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https://www.nature.com/articles/nature06203
Sep 30, 2007 · Bacterial, oomycete and fungal plant pathogens establish disease by translocation of effector proteins into host cells, where they may directly manipulate host innate immunity. In bacteria, translocation is through the type III secretion system, but analogous processes for effector delivery are uncharacterized in fungi and oomycetes.Author: Stephen C. Whisson, Petra C. Boevink, Lucy Moleleki, Anna O. Avrova, Juan G. Morales, Eleanor M. Gil...
https://www.ncbi.nlm.nih.gov/pubmed/17914356
Nov 01, 2007 · Bacterial, oomycete and fungal plant pathogens establish disease by translocation of effector proteins into host cells, where they may directly manipulate host innate immunity. In bacteria, translocation is through the type III secretion system, but analogous processes for effector delivery are uncharacterized in fungi and oomycetes.Author: Stephen C. Whisson, Petra C. Boevink, Lucy Moleleki, Anna O. Avrova, Juan G. Morales, Eleanor M. Gil...
https://www.apsnet.org/edcenter/disandpath/oomycete/introduction/Pages/IntroOomycetesEspanol.aspx
A translocation signal for delivery of oomycete effector proteins into host plant cells. Nature 450(7166):115-118. Dick, M. W. 2001. Straminipilous Fungi: Systematics of the Peronosporomycetes Including Accounts of the Marine Straminipilous Protists, the Plasmodiophorids and Similar Organisms. Kluwer Academic Publishers, Dordrecht, Boston.
https://www.researchgate.net/publication/5931372_A_translocation_signal_for_delivery_of_oomycete_effector_proteins_into_host_plant_cells
Bacterial, oomycete and fungal plant pathogens establish disease by translocation of effector proteins into host cells, where they may directly manipulate host innate immunity. In bacteria, translocation is through the type III secretion system, but analogous processes for effector delivery are uncharacterized in fungi and oomycetes.
https://www.sciencedirect.com/science/article/pii/S1369526608000757
This signal is required for Plasmodium spp. effectors to be delivered into the cytoplasm of host blood cells, which raised the possibility that the twin peptide RXLR–EER motifs are responsible for the delivery of oomycete AVR proteins inside plant cells [14, 15].Author: Paul Rj J. Birch, Paul Rj J. Birch, Petra C. Boevink, Eleanor M. Gilroy, Ingo Hein, Leighton Pritcha...
https://www.pnas.org/content/107/40/17421
Oct 05, 2010 · These pathogens use specialized secretion systems for effector delivery, a process that in most cases requires a specific targeting signal. In bacteria, several secretion systems are known, among which the type III secretion system is critical for pathogenicity of several Gram-negative plant pathogenic bacteria ( 6, 7 ).Author: Sebastian Schornack, Mireille van Damme, Tolga O. Bozkurt, Liliana M. Cano, Matthew Smoker, Marco Th...
https://www.sciencedirect.com/science/article/pii/S136952661200043X
Oomycetes, effectors, and all that jazz. ... translocate and traffic inside host cells, and perturb host processes are major themes in the study of oomycete–plant interactions. The last year has seen important progress in the study of oomycete effectors with, notably, the elucidation of the 3D structures of five RXLR effectors, and novel ...Author: Tolga O Bozkurt, Sebastian Schornack, Mark J Banfield, Sophien Kamoun
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4049077/
RNA silencing serves as a major defense mechanism against RNA viruses in plants and invertebrates. Viral infection of a host induces siRNAs, which guide cleavage of viral RNAs. As a counterdefense, viral suppressors of RNA silencing (VSRs) enable efficient infection by interfering with host silencing.Author: Yongli Qiao, Lin Liu, Lin Liu, Qin Xiong, Cristina Flores, James Wong, Jinxia Shi, Xianbing Wang, Xi...
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