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  Genome expansion and gene loss in powdery mildew fungi reveal tradeoffs in extreme parasitism

Spanu, P. D., Abbott, J. C., Amselem, J., Burgis, T. A., Soanes, D. M., Stüber, K., et al. (2010). Genome expansion and gene loss in powdery mildew fungi reveal tradeoffs in extreme parasitism. Science, 330(6010), 1543-1546. doi:10.1126/science.1194573.

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Spanu, Pietro D., Author
Abbott, James C., Author
Amselem, Joelle, Author
Burgis, Timothy A., Author
Soanes, Darren M., Author
Stüber, Kurt, Author
Ver Loren van Themaat, Emiel, Author
Brown, James K. M., Author
Butcher, Sarah A., Author
Gurr, Sarah J., Author
Lebrun, Marc-Henri, Author
Ridout, Christopher J., Author
Schulze-Lefert, Paul1, Author
Talbot, Nicholas J., Author
Ahmadinejad, Nahal, Author
Ametz, Christian, Author
Barton, Geraint R., Author
Benjdia, Mariam, Author
Bidzinski, Przemyslaw, Author
Bindschedler, Laurence V., Author
Both, Maike, AuthorBrewer, Marin T., AuthorCadle-Davidson, Lance, AuthorCadle-Davidson, Molly M., AuthorCollemare, Jerome, AuthorCramer, Rainer, AuthorFrenkel, Omer, AuthorGodfrey, Dale, AuthorHarriman, James, AuthorHoede, Claire, AuthorKing, Brian C., AuthorKlages, Sven2, Author           Kleemann, Jochen, AuthorKnoll, Daniela, AuthorKoti, Prasanna S., AuthorKreplak, Jonathan, AuthorLópez-Ruiz, Francisco J., AuthorLu, Xunli, AuthorMaekawa, Takaki, AuthorMahanil, Siraprapa, AuthorMicali, Cristina, AuthorMilgroom, Michael G., AuthorMontana, Giovanni, AuthorNoir, Sandra, AuthorO’Connell, Richard J., AuthorOberhaensli, Simone, AuthorParlange, Francis, AuthorPedersen, Carsten, AuthorQuesneville, Hadi, AuthorReinhardt, Richard3, Author           Rott, Matthias, AuthorSacristán, Soledad, AuthorSchmidt, Sarah M., AuthorSchön, Moritz, AuthorSkamnioti, Pari, AuthorSommer, Hans, AuthorStephens, Amber, AuthorTakahara, Hiroyuki, AuthorThordal-Christensen, Hans, AuthorVigouroux, Marielle, AuthorWeßling, Ralf, AuthorWicker, Thomas, AuthorPanstruga, Ralph1, Author more..
Affiliations:
1Max Planck Society, ou_persistent13              
2Dept. of Vertebrate Genomics (Head: Hans Lehrach), Max Planck Institute for Molecular Genetics, Max Planck Society, ou_1433550              
3High Throughput Technologies, Max Planck Institute for Molecular Genetics, Max Planck Society, ou_1433552              

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 Abstract: Powdery mildews are phytopathogens whose growth and reproduction are entirely dependent on living plant cells. The molecular basis of this life-style, obligate biotrophy, remains unknown. We present the genome analysis of barley powdery mildew, Blumeria graminis f.sp. hordei (Blumeria), as well as a comparison with the analysis of two powdery mildews pathogenic on dicotyledonous plants. These genomes display massive retrotransposon proliferation, genome-size expansion, and gene losses. The missing genes encode enzymes of primary and secondary metabolism, carbohydrate-active enzymes, and transporters, probably reflecting their redundancy in an exclusively biotrophic life-style. Among the 248 candidate effectors of pathogenesis identified in the Blumeria genome, very few (less than 10) define a core set conserved in all three mildews, suggesting that most effectors represent species-specific adaptations.

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Language(s): eng - English
 Dates: 2010-12-10
 Publication Status: Issued
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Title: Science
Source Genre: Journal
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Pages: - Volume / Issue: 330 (6010) Sequence Number: - Start / End Page: 1543 - 1546 Identifier: ISSN: 0036-8075