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Institution

James Cook University

EducationTownsville, Queensland, Australia
About: James Cook University is a education organization based out in Townsville, Queensland, Australia. It is known for research contribution in the topics: Population & Coral reef. The organization has 9101 authors who have published 27750 publications receiving 1032608 citations. The organization is also known as: JCU.
Topics: Population, Coral reef, Reef, Coral, Coral reef fish


Papers
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Journal ArticleDOI
TL;DR: In this article, a range of equations and their derivation is presented, which can be applied to the respective pre-transport environment of a boulder and can be used to reconstruct the frequency and magnitude of past coastal wave hazards and for differentiating between tsunami and storm wave deposited boulder fields.

294 citations

Journal ArticleDOI
TL;DR: Only five variable nucleotide positions were detected among 10 loci, consistent with the description of B. dendrobatidis as a recently emerged disease agent, and electrophoretic karyotyping of multiple strains demonstrated a number of chromosome length polymorphisms.
Abstract: Chytridiomycosis is a recently identified fungal disease associated with global population declines of frogs. Although the fungus, Batrachochytrium dendrobatidis , is considered an emerging pathogen, little is known about its population genetics, including the origin of the current epidemic and how this relates to the dispersal ability of the fungus. In this study, we use multilocus sequence typing to examine genetic diversity and relationships among 35 fungal strains from North America, Africa and Australia. Only five variable nucleotide positions were detected among 10 loci (5918 bp). This low level of genetic variation is consistent with the description of B. dendrobatidis as a recently emerged disease agent. Fixed (i.e. 100%) or nearly fixed frequencies of heterozygous genotypes at two loci suggested that B. dendrobatidis is diploid and primarily reproduces clonally. In contrast to the lack of nucleotide polymorphism, electrophoretic karyotyping of multiple strains demonstrated a number of chromosome length polymorphisms.

294 citations

Journal ArticleDOI
TL;DR: The results show that macroalgae can have a major influence on the demography of scleractinian corals, with changes in coral cover and growth significantly affected by the presence of Macroalgae.

294 citations

Journal ArticleDOI
TL;DR: All the results are derived and stated in terms of the recent concept of displacement rank, and this is used to extend the scope of the algorithm to include a wider class of matrices than just Toeplitz and also to include block ToePlitz matrices.

293 citations

Journal ArticleDOI
TL;DR: Recent progress in this area is reviewed, with a focus on the interaction between different families of carbon nanostructures and microorganisms to evaluate their bactericidal performance.
Abstract: Swift developments in nanotechnology have prominently encouraged innovative discoveries across many fields. Carbon-based nanomaterials have emerged as promising platforms for a broad range of applications due to their unique mechanical, electronic, and biological properties. Carbon nanostructures (CNSs) such as fullerene, carbon nanotubes (CNTs), graphene and diamond-like carbon (DLC) have been demonstrated to have potent broad-spectrum antibacterial activities toward pathogens. In order to ensure the safe and effective integration of these structures as antibacterial agents into biomaterials, the specific mechanisms that govern the antibacterial activity of CNSs need to be understood, yet it is challenging to decouple individual and synergistic contributions of physical, chemical and electrical effects of CNSs on cells. In this article, recent progress in this area is reviewed, with a focus on the interaction between different families of carbon nanostructures and microorganisms to evaluate their bactericidal performance.

292 citations


Authors

Showing all 9184 results

NameH-indexPapersCitations
Christopher J L Murray209754310329
Hui-Ming Cheng147880111921
Joseph T. Hupp14173182647
Graeme J. Hankey137844143373
Bryan R. Cullen12137150901
Thomas J. Meyer120107868519
William F. Laurance11847056464
Staffan Kjelleberg11442544414
Mike Clarke1131037164328
Gao Qing Lu10854653914
David J. Williams107206062440
Tim J Peters106103747394
Michael E. Goddard10642467681
Ove Hoegh-Guldberg10642563750
John C. Avise10541353088
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202334
2022170
20211,840
20201,737
20191,671
20181,691