Histological and cytological studies of plant infection by Erysiphe euonymi-japonici
暂无分享,去创建一个
[1] Lili Huang,et al. Two distinct Ras genes from Puccinia striiformis exhibit differential roles in rust pathogenicity and cell death. , 2016, Environmental microbiology.
[2] Michael F. Seidl,et al. The Age of Effectors: Genome-Based Discovery and Applications. , 2016, Phytopathology.
[3] Jianren Ye,et al. Colletotrichum gloeosporioides sensu stricto Is a Pathogen of Leaf Anthracnose on Evergreen Spindle Tree (Euonymus japonicus). , 2016, Plant disease.
[4] Lili Huang,et al. Cytological and molecular analysis of nonhost resistance in rice to wheat powdery mildew and leaf rust pathogens , 2015, Protoplasma.
[5] Jonathan D. G. Jones,et al. A Downy Mildew Effector Attenuates Salicylic Acid–Triggered Immunity in Arabidopsis by Interacting with the Host Mediator Complex , 2013, PLoS biology.
[6] Jin-Rong Xu,et al. Characterization of non-host resistance in broad bean to the wheat stripe rust pathogen , 2012, BMC Plant Biology.
[7] Alexandra M. E. Jones,et al. Phytophthora infestans effector AVRblb2 prevents secretion of a plant immune protease at the haustorial interface , 2011, Proceedings of the National Academy of Sciences.
[8] F. Martin,et al. Effectors in Plant-Microbe Interactions: Martin/Effectors in Plant-Microbe Interactions , 2011 .
[9] H. Leung,et al. Nonhost resistance of rice to rust pathogens. , 2011, Molecular plant-microbe interactions : MPMI.
[10] Y. Liu,et al. First Report of Powdery Mildew Caused by Erysiphe euonymi-japonici on Euonymus japonicus in Central China. , 2011, Plant disease.
[11] K. Mendgen,et al. Nutrient uptake in rust fungi: how sweet is parasitic life? , 2011, Euphytica.
[12] Jeppe Emmersen,et al. Powdery mildew fungal effector candidates share N-terminal Y/F/WxC-motif , 2010, BMC Genomics.
[13] R. Panstruga,et al. Terrific Protein Traffic: The Mystery of Effector Protein Delivery by Filamentous Plant Pathogens , 2009, Science.
[14] D. Glawe,et al. The powdery mildews: a review of the world's most familiar (yet poorly known) plant pathogens. , 2008, Annual review of phytopathology.
[15] V. Lipka,et al. Arabidopsis non-host resistance to powdery mildews. , 2008, Current opinion in plant biology.
[16] Lili Huang,et al. Ultrastructural and cytochemical studies on the infection process of Sclerotinia sclerotiorum in oilseed rape , 2008 .
[17] S. Takamatsu,et al. Multilocus phylogenetic analyses within Blumeria graminis, a powdery mildew fungus of cereals. , 2007, Molecular phylogenetics and evolution.
[18] Pari Skamnioti,et al. Of genes and genomes, needles and haystacks: Blumeria graminis and functionality. , 2005, Molecular plant pathology.
[19] H H Edwards,et al. Development of primary germ tubes by conidia of Blumeria graminis f.sp. hordei on leaf epidermal cells of Hordeum vulgare , 2002 .
[20] R. Bélanger. The Powdery Mildews: A Comprehensive Treatise , 2002 .
[21] Z. Kang,et al. Ultrastructural and immunocytochemical investigation of pathogen development and host responses in resistant and susceptible wheat spikes infected by Fusarium culmorum , 2000 .
[22] M. C. Heath. Signalling between Pathogenic Rust Fungi and Resistant or Susceptible Host Plants , 1997 .
[23] S. Somerville,et al. Genetic characterization of five powdery mildew disease resistance loci in Arabidopsis thaliana. , 1996, The Plant journal : for cell and molecular biology.
[24] W. Bushnell,et al. The probable role of primary germ tubes in water uptake before infection by Erysiphe graminis , 1983 .
[25] H. J. Boesewinkel. The morphology of the imperfect states of powdery mildews (Erysiphaceae) , 1980, The Botanical Review.
[26] J. Manners,et al. Somatic recombination in yellow rust of wheat (Puccinia striiformis) , 1969 .
[27] P. Dodds,et al. Plant Infection by Biotrophic Fungal and Oomycete Pathogens , 2012 .
[28] Jonathan D. G. Jones,et al. Subcellular localization of the Hpa RxLR effector repertoire identifies a tonoplast-associated protein HaRxL17 that confers enhanced plant susceptibility. , 2012, The Plant journal : for cell and molecular biology.
[29] F. Martin,et al. Effectors in plant-microbe interactions. , 2011 .
[30] Ye Zi-hong. Studies on changes in nuclear conditions and molecule marker selection of polymorphism in Ustilago esculenta , 2011 .
[31] Zhao Liang-jun. Establishment of Genetic Transformation System of Euonymus japonicus 'Cu Zhi' Mediated by Agrobacterium tumefaciens , 2008 .
[32] Y. Yan. Species of important pests in Euonymus japonicus in western Hunan and their prevailing regularity , 2003 .
[33] S. Somerville,et al. Powdery mildew of Arabidopsis: a model system for host-parasite interactions. , 2002 .
[34] James K. M. Brown,et al. Comparative genetics of avirulence and fungicide resistance in the powdery mildew fungi. , 2002 .
[35] Uwe Braun,et al. The taxonomy of the powdery mildew fungi. , 2002 .
[36] W. Schafer. MOLECULAR MECHANISMS OF FUNGAL PATHOGENICITY TO PLANTS , 1994 .
[37] C. Fenoglio-Preiser,et al. Ultrastructural and Immunocytochemical Features of Ovarian Tumors , 1986 .