效应器
毒力
生物
免疫系统
计算生物学
计算机科学
遗传学
细胞生物学
基因
作者
M. Shahid Mukhtar,Anne‐Ruxandra Carvunis,Matija Dreze,Petra Epple,Jens Steinbrenner,Jonathan D. Moore,Murat Taşan,Mary Galli,Tong Hao,Marc T. Nishimura,Samuel Pevzner,Susan E. Donovan,Lila Ghamsari,Balaji Santhanam,Viviana Romero,Matthew M. Poulin,Fana Gebreab,Bryan J. Gutierrez,Stanley Tam,Dario Monachello
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2011-07-28
卷期号:333 (6042): 596-601
被引量:866
标识
DOI:10.1126/science.1203659
摘要
Plants generate effective responses to infection by recognizing both conserved and variable pathogen-encoded molecules. Pathogens deploy virulence effector proteins into host cells, where they interact physically with host proteins to modulate defense. We generated an interaction network of plant-pathogen effectors from two pathogens spanning the eukaryote-eubacteria divergence, three classes of Arabidopsis immune system proteins, and ~8000 other Arabidopsis proteins. We noted convergence of effectors onto highly interconnected host proteins and indirect, rather than direct, connections between effectors and plant immune receptors. We demonstrated plant immune system functions for 15 of 17 tested host proteins that interact with effectors from both pathogens. Thus, pathogens from different kingdoms deploy independently evolved virulence proteins that interact with a limited set of highly connected cellular hubs to facilitate their diverse life-cycle strategies.
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