Two of these clusters, both defined by novel MSY1 modular structures and representing 55% of the Polynesians studied, are also found in coastal Papua New Guinea. Reduced Polynesian diversity, relative to that in Melanesians, is illustrated by the presence of several examples of identical MSY1 codes and microsatellite haplotypes within these lineage clusters in Polynesians. The complete lack of Y chromosomes having the M4 base substitution in Polynesians, despite their prevalence (64%) in Melanesians, may also be a result of the multiple bottleneck events during the colonization of this region of the world. The origin of the M4 mutation has been dated by use of two independent methods based on microsatellite-haplotype and minisatellite-code diversity. Because of the wide confidence limits on the mutation rates of these loci, the M4 mutation cannot be conclusively dated relative to the colonization of Polynesia, 3,000 years ago. The other major lineage cluster found in Polynesians, defined by a base substitution at the 92R7 locus, represents 27% of the Polynesians studied and, most probably, originates in Europe. This is the first Y-chromosomal evidence of major European admixture with indigenous Polynesian populations and contrasts sharply with the picture given by mtDNA evidence.

Alleles↗

Density of larval Culicoides belkini (Diptera:Ceratopogonidae) in relation to physicochemical variables in different habitats.

Immature density and population size of the biting midge Culicoides belkini (Wirth & Arnaud) were estimated for habitats on Moorea Island, French Polynesia, by means of random, 2- and 3-stage sampling designs. Samples were taken in March 1993 from 5 strata of a large larval habitat: a sandy-mud surface of approximately 5,000 m2 (stratum 1) in which approximately 12,000 land crab burrows (stratum 2) were counted, a small pond surrounded by approximately 300 m2 of muddy bank (stratum 3), and a high organic muddy area (Kopara) of approximately 1,200 m2 (stratum 4) with approximately 3,500 crab burrows (stratum 5). Larval density was usually higher in the mud of crab burrows, especially those in the Kopara stratum. Larval density was significantly lower in the sediment of the sandy area as compared with pond banks or Kopara surface. The sampling designs and techniques were logistically adequate, statistically relevant, and were recommended for future studies on C. belkini larval density. Larval habitats were characterized by means of multivariate analysis. Comparison of larval densities with selected environmental variables indicated that larvae density was higher in wet sediments with high levels of organic matter (approximately 8% of dry weight of sediment) and low salinity (approximately 0.5-1.5% NaCl equivalents). These variables were considered significant if larval control by means of habitat modification has to be achieved. Nevertheless, C. belkini can tolerate a broad spectrum of variation in the other environmental variables measured and breed in a variety of ecological situations. Therefore, it has a high potential for colonizing new habitats.

Animals↗