A systems biology perspective on plant-microbe interactions: biochemical and structural targets of pathogen effectors.
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[1] Jotun Hein,et al. A Bayesian Approach to the Evolution of Metabolic Networks on a Phylogeny , 2010, PLoS Comput. Biol..
[2] Ronald W. Davis,et al. Functional characterization of the S. cerevisiae genome by gene deletion and parallel analysis. , 1999, Science.
[3] J. Rathjen,et al. AvrPtoB Targets the LysM Receptor Kinase CERK1 to Promote Bacterial Virulence on Plants , 2009, Current Biology.
[4] Pedro Mendes,et al. Artificial gene networks for objective comparison of analysis algorithms , 2003, ECCB.
[5] J. Alfano,et al. Phytopathogen type III effector weaponry and their plant targets. , 2008, Current opinion in plant biology.
[6] N. Stamp. Out Of The Quagmire Of Plant Defense Hypotheses , 2003, The Quarterly Review of Biology.
[7] Susumu Goto,et al. KEGG for representation and analysis of molecular networks involving diseases and drugs , 2009, Nucleic Acids Res..
[8] B. Palsson. Systems Biology: Properties of Reconstructed Networks , 2006 .
[9] M. Armstrong,et al. The zig-zag-zig in oomycete-plant interactions. , 2009, Molecular plant pathology.
[10] G. Martin,et al. A Bacterial Inhibitor of Host Programmed Cell Death Defenses Is an E3 Ubiquitin Ligase , 2006, Science.
[11] J. Ecker,et al. Arabidopsis RIN4 Is a Target of the Type III Virulence Effector AvrRpt2 and Modulates RPS2-Mediated Resistance , 2003, Cell.
[12] Albert-László Barabási,et al. Error and attack tolerance of complex networks , 2000, Nature.
[13] H. Gehrig,et al. Geosiphon pyriforme, a fungus forming endocytobiosis withNostoc (Cyanobacteria), is an ancestral member of the glomales: Evidence by SSU rRNA Analysis , 1996, Journal of Molecular Evolution.
[14] Oren Shoval,et al. SnapShot: Network Motifs , 2010, Cell.
[15] T. M. Murali,et al. The Human-Bacterial Pathogen Protein Interaction Networks of Bacillus anthracis, Francisella tularensis, and Yersinia pestis , 2010, PloS one.
[16] Neil Swainston,et al. Integration of metabolic databases for the reconstruction of genome-scale metabolic networks , 2010, BMC Systems Biology.
[17] Pedro de Atauri,et al. Metabolic control analysis in drug discovery and disease , 2002, Nature Biotechnology.
[18] Kate J. Graham,et al. The structures of syringolides 1 and 2, novel C-glycosidic elicitors from Pseudomonas syringae pv. tomato , 1993 .
[19] Yudong D. He,et al. Functional Discovery via a Compendium of Expression Profiles , 2000, Cell.
[20] D. Kell,et al. Metabolomics by numbers: acquiring and understanding global metabolite data. , 2004, Trends in biotechnology.
[21] Nicola Zamboni,et al. Novel biological insights through metabolomics and 13C-flux analysis. , 2009, Current opinion in microbiology.
[22] D. Floreano,et al. Revealing strengths and weaknesses of methods for gene network inference , 2010, Proceedings of the National Academy of Sciences.
[23] M. Rep,et al. The effector protein Avr2 of the xylem-colonizing fungus Fusarium oxysporum activates the tomato resistance protein I-2 intracellularly. , 2009, The Plant journal : for cell and molecular biology.
[24] Michael J. Axtell,et al. Initiation of RPS2-Specified Disease Resistance in Arabidopsis Is Coupled to the AvrRpt2-Directed Elimination of RIN4 , 2003, Cell.
[25] S. Whisson,et al. Towards understanding the virulence functions of RXLR effectors of the oomycete plant pathogen Phytophthora infestans. , 2009, Journal of experimental botany.
