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PMID: 16372009 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Genomic sequence of the pathogenic and allergenic filamentous fungus Aspergillus fumigatus.

Nature ·Vol. 438 ·No. 7071 ·2005-12-22 ·Pages 1151-6

Nierman WC, Pain A, Anderson MJ, Wortman JR, Kim HS, Arroyo J, Berriman M, Abe K, Archer DB, Bermejo C, Bennett J, Bowyer P, Chen D, Collins M, Coulsen R, Davies R, Dyer PS, Farman M, Fedorova N, Fedorova N, Feldblyum TV, Fischer R, Fosker N, Fraser A, García JL, García MJ, Goble A, Goldman GH, Gomi K, Griffith-Jones S, Gwilliam R, Haas B, Haas H, Harris D, Horiuchi H, Huang J, Humphray S, Jiménez J, Keller N, Khouri H, Kitamoto K, Kobayashi T, Konzack S, Kulkarni R, Kumagai T, Lafon A, Lafton A, Latgé JP, Li W, Lord A, Lu C, Majoros WH, May GS, Miller BL, Mohamoud Y, Molina M, Monod M, Mouyna I, Mulligan S, Murphy L, O'Neil S, Paulsen I, Peñalva MA, Pertea M, Price C, Pritchard BL, Quail MA, Rabbinowitsch E, Rawlins N, Rajandream MA, Reichard U, Renauld H, Robson GD, Rodriguez de Córdoba S, Rodríguez-Peña JM, Ronning CM, Rutter S, Salzberg SL, Sanchez M, Sánchez-Ferrero JC, Saunders D, Seeger K, Squares R, Squares S, Takeuchi M, Tekaia F, Turner G, Vazquez de Aldana CR, Weidman J, White O, Woodward J, Yu JH, Fraser C, Galagan JE, Asai K, Machida M, Hall N, Barrell B, Denning DW

Abstract

Aspergillus fumigatus is exceptional among microorganisms in being both a primary and opportunistic pathogen as well as a major allergen. Its conidia production is prolific, and so human respiratory tract exposure is almost constant. A. fumigatus is isolated from human habitats and vegetable compost heaps. In immunocompromised individuals, the incidence of invasive infection can be as high as 50% and the mortality rate is often about 50% (ref. 2). The interaction of A. fumigatus and other airborne fungi with the immune system is increasingly linked to severe asthma and sinusitis. Although the burden of invasive disease caused by A. fumigatus is substantial, the basic biology of the organism is mostly obscure. Here we show the complete 29.4-megabase genome sequence of the clinical isolate Af293, which consists of eight chromosomes containing 9,926 predicted genes. Microarray analysis revealed temperature-dependent expression of distinct sets of genes, as well as 700 A. fumigatus genes not present or significantly diverged in the closely related sexual species Neosartorya fischeri, many of which may have roles in the pathogenicity phenotype. The Af293 genome sequence provides an unparalleled resource for the future understanding of this remarkable fungus.

MeSH Terms
Allergens/genetics Aspergillus fumigatus/genetics,immunology,pathogenicity Gene Expression Profiling Gene Expression Regulation, Fungal Genes, Fungal/genetics Genome, Fungal Genomics Hypersensitivity/microbiology Molecular Sequence Data Oligonucleotide Array Sequence Analysis Sequence Analysis, DNA Temperature Virulence/genetics
Chemicals
Allergens
Authors & Affiliations
99 authors, click to expand affiliations / ORCID
Nierman William C
The Institute for Genomic Research, Rockville, Maryland 20850, USA. wnierman@tigr.org
Pain Arnab
Anderson Michael J
Wortman Jennifer R
Kim H Stanley
Arroyo Javier
Berriman Matthew
Abe Keietsu
Archer David B
Bermejo Clara
Bennett Joan
Bowyer Paul
Chen Dan
Collins Matthew
Coulsen Richard
Davies Robert
Dyer Paul S
Farman Mark
Fedorova Nadia
Fedorova Natalie
Feldblyum Tamara V
Fischer Reinhard
Fosker Nigel
Fraser Audrey
García Jose L
García Maria J
Goble Arlette
Goldman Gustavo H
Gomi Katsuya
Griffith-Jones Sam
Gwilliam Ryan
Haas Brian
Haas Hubertus
Harris David
Horiuchi H
Huang Jiaqi
Humphray Sean
Jiménez Javier
Keller Nancy
Khouri Hoda
Kitamoto Katsuhiko
Kobayashi Tetsuo
Konzack Sven
Kulkarni Resham
Kumagai Toshitaka
Lafon Anne
Lafton Anne
Latgé Jean-Paul
Li Weixi
Lord Angela
Lu Charles
Majoros William H
May Gregory S
Miller Bruce L
Mohamoud Yasmin
Molina Maria
Monod Michel
Mouyna Isabelle
Mulligan Stephanie
Murphy Lee
O'Neil Susan
Paulsen Ian
Peñalva Miguel A
Pertea Mihaela
Price Claire
Pritchard Bethan L
Quail Michael A
Rabbinowitsch Ester
Rawlins Neil
Rajandream Marie-Adele
Reichard Utz
Renauld Hubert
Robson Geoffrey D
Rodriguez de Córdoba Santiago
Rodríguez-Peña Jose M
Ronning Catherine M
Rutter Simon
Salzberg Steven L
Sanchez Miguel
Sánchez-Ferrero Juan C
Saunders David
Seeger Kathy
Squares Rob
Squares Steven
Takeuchi Michio
Tekaia Fredj
Turner Geoffrey
Vazquez de Aldana Carlos R
Weidman Janice
White Owen
Woodward John
Yu Jae-Hyuk
Fraser Claire
Galagan James E
Asai Kiyoshi
Machida Masayuki
Hall Neil
Barrell Bart
Denning David W
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2005-12-22
Pages
1151-6
Language
English
Region
England
NLM ID
0410462
Subset
IM
Grants
Biotechnology and Biological Sciences Research Council · CFB17726 · United Kingdom
Wellcome Trust · United Kingdom
Databases
RefSeq
NC_007194, NC_007195, NC_007196, NC_007197, NC_007198, NC_007199, NC_007200, NC_007201
Corrections
ErratumIn
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CommentIn
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