Strain Specific Factors Control Effector Gene Silencing in Phytophthora sojae
暂无分享,去创建一个
[1] Mahmut Tör,et al. The Top 10 oomycete pathogens in molecular plant pathology. , 2014, Molecular plant pathology.
[2] S. Shrestha,et al. Epigenetic control of effectors in plant pathogens , 2014, Front. Plant Sci..
[3] J. Paszkowski,et al. Epigenetic memory in plants , 2014, The EMBO journal.
[4] O. Hobert,et al. Starvation-Induced Transgenerational Inheritance of Small RNAs in C. elegans , 2014, Cell.
[5] Jun Wang,et al. Epigenetic modification and inheritance in sexual reversal of fish , 2014, Genome research.
[6] W. G. Kelly. Transgenerational epigenetics in the germline cycle of Caenorhabditis elegans , 2014, Epigenetics & Chromatin.
[7] Dannian Yu,et al. Genome Re-Sequencing and Functional Analysis Places the Phytophthora sojae Avirulence Genes Avr1c and Avr1a in a Tandem Repeat at a Single Locus , 2014, PloS one.
[8] B. Tyler,et al. The Phytophthora sojae Genome Sequence: Foundation for a Revolution , 2014 .
[9] R. Dean,et al. Genomics of Plant-Associated Fungi and Oomycetes: Dicot Pathogens , 2014, Springer Berlin Heidelberg.
[10] Y. Bi,et al. Loss of Heterozygosity Drives Clonal Diversity of Phytophthora capsici in China , 2013, PloS one.
[11] T. Kasuga,et al. Epigenetics and the evolution of virulence. , 2013, Trends in microbiology.
[12] S. Whisson,et al. Phenotypic diversification by gene silencing in Phytophthora plant pathogens , 2013, Communicative & integrative biology.
[13] S. Dong,et al. The Phytophthora sojae Avr1d gene encodes an RxLR-dEER effector with presence and absence polymorphisms among pathogen strains. , 2013, Molecular plant-microbe interactions : MPMI.
[14] Dannian Yu,et al. Deletion of the Phytophthora sojae avirulence gene Avr1d causes gain of virulence on Rps1d. , 2013, Molecular plant-microbe interactions : MPMI.
[15] Shiv D. Kale,et al. Two RxLR avirulence genes in Phytophthora sojae determine soybean Rps1k-mediated disease resistance. , 2013, Molecular plant-microbe interactions : MPMI.
[16] M. Gijzen,et al. Transgenerational gene silencing causes gain of virulence in a plant pathogen , 2013, Nature Communications.
[17] S. Whisson,et al. Evidence for Small RNAs Homologous to Effector-Encoding Genes and Transposable Elements in the Oomycete Phytophthora infestans , 2012, PloS one.
[18] James R. Knight,et al. Genome sequencing and mapping reveal loss of heterozygosity as a mechanism for rapid adaptation in the vegetable pathogen Phytophthora capsici. , 2012, Molecular plant-microbe interactions : MPMI.
[19] F. Govers,et al. The genus Phytophthora anno 2012. , 2012, Phytopathology.
[20] S. Whisson,et al. Can silencing of transposons contribute to variation in effector gene expression in Phytophthora infestans? , 2012, Mobile genetic elements.
[21] Oliver Hobert,et al. Transgenerational Inheritance of an Acquired Small RNA-Based Antiviral Response in C. elegans , 2011, Cell.
[22] Shiv D. Kale,et al. Phytophthora sojae Avirulence Effector Avr3b is a Secreted NADH and ADP-ribose Pyrophosphorylase that Modulates Plant Immunity , 2011, PLoS pathogens.
[23] Laura J Grenville-Briggs,et al. Evidence for involvement of Dicer-like, Argonaute and histone deacetylase proteins in gene silencing in Phytophthora infestans. , 2011, Molecular plant pathology.
[24] Shiv D. Kale,et al. Sequence Variants of the Phytophthora sojae RXLR Effector Avr3a/5 Are Differentially Recognized by Rps3a and Rps5 in Soybean , 2011, PloS one.
[25] A. Vercauteren,et al. Aberrant genome size and instability of Phytophthora ramorum oospore progenies. , 2011, Fungal genetics and biology : FG & B.
[26] Rhys A. Farrer,et al. Genome Evolution Following Host Jumps in the Irish Potato Famine Pathogen Lineage , 2010, Science.
[27] Shiv D. Kale,et al. Different domains of Phytophthora sojae effector Avr4/6 are recognized by soybean resistance genes Rps4 and Rps6. , 2010, Molecular plant-microbe interactions : MPMI.