[26] An-Ping Zeng,et al. Decomposition of metabolic network into functional modules based on the global connectivity structure of reaction graph , 2004, Bioinform..
[27] R. Hussey,et al. The parasitome of the phytonematode Heterodera glycines. , 2003, Molecular plant-microbe interactions : MPMI.
[28] A. Groen,et al. Control of gluconeogenesis in rat liver cells. Flux control coefficients of the enzymes in the gluconeogenic pathway in the absence and presence of glucagon. , 1986, The Biochemical journal.
[29] A. Fraser,et al. Genome sequence of the enterobacterial phytopathogen Erwinia carotovora subsp. atroseptica and characterization of virulence factors. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[30] Leighton Pritchard,et al. A translocation signal for delivery of oomycete effector proteins into host plant cells , 2007, Nature.
[31] Jonathan D. G. Jones,et al. The Downy Mildew Effector Proteins ATR1 and ATR13 Promote Disease Susceptibility in Arabidopsis thaliana[W] , 2007, The Plant Cell Online.
[32] Claude W dePamphilis,et al. The evolution of parasitism in plants. , 2010, Trends in plant science.
[33] Tamer Kahveci,et al. Scalable Steady State Analysis of Boolean Biological Regulatory Networks , 2009, PloS one.
[34] J. Engel,et al. Role of Pseudomonas aeruginosa type III effectors in disease. , 2009, Current opinion in microbiology.
[35] D. Fell. Understanding the Control of Metabolism , 1996 .
[36] A. Barabasi,et al. Functional and topological characterization of protein interaction networks , 2004, Proteomics.
[37] D. Baulcombe,et al. The Polerovirus Silencing Suppressor P0 Targets ARGONAUTE Proteins for Degradation , 2007, Current Biology.
[38] D. Hughes,et al. Graveyards on the Move: The Spatio-Temporal Distribution of Dead Ophiocordyceps-Infected Ants , 2009, PloS one.
[39] Masanori Arita. The metabolic world of Escherichia coli is not small. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[40] J. Doyle,et al. Bow Ties, Metabolism and Disease , 2022 .
[41] M. Blackwell. Fungal evolution and taxonomy , 2010, BioControl.
[42] S. Batalov,et al. A gene atlas of the mouse and human protein-encoding transcriptomes. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[43] Andre Levchenko,et al. Dynamic Properties of Network Motifs Contribute to Biological Network Organization , 2005, PLoS biology.
[44] Steffen Klamt,et al. Host-pathogen systems biology: logical modelling of hepatocyte growth factor and Helicobacter pylori induced c-Met signal transduction , 2008, BMC Systems Biology.
[45] Wolfgang Busch,et al. Omics meet networks - using systems approaches to infer regulatory networks in plants. , 2010, Current opinion in plant biology.
[46] G. Martin,et al. Deletions in the Repertoire of Pseudomonas syringae pv. tomato DC3000 Type III Secretion Effector Genes Reveal Functional Overlap among Effectors , 2009, PLoS pathogens.
[47] Elke K Markert,et al. Higher order Boolean networks as models of cell state dynamics. , 2010, Journal of theoretical biology.
[48] Uwe Aickelin,et al. Danger Theory: The Link between AIS and IDS? , 2003, ICARIS.
[49] D. Wilson,et al. Receptive fields in the rat piriform cortex. , 2001, Chemical senses.
[50] E. Lojkowska,et al. Genes responsible for coronatine synthesis in Pseudomonas syringae present in the genome of soft rot bacteria , 2009, European Journal of Plant Pathology.
[51] Jonathan D. G. Jones,et al. Bacterial disease resistance in Arabidopsis through flagellin perception , 2004, Nature.
[52] Matthew D. Dyer,et al. The Landscape of Human Proteins Interacting with Viruses and Other Pathogens , 2008, PLoS pathogens.
[53] C. Espinosa-Soto,et al. A Gene Regulatory Network Model for Cell-Fate Determination during Arabidopsis thaliana Flower Development That Is Robust and Recovers Experimental Gene Expression Profilesw⃞ , 2004, The Plant Cell Online.
