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Matsuzawa, T.

Publications and source records attributed to Matsuzawa, T..

2 recordsLinked to original sources

Landscaping the behavioural ecology of primate stone tool use

Ecology is fundamental to the development, transmission, and perpetuity of primate technology. Previous studies on tool site selection have addressed the relevance of targeted resources and raw materials for tools, but few have considered the broader foraging landscape. In this first landscape-scale study of the ecological contexts of wild chimpanzee (Pan troglodytes verus) tool-use, we investigate the conditions required for nut-cracking to occur and persist over time at discrete locations in Bossou (Guinea). We examine this at three levels: selection, frequency of use, and inactivity. We find that, further to the presence of a nut tree and availability of raw materials, abundance of food-providing trees as well as proximity to nest sites were significant predictors of nut-cracking occurrence. This suggests that the spatial distribution of nut-cracking sites is mediated by the broader behavioural landscape and is influenced by non-extractive foraging of predictable resources, as well as non-foraging activities. Additionally, the number of functional tools was greater at sites with higher frequency of nut-cracking and was negatively correlated with site inactivity. Our findings indicate that the technological landscape of the Bossou chimpanzees shares affinities with the favoured places model of hominin site formation and provides new insights for reconstructing ancient patterns of landscape use. ResumeLecologie est fondamentale pour le developpement, la transmission et la perennite de la technologie des primates. Des etudes anterieures ont identifie la disponibilite des ressources cibles ainsi que les matieres premieres pour les outils comme des facteurs influents dans la selection des emplacements pour les activites technologiques. Cependant, il y a peu detudes qui abordent cette recherche a lechelle du paysage et du comportement fourrager. Dans cette premiere etude paysagere sur lutilisation doutils par le chimpanze sauvage (Pan troglodytes verus), nous recherchons les conditions ecologiques qui influencent la selection, lutilisation et linactivite des emplacements utilises pour le cassage des noix en Bossou, Guinee. Nos resultats montrent quen plus de la presence dun noyer et de la disponibilite des matieres premieres, labondance darbres nourriciers ainsi que la proximite des sites de nidification etaient des predicteurs significatifs de loccurrence du cassage des noix. Cela suggere que la distribution spatiale des sites de cassage de noix est influencee par le paysage comportemental et est influencee par le fourrage non-extractive de ressources previsibles, ainsi que par des activites non-fourragers. Nos resultats indiquent que le paysage technologique des chimpanzes de Bossou partage des affinites avec le modele des << lieux favoris >> de la formation des sites hominides et fournit de nouvelles perspectives pour reconstruire les modes dutilisation du paysage anciens.

ecology↗

Development and Validation of LAMP Primer Sets for Rapid and Correct Identification of Aspergillus fumigatus Carrying the cyp51A TR46 Azole Resistance Gene

Infections due to triazole resistant Aspergillus fumigatus are increasingly reported worldwide and are associated with treatment failure and mortality. The principal class of azole resistant isolates is characterized by the presence of tandem repeats of 34 bp or 46 bp (TR34 or TR46) within the promoter region of the cyp51A gene. Loop-mediated isothermal amplification (LAMP) is a widely used nucleic acid amplification system with high rapidity and specificity. In this paper, we report a new LAMP assay method to detect the 46 bp tandem repeat insertion in the cyp51A gene promoter region, named TR46-LAMP assay, based on the use of a newly designed specific LAMP primer sets. TR46 is a high-prevalence allele which is associated with the occurrence of multi-triazole resistance of A. fumigatus in patients as well as isolates from the environment. This newly designed TR46-LAMP assay was validated as a useful method for specific detection of azole-resistant A. fumigatus isolates bearing TR462 as well as TR463 in cyp51A gene promoter region. It could also differentiate azole-resistant isolates of TR46 tandem repeats from those with TR34 tandem repeats in cyp51A genes. These results showed this TR46-LAMP method is specific, rapid, and also provides crucial insights to enable development of novel antifungal therapeutic strategies against severe fungal infections due to A. fumigatus with TR46 tandem repeats.

molecular biology↗