[28] A. Dorrance,et al. Integrated Management Strategies for Phytophthora sojae Combining Host Resistance and Seed Treatments. , 2009, Plant disease.
[29] Eva Jablonka,et al. Transgenerational Epigenetic Inheritance: Prevalence, Mechanisms, and Implications for the Study of Heredity and Evolution , 2009, The Quarterly Review of Biology.
[30] B. Tyler,et al. The Phytophthora sojae Avirulence Locus Avr3c Encodes a Multi-Copy RXLR Effector with Sequence Polymorphisms among Pathogen Strains , 2009, PloS one.
[31] Shiv D. Kale,et al. Copy Number Variation and Transcriptional Polymorphisms of Phytophthora sojae RXLR Effector Genes Avr1a and Avr3a , 2009, PloS one.
[32] A. Dorrance,et al. Phytophthora sojae: Diversity among and within Populations , 2008 .
[33] M. Gijzen,et al. Phytophthora sojae and Soybean , 2008 .
[34] V. Chandler,et al. Paramutation: epigenetic instructions passed across generations. , 2008, Genetics.
[35] H. Judelson,et al. Transgene-Induced Silencing of the Zoosporogenesis-Specific NIFC Gene Cluster of Phytophthora infestans Involves Chromatin Alterations , 2007, Eukaryotic Cell.
[36] J. Boore,et al. Mitochondrial genome sequences and comparative genomics of Phytophthora ramorum and P. sojae , 2007, Current Genetics.
[37] A. Dorrance,et al. Isolation, Storage, Pathotype Characterization, and Evaluation of Resistance for Phytophthora sojae in Soybean , 2007 .
[38] B. Tyler. Phytophthora sojae: root rot pathogen of soybean and model oomycete. , 2007, Molecular plant pathology.
[39] Laura Baxter,et al. Phytophthora Genome Sequences Uncover Evolutionary Origins and Mechanisms of Pathogenesis , 2006, Science.
[40] B. Tyler,et al. The Avr1b locus of Phytophthora sojae encodes an elicitor and a regulator required for avirulence on soybean plants carrying resistance gene Rps1b. , 2004, Molecular plant-microbe interactions : MPMI.
[41] S. Whisson,et al. Evidence for outcrossing in Phytophthora sojae and linkage of a DNA marker to two avirulence genes , 1994, Current Genetics.
[42] S. Whisson,et al. Inheritance and mapping of 11 avirulence genes in Phytophthora sojae. , 2002, Fungal genetics and biology : FG & B.
[43] I. Tommerup,et al. Non-Mendelian inheritance revealed in a genetic analysis of sexual progeny of Phytophthora cinnamomi with microsatellite markers. , 2002, Fungal genetics and biology : FG & B.
[44] M. Bhattacharyya,et al. Genetic and physical mapping of Avr1a in Phytophthora sojae. , 2002, Genetics.
[45] B. Tyler,et al. High frequency mitotic gene conversion in genetic hybrids of the oomycete Phytophthora sojae , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[46] D. S. Shaw,et al. The detection of nonhybrid, trisomic, and triploid offspring in sexual progeny of a mating of Phytophthora infestans. , 1999, Fungal genetics and biology : FG & B.
[47] H. Förster,et al. Inheritance of avirulence factors and restriction fragment length polymorphism markers in outcrosses of the oomycete Phytophthora sojae , 1995 .
[48] Stagg Da,et al. Genetic variation in homothallic and hyphal swelling isolates of Pythium ultimum var. ultimum and P. utlimum var. sporangiferum. , 1994 .
[49] H. Förster,et al. Phytophthora sojae races have arisen by clonal evolution and by rare outcrosses. , 1994 .
[50] D. S. St. Clair,et al. Genetic variation in homothallic and hyphal swelling isolates of Pythium ultimum var. ultimum and P. utlimum var. sporangiferum. , 1994, Molecular plant-microbe interactions : MPMI.
[51] R. Bhat,et al. The inheritance of resistance to metalaxyl and to fluorophenylalanine in matings of homothallic Phytophthora sojae , 1993 .
[52] A. Layton,et al. The virulence of interracial heterokaryons of Phytophthora megasperma f. sp. glycinea , 1988 .
[53] R. Buzzell,et al. Variation in virulence in successive single-zoospore propagations of Phytophthora megasperma f. sp. glycinea , 1985 .
[54] Margaret Long. Phytophthora megasperma var. sojae: Development of Wild-Type Strains for Genetic Research , 1975 .