[54] David S Guttman,et al. Evolution of prokaryotic and eukaryotic virulence effectors. , 2008, Current opinion in plant biology.
[55] Murray Grant,et al. Type III effectors orchestrate a complex interplay between transcriptional networks to modify basal defence responses during pathogenesis and resistance. , 2006, The Plant journal : for cell and molecular biology.
[56] J. Hancock,et al. Bacterial Evolution by Genomic Island Transfer Occurs via DNA Transformation In Planta , 2009, Current Biology.
[57] L. Lambrechts. Dissecting the Genetic Architecture of Host–Pathogen Specificity , 2010, PLoS pathogens.
[58] P. Dodds,et al. Flax rust resistance gene specificity is based on direct resistance-avirulence protein interactions. , 2007, Annual review of phytopathology.
[59] H. Kacser,et al. The control of flux. , 1995, Biochemical Society transactions.
[60] A. Barabasi,et al. Lethality and centrality in protein networks , 2001, Nature.
[61] Duncan J. Watts,et al. Collective dynamics of ‘small-world’ networks , 1998, Nature.
[62] J. Wojcik,et al. The protein–protein interaction map of Helicobacter pylori , 2001, Nature.
[63] S. Robatzek,et al. Breaking the barriers: microbial effector molecules subvert plant immunity. , 2008, Annual review of phytopathology.
[64] D. Kell,et al. A functional genomics strategy that uses metabolome data to reveal the phenotype of silent mutations , 2001, Nature Biotechnology.
[65] Jianzhi Zhang,et al. A Big World Inside Small-World Networks , 2009, PloS one.
[66] P. Dodds,et al. Recent progress in discovery and functional analysis of effector proteins of fungal and oomycete plant pathogens. , 2009, Current opinion in plant biology.
[67] Julien Gagneur,et al. Hierarchical Analysis of Dependency in Metabolic Networks , 2003, Bioinform..
[68] V. Koronakis,et al. Deciphering Interplay between Salmonella Invasion Effectors , 2008, PLoS pathogens.
[69] Reka Albert,et al. Boolean models of within-host immune interactions. , 2010, Current opinion in microbiology.
[70] Alexandra M. E. Jones,et al. Host Inhibition of a Bacterial Virulence Effector Triggers Immunity to Infection , 2009, Science.
[71] Sophia Mersmann,et al. Plant Pattern-Recognition Receptor FLS2 Is Directed for Degradation by the Bacterial Ubiquitin Ligase AvrPtoB , 2008, Current Biology.
[72] U. Alon. Network motifs: theory and experimental approaches , 2007, Nature Reviews Genetics.
[73] D. Fell,et al. The small world inside large metabolic networks , 2000, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[74] P. He,et al. Intercepting host MAPK signaling cascades by bacterial type III effectors. , 2007, Cell host & microbe.
[75] A. Barabasi,et al. Hierarchical Organization of Modularity in Metabolic Networks , 2002, Science.
[76] Réka Albert,et al. Modeling Systems-Level Regulation of Host Immune Responses , 2007, PLoS Comput. Biol..
[77] Xiaoning Qian,et al. Effective Identification of Conserved Pathways in Biological Networks Using Hidden Markov Models , 2009, PloS one.
[78] C. Zipfel. Early molecular events in PAMP-triggered immunity. , 2009, Current opinion in plant biology.
[79] D. Kell. Systems biology, metabolic modelling and metabolomics in drug discovery and development. , 2006, Drug discovery today.
[80] Peter J. Gregory,et al. Integrating pests and pathogens into the climate change/food security debate. , 2009, Journal of experimental botany.
[81] D. Herms,et al. The Dilemma of Plants: To Grow or Defend , 1992, The Quarterly Review of Biology.
[82] J. Mansfield,et al. Exposure to Host Resistance Mechanisms Drives Evolution of Bacterial Virulence in Plants , 2005, Current Biology.
