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Journal articleFisher MC, Aanensen D, de Hoog S, et al., 2004,
Multilocus microsatellite typing system for <i>Penicillium marneffei</i> reveals spatially structured populations
, JOURNAL OF CLINICAL MICROBIOLOGY, Vol: 42, Pages: 5065-5069, ISSN: 0095-1137- Author Web Link
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- Citations: 40
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Journal articleGugnani H, Fisher MC, Paliwal-Johsi A, et al., 2004,
Role of <i>Cannomys badius</i> as a natural animal host of <i>Penicillium marneffei</i> in India
, JOURNAL OF CLINICAL MICROBIOLOGY, Vol: 42, Pages: 5070-5075, ISSN: 0095-1137- Cite
- Citations: 46
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Journal articleThwaites R, Spanu PD, Panopoulos NJ, et al., 2004,
Transcriptional regulation of components of the type III secretion system and effectors in <i>Pseudomonas syringae</i> pv. <i>phaseolicola</i>
, MOLECULAR PLANT-MICROBE INTERACTIONS, Vol: 17, Pages: 1250-1258, ISSN: 0894-0282- Cite
- Citations: 36
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Journal articleDavies JC, Turner MW, Klein N, 2004,
Impaired pulmonary status in cystic fibrosis adults with two mutated <i>MBL-2</i> alleles
, EUROPEAN RESPIRATORY JOURNAL, Vol: 24, Pages: 798-804, ISSN: 0903-1936- Author Web Link
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- Citations: 53
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Journal articleDonnelly LE, Newton R, Kennedy GE, et al., 2004,
Anti-inflammatory effects of resveratrol in lung epithelial cells: molecular mechanisms
, AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, Vol: 287, Pages: L774-L783, ISSN: 1040-0605 -
Journal articleHayashi R, Wada H, Ito K, et al., 2004,
Effects of glucocorticoids on gene transcription
, EUROPEAN JOURNAL OF PHARMACOLOGY, Vol: 500, Pages: 51-62, ISSN: 0014-2999- Cite
- Citations: 207
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Journal articleHay A, Barkoulas M, Tsiantis M, 2004,
PINning down the connections: transcription factors and hormones in leaf morphogenesis
, CURRENT OPINION IN PLANT BIOLOGY, Vol: 7, Pages: 575-581, ISSN: 1369-5266- Cite
- Citations: 30
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Journal articleDonnelly CA, Fisher MC, Fraser C, et al., 2004,
Epidemiological and genetic analysis of severe acute respiratory syndrome
, Lancet Infectious Diseases, Vol: 4, Pages: 672-683, ISSN: 1473-3099The severe acute respiratory syndrome (SARS) epidemics in 2002–2003 showed how quickly a novel infectious disease can spread both within communities and internationally. We have reviewed the epidemiological and genetic analyses that have been published both during and since these epidemics, and show how quickly data were collected and analyses undertaken. Key factors that determine the speed and scale of transmission of an infectious disease were estimated using statistical and mathematical modelling approaches, and phylogenetic analyses provided insights into the origin and evolution of the SARS-associated coronavirus. The SARS literature continues to grow, and it is hoped that international collaboration in the analysis of epidemiological and contact-network databases will provide further insights into the spread of this newly emergent infectious disease.
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Journal articleBidartondo MI, Burghardt B, Gebauer G, et al., 2004,
Changing partners in the dark: isotopic and molecular evidence of ectomycorrhizal liaisons between forest orchids and trees.
, Proceedings of the Royal Society B, Vol: 271, Pages: 1799-1806, ISSN: 0962-8452In the mycorrhizal symbiosis, plants exchange photosynthates for mineral nutrients acquired by fungi from the soil. This mutualistic arrangement has been subverted by hundreds of mycorrhizal plant species that lack the ability to photosynthesize. The most numerous examples of this behaviour are found in the largest plant family, the Orchidaceae. Although these non-photosynthetic orchid species are known to be highly specialized exploiters of the ectomycorrhizal symbiosis, photosynthetic orchids are thought to use free-living saprophytic, or pathogenic, fungal lineages. However, we present evidence that putatively photosynthetic orchids from five species which grow in the understorey of forests: (i) form mycorrhizas with ectomycorrhizal fungi of forest trees; and (ii) have stable isotope signatures indicating distinctive pathways for nitrogen and carbon acquisition approaching those of non-photosynthetic orchids that associate with ectomycorrhizal fungi of forest trees. These findings represent a major shift in our understanding of both orchid ecology and evolution because they explain how orchids can thrive in low-irradiance niches and they show that a shift to exploiting ectomycorrhizal fungi precedes viable losses of photosynthetic ability in orchid lineages.
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Journal articleCosio BG, Tsaprouni L, Ito K, et al., 2004,
Theophylline restores histone deacetylase activity and steroid responses in COPD macrophages
, Journal of Experimental Medicine, Vol: 200, Pages: 689-695, ISSN: 1540-9538
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