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Clothilde Esteve Ludmila Francescatto Perciliz L. Tan Aurélie Bourchany Cécile De Leusse Evelyne Marinier Arnaud Blanchard Patrice Bourgeois Céline Brochier-Armanet Ange-Line Bruel Arnauld Delarue Yannis Duffourd Emmanuelle Ecochard-Dugelay Géraldine Hery Frédéric Huet Philippe Gauchez Emmanuel Gonzales Catherine Guettier-Bouttier Alexandre Fabre 《American journal of human genetics》2018,102(3):364-374
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Single‐nucleotide polymorphism discovery and panel characterization in the African forest elephant
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Stéphanie Bourgeois Helen Senn Jenny Kaden John B. Taggart Rob Ogden Kathryn J. Jeffery Nils Bunnefeld Katharine Abernethy Ross McEwing 《Ecology and evolution》2018,8(4):2207-2217
The continuing decline in forest elephant (Loxodonta cyclotis) numbers due to poaching and habitat reduction is driving the search for new tools to inform management and conservation. For dense rainforest species, basic ecological data on populations and threats can be challenging and expensive to collect, impeding conservation action in the field. As such, genetic monitoring is being increasingly implemented to complement or replace more burdensome field techniques. Single‐nucleotide polymorphisms (SNPs) are particularly cost‐effective and informative markers that can be used for a range of practical applications, including population census, assessment of human impact on social and genetic structure, and investigation of the illegal wildlife trade. SNP resources for elephants are scarce, but next‐generation sequencing provides the opportunity for rapid, inexpensive generation of SNP markers in nonmodel species. Here, we sourced forest elephant DNA from 23 samples collected from 10 locations within Gabon, Central Africa, and applied double‐digest restriction‐site‐associated DNA (ddRAD) sequencing to discover 31,851 tags containing SNPs that were reduced to a set of 1,365 high‐quality candidate SNP markers. A subset of 115 candidate SNPs was then selected for assay design and validation using 56 additional samples. Genotyping resulted in a high conversion rate (93%) and a low per allele error rate (0.07%). This study provides the first panel of 107 validated SNP markers for forest elephants. This resource presents great potential for new genetic tools to produce reliable data and underpin a step‐change in conservation policies for this elusive species. 相似文献
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Assessing population density is crucial for studying the ecology and evolutionary biology of species as well as for conservation purposes. Here we used point count methods to infer population density in a single-island endemic passerine bird, the Réunion Grey White-eye Zosterops borbonicus, that displays striking evidence of differentiation at a small spatial scale. Population density was estimated at 5.17 birds ha?1 (CL 4.85–5.50), a value somewhat higher than previously believed. This estimation provides the first detailed estimation of bird population density in the vulnerable summit ecosystems of Réunion and will possibly allow a better understanding of the evolutionary causes of this plumage colour variation. 相似文献
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Mikaël Croyal Raphaëlle Bourgeois Khadija Ouguerram Stéphanie Billon-Crossouard Audrey Aguesse Patrick Nguyen Michel Krempf Véronique Ferchaud-Roucher Estelle Nobécourt 《Analytical biochemistry》2016
Gas chromatography–mass spectrometry (GC–MS) was compared with gas chromatography–combustion–isotope ratio mass spectrometry (GC–C–IRMS) for measurements of cholesterol 13C enrichment after infusion of labeled precursor ([13C1,2]acetate). Paired results were significantly correlated, although GC–MS was less accurate than GC–C–IRMS for higher enrichments. Nevertheless, only GC–MS was able to provide information on isotopologue distribution, bringing new insights to lipid metabolism. Therefore, we assessed the isotopologue distribution of cholesterol in humans and dogs known to present contrasted cholesterol metabolic pathways. The labeled tracer incorporation was different in both species, highlighting the subsidiarity of GC–MS and GC–C–IRMS to analyze in vivo stable isotope studies. 相似文献
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Chad K. Porter Mark S. Riddle Ashley N. Alcala David A. Sack Clayton Harro Subhra Chakraborty Ramiro L. Gutierrez Stephen J. Savarino Michael Darsley Robin McKenzie Barbara DeNearing Hans Steinsland David R. Tribble A. Louis Bourgeois 《PloS one》2016,11(3)
Background
Experimental human challenge models have played a major role in enhancing our understanding of infectious diseases. Primary outcomes have typically utilized overly simplistic outcomes that fail to entirely account for complex illness syndromes. We sought to characterize clinical outcomes associated with experimental infection with enterotoxigenic Escherichia coli (ETEC) and to develop a disease score.Methods
Data were obtained from prior controlled human ETEC infection studies. Correlation and univariate regression across sign and symptom severity was performed. A multiple correspondence analysis was conducted. A 3-parameter disease score with construct validity was developed in an iterative fashion, compared to standard outcome definitions and applied to prior vaccine challenge trials.Results
Data on 264 subjects receiving seven ETEC strains at doses from 1x105 to 1x1010 cfu were used to construct a standardized dataset. The strongest observed correlation was between vomiting and nausea (r = 0.65); however, stool output was poorly correlated with subjective activity-impacting outcomes. Multiple correspondence analyses showed covariability in multiple signs and symptoms, with severity being the strongest factor corresponding across outcomes. The developed disease score performed well compared to standard outcome definitions and differentiated disease in vaccinated and unvaccinated subjects.Conclusion
Frequency and volumetric definitions of diarrhea severity poorly characterize ETEC disease. These data support a disease severity score accounting for stool output and other clinical signs and symptoms. Such a score could serve as the basis for better field trial outcomes and gives an additional outcome measure to help select future vaccines that warrant expanded testing in pivotal pre-licensure trials. 相似文献89.
This work deals with the types of nuclear skeletal structures obtained from human fibroblast nuclei isolated by different procedures. It is confirmed that, in somatic vertebrate cells, the pore complex-lamina is always observed, whereas the presence of internal nucleolar and extranucleolar residual structures depends upon the method of nuclear isolation used. Furthermore, the results reported here argue for the existence of a nucleolar skeleton different from the nucleolar matrix often observed in different cell types by other investigators. The conditions of nuclear isolation which allow us to visualize this nucleolar skeleton without any other internal residual structures are described. The attachment of the nucleolar skeleton to the lamina suggested by the present data is considered in relation to the in situ position of nucleoli near the nuclear envelope. 相似文献
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