[83] She Chen,et al. A Pseudomonas syringae effector inactivates MAPKs to suppress PAMP-induced immunity in plants. , 2007, Cell host & microbe.
[84] James R. Knight,et al. A comprehensive analysis of protein–protein interactions in Saccharomyces cerevisiae , 2000, Nature.
[85] R. Albert. Network Inference, Analysis, and Modeling in Systems Biology , 2007, The Plant Cell Online.
[86] F. Tian,et al. A type III effector ADP-ribosylates RNA-binding proteins and quells plant immunity , 2007, Nature.
[87] D. Fell,et al. A general definition of metabolic pathways useful for systematic organization and analysis of complex metabolic networks , 2000, Nature Biotechnology.
[88] Alan Collmer,et al. Pseudomonas syringae type III secretion system effectors: repertoires in search of functions. , 2009, Current opinion in microbiology.
[89] Mark Gerstein,et al. Comparing genomes to computer operating systems in terms of the topology and evolution of their regulatory control networks , 2010, Proceedings of the National Academy of Sciences.
[90] Y. Narusaka,et al. CERK1, a LysM receptor kinase, is essential for chitin elicitor signaling in Arabidopsis , 2007, Proceedings of the National Academy of Sciences.
[91] R. Heinrich,et al. The Regulation of Cellular Systems , 1996, Springer US.
[92] S. Huang,et al. Shape-dependent control of cell growth, differentiation, and apoptosis: switching between attractors in cell regulatory networks. , 2000, Experimental cell research.
[93] Douglas B. Kell,et al. Statistical strategies for avoiding false discoveries in metabolomics and related experiments , 2007, Metabolomics.
[94] A. Cornish-Bowden. The pursuit of perfection , 2004 .
[95] S. Shen-Orr,et al. Network motifs in the transcriptional regulation network of Escherichia coli , 2002, Nature Genetics.
[96] An-Ping Zeng,et al. The Connectivity Structure, Giant Strong Component and Centrality of Metabolic Networks , 2003, Bioinform..
[97] S. He,et al. A family of conserved bacterial effectors inhibits salicylic acid-mediated basal immunity and promotes disease necrosis in plants. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[98] Nick V. Grishin,et al. Phenotypic categorization of genetic skin diseases reveals new relations between phenotypes, genes and pathways , 2009, Bioinform..
[99] David J. Schneider,et al. Studying plant-pathogen interactions in the genomics era: beyond molecular Koch's postulates to systems biology. , 2010, Annual review of phytopathology.
[100] Daniel E. Zak,et al. A systems view of host defense , 2009, Nature Biotechnology.
[101] A. Vazquez,et al. Epstein–Barr virus and virus human protein interaction maps , 2007, Proceedings of the National Academy of Sciences.
[102] D. Kell,et al. What bio technologists knew all along...? , 1996, Journal of theoretical biology.
[103] Sui Huang,et al. Empirical Multiscale Networks of Cellular Regulation , 2007, PLoS Comput. Biol..
[104] Jonathan D. G. Jones,et al. The plant immune system , 2006, Nature.
[105] Andy Pereira,et al. The Rpi-blb2 gene from Solanum bulbocastanum is an Mi-1 gene homolog conferring broad-spectrum late blight resistance in potato. , 2005, The Plant journal : for cell and molecular biology.
[106] Stefan Bornholdt,et al. Reliability of regulatory networks and its evolution. , 2008, Journal of theoretical biology.
[107] Jonathan D. G. Jones,et al. Genome sequence and analysis of the Irish potato famine pathogen Phytophthora infestans , 2009, Nature.
[108] Y. Bar-Yam,et al. Attractors and Democratic Dynamics , 2009, Science.
[109] Jonathan D. G. Jones,et al. A flagellin-induced complex of the receptor FLS2 and BAK1 initiates plant defence , 2007, Nature.
