Finished Genome of the Fungal Wheat Pathogen Mycosphaerella graminicola Reveals Dispensome Structure, Chromosome Plasticity, and Stealth Pathogenesis

被引:456
作者
Goodwin, Stephen B. [1 ]
Ben M'Barek, Sarrah [2 ]
Dhillon, Braham [3 ]
Wittenberg, Alexander H. J. [2 ]
Crane, Charles F. [1 ]
Hane, James K. [4 ]
Foster, Andrew J. [5 ]
Van der Lee, Theo A. J. [2 ]
Grimwood, Jane [6 ,7 ]
Aerts, Andrea [7 ]
Antoniw, John [8 ]
Bailey, Andy [9 ]
Bluhm, Burt [10 ]
Bowler, Judith [11 ]
Bristow, Jim [7 ]
van der Burgt, Ate [2 ]
Canto-Canche, Blondy [12 ]
Churchill, Alice C. L. [13 ]
Conde-Ferraez, Laura [12 ]
Cools, Hans J. [8 ]
Coutinho, Pedro M. [14 ]
Csukai, Michael [11 ]
Dehal, Paramvir [7 ]
De Wit, Pierre [15 ]
Donzelli, Bruno [16 ]
van de Geest, Henri C. [2 ]
van Ham, Roeland C. H. J. [2 ]
Hammond-Kosack, Kim E. [8 ]
Henrissat, Bernard [14 ]
Kilian, Andrzej [17 ]
Kobayashi, Adilson K. [18 ]
Koopmann, Edda [19 ]
Kourmpetis, Yiannis [15 ]
Kuzniar, Arnold [15 ]
Lindquist, Erika [7 ]
Lombard, Vincent [14 ]
Maliepaard, Chris [15 ]
Martins, Natalia [20 ]
Mehrabi, Rahim [21 ]
Nap, Jan P. H. [2 ]
Ponomarenko, Alisa [3 ]
Rudd, Jason J. [8 ]
Salamov, Asaf [7 ]
Schmutz, Jeremy [6 ,7 ]
Schouten, Henk J. [2 ]
Shapiro, Harris [7 ]
Stergiopoulos, Ioannis [15 ]
Torriani, Stefano F. F. [22 ]
Tu, Hank [7 ]
de Vries, Ronald P. [23 ]
机构
[1] Purdue Univ, USDA ARS, W Lafayette, IN 47907 USA
[2] Plant Res Int BV, Wageningen, Netherlands
[3] Purdue Univ, Dept Bot & Plant Pathol, W Lafayette, IN 47907 USA
[4] Murdoch Univ, Sch Vet & Biomed Sci, Perth, WA, Australia
[5] IBWF eV, Inst Biotechnol & Drug Res, Kaiserslautern, Germany
[6] HudsonAlpha Inst Biotechnol, Huntsville, AL USA
[7] DOE Joint Genome Inst, Walnut Creek, CA USA
[8] Rothamsted Res, Dept Plant Pathol & Microbiol, Harpenden, Herts, England
[9] Univ Bristol, Sch Biol Sci, Bristol, Avon, England
[10] Univ Arkansas, Fayetteville, AR 72701 USA
[11] Syngenta, Jealotts Hill Res Ctr, Bracknell, Berks, England
[12] CICY, AC, Unidad Biotecnol, Merida, Venezuela
[13] Cornell Univ, Dept Plant Pathol & Plant Microbe Biol, Ithaca, NY USA
[14] Aix Marseille Univ, CNRS, AFMB UMR 7257, F-13288 Marseille, France
[15] Univ Wageningen & Res Ctr, Wageningen, Netherlands
[16] USDA ARS, Ithaca, NY 14853 USA
[17] Divers Arrays Technol Pty Ltd, Yarralumla, Australia
[18] Embrapa Meio Norte, Teresina, Piaui, Brazil
[19] Bayer CropSci AG, Monheim, Germany
[20] Embrapa Cenargen, Brasilia, DF, Brazil
[21] Seed & Plant Improvement Inst, Dept Genet, Karaj, Iran
[22] Swiss Fed Inst Technol, Inst Integrat Biol, Zurich, Switzerland
[23] CBS KNAW Fungal Biodivers Ctr, Utrecht, Netherlands
[24] Curtin Univ, Bentley, WA, Australia
基金
英国生物技术与生命科学研究理事会;
关键词
B-CHROMOSOMES; GENE; ORGANIZATION; ANNOTATION; RESISTANCE; SEQUENCE;
D O I
10.1371/journal.pgen.1002070
中图分类号
Q3 [遗传学];
学科分类号
071007 [遗传学];
摘要
The plant-pathogenic fungus Mycosphaerella graminicola (asexual stage: Septoria tritici) causes septoria tritici blotch, a disease that greatly reduces the yield and quality of wheat. This disease is economically important in most wheat-growing areas worldwide and threatens global food production. Control of the disease has been hampered by a limited understanding of the genetic and biochemical bases of pathogenicity, including mechanisms of infection and of resistance in the host. Unlike most other plant pathogens, M. graminicola has a long latent period during which it evades host defenses. Although this type of stealth pathogenicity occurs commonly in Mycosphaerella and other Dothideomycetes, the largest class of plant-pathogenic fungi, its genetic basis is not known. To address this problem, the genome of M. graminicola was sequenced completely. The finished genome contains 21 chromosomes, eight of which could be lost with no visible effect on the fungus and thus are dispensable. This eight-chromosome dispensome is dynamic in field and progeny isolates, is different from the core genome in gene and repeat content, and appears to have originated by ancient horizontal transfer from an unknown donor. Synteny plots of the M. graminicola chromosomes versus those of the only other sequenced Dothideomycete, Stagonospora nodorum, revealed conservation of gene content but not order or orientation, suggesting a high rate of intra-chromosomal rearrangement in one or both species. This observed "mesosynteny'' is very different from synteny seen between other organisms. A surprising feature of the M. graminicola genome compared to other sequenced plant pathogens was that it contained very few genes for enzymes that break down plant cell walls, which was more similar to endophytes than to pathogens. The stealth pathogenesis of M. graminicola probably involves degradation of proteins rather than carbohydrates to evade host defenses during the biotrophic stage of infection and may have evolved from endophytic ancestors.
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