[110] G. Bryan,et al. Phytophthora infestans effector AVR3a is essential for virulence and manipulates plant immunity by stabilizing host E3 ligase CMPG1 , 2010, Proceedings of the National Academy of Sciences.
[111] Clément Nizak,et al. From Grazing Resistance to Pathogenesis: The Coincidental Evolution of Virulence Factors , 2010, PloS one.
[112] J. Beynon,et al. Host-Parasite Coevolutionary Conflict Between Arabidopsis and Downy Mildew , 2004, Science.
[113] R. Hussey,et al. Parasitism proteins in nematode-plant interactions. , 2008, Current opinion in plant biology.
[114] B. Valent,et al. Recent advances in rice blast effector research. , 2010, Current opinion in plant biology.
[115] H. Kacser,et al. The molecular basis of dominance. , 1981, Genetics.
[116] Inna Dubchak,et al. MicrobesOnline: an integrated portal for comparative and functional genomics , 2009, Nucleic Acids Res..
[117] Hannah H. Chang,et al. Transcriptome-wide noise controls lineage choice in mammalian progenitor cells , 2008, Nature.
[118] Ton Bisseling,et al. Intracellular plant microbe associations: secretory pathways and the formation of perimicrobial compartments. , 2010, Current opinion in plant biology.
[119] R M May,et al. Epidemiology and genetics in the coevolution of parasites and hosts , 1983, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[120] Markus J. Herrgård,et al. Reconstruction of microbial transcriptional regulatory networks. , 2004, Current opinion in biotechnology.
[121] J. Fernandes,et al. Maize Tumors Caused by Ustilago maydis Require Organ-Specific Genes in Host and Pathogen , 2010, Science.
[122] Kyung-Sik Ham,et al. Molecular cloning and characterization of glucanase inhibitor proteins: coevolution of a counterdefense mechanism by plant pathogens. , 2002, The Plant cell.
[123] Philippe C. Nicot,et al. Expanding the Paradigms of Plant Pathogen Life History and Evolution of Parasitic Fitness beyond Agricultural Boundaries , 2009, PLoS pathogens.
[124] Yuanfang Guan,et al. Systematic Planning of Genome-Scale Experiments in Poorly Studied Species , 2010, PLoS Comput. Biol..
[125] Natalie M. Myres,et al. Distinctive Paleo-Indian Migration Routes from Beringia Marked by Two Rare mtDNA Haplogroups , 2009, Current Biology.
[126] S. Huang. Discovery and characterization of the major late blight resistance complex in potato: genomic structure, functional diversity, and implications , 2005 .
[127] Anne Lohrli. Chapman and Hall , 1985 .
[128] P. Solomon,et al. New developments in pathogenicity and virulence of necrotrophs. , 2010, Current opinion in plant biology.
[129] T. Boller,et al. Innate Immunity in Plants: An Arms Race Between Pattern Recognition Receptors in Plants and Effectors in Microbial Pathogens , 2009, Science.
[130] F. Schuren,et al. Open Access Research Article Comparative Genome Analysis of a Large Dutch Legionella Pneumophila Strain Collection Identifies Five Markers Highly Correlated with Clinical Strains , 2022 .
[131] Emily Kay,et al. Recent advances in systems microbiology. , 2009, Current opinion in microbiology.
[132] Miguel Rocha,et al. Challenges in integrating Escherichia coli molecular biology data , 2011, Briefings Bioinform..
[133] Hiroaki Kitano,et al. Biological robustness , 2008, Nature Reviews Genetics.
[134] S. R. Uppalapati,et al. Exogenous coronatine, but not coronafacic acid or methyl jasmonate, restores the disease phenotype of a coronatine-defective mutant of Pseudomonas syringae pv. tomato on tomato seedlings , 2010, Journal of General Plant Pathology.
[135] S. Venter,et al. Pantoea ananatis: an unconventional plant pathogen. , 2009, Molecular plant pathology.
[136] J. Mansfield. From bacterial avirulence genes to effector functions via the hrp delivery system: an overview of 25 years of progress in our understanding of plant innate immunity. , 2009, Molecular plant pathology.
[137] B. Roy. The use and abuse of pollinators by fungi. , 1994, Trends in ecology & evolution.
[138] E. Ott,et al. The effect of network topology on the stability of discrete state models of genetic control , 2009, Proceedings of the National Academy of Sciences.
[139] K. Shirasu,et al. Ubiquitination in plant immunity. , 2010, Current opinion in plant biology.
[140] Rebecca E. Irwin,et al. Direct and ecological costs of resistance to herbivory , 2002 .
[141] G. Stacey,et al. A LysM Receptor-Like Kinase Plays a Critical Role in Chitin Signaling and Fungal Resistance in Arabidopsis[W][OA] , 2008, The Plant Cell Online.
[142] R. Stockey,et al. A fossil smut fungus from the anthers of an Eocene angiosperm , 1991, Nature.
[143] Fumiaki Katagiri,et al. Network Modeling Reveals Prevalent Negative Regulatory Relationships between Signaling Sectors in Arabidopsis Immune Signaling , 2010, PLoS pathogens.
[144] Marco Punta,et al. The Rough Guide to In Silico Function Prediction, or How To Use Sequence and Structure Information To Predict Protein Function , 2008, PLoS Comput. Biol..
[145] C. Morris,et al. The life history of the plant pathogen Pseudomonas syringae is linked to the water cycle , 2008, The ISME Journal.
[146] E. Cooper,et al. Evolution of immune systems from self/not self to danger to artificial immune systems (AIS). , 2010, Physics of life reviews.
[147] Zachary D. Smith,et al. Unbiased Reconstruction of a Mammalian Transcriptional Network Mediating Pathogen Responses , 2009 .
[148] Steffen Klamt,et al. Hypergraphs and Cellular Networks , 2009, PLoS Comput. Biol..
[149] R. Albert,et al. Predicting Essential Components of Signal Transduction Networks: A Dynamic Model of Guard Cell Abscisic Acid Signaling , 2006, PLoS biology.
[150] R. Albert. Scale-free networks in cell biology , 2005, Journal of Cell Science.
[151] B. Haas,et al. Ten things to know about oomycete effectors. , 2009, Molecular plant pathology.
[152] J. Vervoort,et al. Cladosporium fulvum Avr4 protects fungal cell walls against hydrolysis by plant chitinases accumulating during infection. , 2006, Molecular plant-microbe interactions : MPMI.
[153] T. Boller,et al. A renaissance of elicitors: perception of microbe-associated molecular patterns and danger signals by pattern-recognition receptors. , 2009, Annual review of plant biology.
[154] David Mackey,et al. RIN4 Interacts with Pseudomonas syringae Type III Effector Molecules and Is Required for RPM1-Mediated Resistance in Arabidopsis , 2002, Cell.
[155] A. Bogdanove,et al. TAL effectors: finding plant genes for disease and defense. , 2010, Current opinion in plant biology.
[156] K. Sjolander,et al. Molecular characterization of proteolytic cleavage sites of the Pseudomonas syringae effector AvrRpt2. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[157] M. Rep,et al. The arms race between tomato and Fusarium oxysporum. , 2010, Molecular plant pathology.
[158] E. A. van der Biezen,et al. Plant disease-resistance proteins and the gene-for-gene concept. , 1998, Trends in biochemical sciences.
[159] S. Altizer,et al. Virulence-transmission trade-offs and population divergence in virulence in a naturally occurring butterfly parasite , 2008, Proceedings of the National Academy of Sciences.
[160] M. Peitsch,et al. The application of systems biology to drug discovery. , 2006, Current opinion in chemical biology.
[161] W. Lim,et al. Defining Network Topologies that Can Achieve Biochemical Adaptation , 2009, Cell.
[162] P. He,et al. Bacterial effectors target BAK1-associated receptor complexes , 2010, Communicative & integrative biology.
[163] M. Elowitz,et al. A synthetic oscillatory network of transcriptional regulators , 2000, Nature.
[164] Kazuki Saito,et al. Metabolomics for functional genomics, systems biology, and biotechnology. , 2010, Annual review of plant biology.
[165] Leighton Pritchard,et al. Quorum Sensing Coordinates Brute Force and Stealth Modes of Infection in the Plant Pathogen Pectobacterium atrosepticum , 2008, PLoS pathogens.
[166] A. Emili,et al. Global Functional Atlas of Escherichia coli Encompassing Previously Uncharacterized Proteins , 2009, PLoS biology.
[167] Simone Hahn,et al. A Bacterial Effector Acts as a Plant Transcription Factor and Induces a Cell Size Regulator , 2007, Science.
[168] H. Westerhoff,et al. Quantification of the contribution of various steps to the control of mitochondrial respiration. , 1982, The Journal of biological chemistry.
[169] Lifeng Chen,et al. Distribution of orphan metabolic activities. , 2007, Trends in biotechnology.
[170] Jian Wang,et al. Protein interaction networks of Saccharomyces cerevisiae, Caenorhabditis elegans and Drosophila melanogaster: Large‐scale organization and robustness , 2006, Proteomics.
[171] D. Kell,et al. Schemes of flux control in a model of Saccharomyces cerevisiae glycolysis. , 2002, European journal of biochemistry.
[172] Frank Emmert-Streib,et al. Revealing differences in gene network inference algorithms on the network level by ensemble methods , 2010, Bioinform..
[173] M. Vidal. A unifying view of 21st century systems biology , 2009, FEBS letters.
[174] S. Chisholm,et al. Host-Microbe Interactions: Shaping the Evolution of the Plant Immune Response , 2022 .
[175] J. Webster. The effect of Toxoplasma gondii on animal behavior: playing cat and mouse. , 2007, Schizophrenia bulletin.
[176] B. Palsson,et al. Thirteen Years of Building Constraint-Based In Silico Models of Escherichia coli , 2003, Journal of bacteriology.
[177] B. Palsson,et al. Metabolic systems biology , 2009, Encyclopedia of Complexity and Systems Science.
[178] G. Martin,et al. Pseudomonas type III effector AvrPtoB induces plant disease susceptibility by inhibition of host programmed cell death , 2003, The EMBO journal.
[179] Jonathan D. G. Jones,et al. Plant pathogens and integrated defence responses to infection , 2001, Nature.
[180] Michael R. Brent,et al. Benchmarking regulatory network reconstruction with GRENDEL , 2009, Bioinform..
[181] S. Schornack,et al. Apoplastic effectors secreted by two unrelated eukaryotic plant pathogens target the tomato defense protease Rcr3 , 2009, Proceedings of the National Academy of Sciences.
[182] Yi Ming Zou,et al. Modeling and analyzing complex biological networks incooperating experimental information on both network topology and stable states , 2010, Bioinform..
[183] Paul A. Bates,et al. Global topological features of cancer proteins in the human interactome , 2006, Bioinform..
[184] Jens Nielsen,et al. Use of genome‐scale metabolic models for understanding microbial physiology , 2010, FEBS letters.
[185] Evangelos Simeonidis,et al. Systems Biology: The elements and principles of Life , 2009, FEBS letters.
[186] D. MacLean,et al. A Boolean Model of the Pseudomonas syringae hrp Regulon Predicts a Tightly Regulated System , 2010, PloS one.
[187] Oliver Ebenhöh,et al. Ground State Robustness as an Evolutionary Design Principle in Signaling Networks , 2009, PloS one.
[188] Anne-Laure Boulesteix,et al. Over-optimism in bioinformatics: an illustration , 2010, Bioinform..
[189] J. Sepulchre,et al. Toward a Quantitative Modeling of the Synthesis of the Pectate Lyases, Essential Virulence Factors in Dickeya dadantii* , 2010, The Journal of Biological Chemistry.