<?xml version="1.0" encoding="utf-8"?><rss version="2.0"><channel><title>SLU Publication search</title><link>https://publications.slu.se/rb/</link><atom:link xmlns:atom="http://www.w3.org/2005/Atom" href="https://publications.slu.se/rb/rss.xml" rel="self" type="application/rss+xml"/><description>SLUpub covers publications by SLU researchers. The database started 2003, but some older material is also included. Many publications are available in full text, mainly the newer material.</description><item><title>Summary of taxonomy changes ratified by the International Committee on Taxonomy of Viruses from the Plant Viruses Subcommittee, 2025</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=144630</link><description>
		

 2025 
		
		
		Summary of taxonomy changes ratified by the International Committee on Taxonomy of Viruses from the Plant Viruses Subcommittee, 2025 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Cauliflower mosaic virus disease spectrum uncovers novel susceptibility factor NCED9 in Arabidopsis thaliana</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=122913</link><description>
		

 2023 
		
		
		Cauliflower mosaic virus disease spectrum uncovers novel susceptibility factor NCED9 in Arabidopsis thaliana 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Cauliflower mosaic virus protein P6 is a multivalent node for RNA granule proteins and interferes with stress granule responses during plant infection</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=122180</link><description>
		

 2023 
		
		
		Cauliflower mosaic virus protein P6 is a multivalent node for RNA granule proteins and interferes with stress granule responses during plant infection 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Arabidopsis RNA processing body components LSM1 and DCP5 aid in the evasion of translational repression during Cauliflower mosaic virus infection</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=117340</link><description>
		

 2022 
		
		
		Arabidopsis RNA processing body components LSM1 and DCP5 aid in the evasion of translational repression during Cauliflower mosaic virus infection 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>A bacterial effector counteracts host autophagy by promoting degradation of an autophagy component</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=117407</link><description>
		

 2022 
		
		
		A bacterial effector counteracts host autophagy by promoting degradation of an autophagy component 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Salicylic acid and the viral virulence factor 2b regulate the divergent roles of autophagy during cucumber mosaic virus infection</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=114371</link><description>
		

 2022 
		
		
		Salicylic acid and the viral virulence factor 2b regulate the divergent roles of autophagy during cucumber mosaic virus infection 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Polycomb Repressive Complex 2 and KRYPTONITE regulate pathogen-induced programmed cell death in Arabidopsis</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=112179</link><description>
		

 2021 
		
		
		Polycomb Repressive Complex 2 and KRYPTONITE regulate pathogen-induced programmed cell death in Arabidopsis 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Autophagy-virus interplay in plants: from antiviral recognition to proviral manipulation</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=101385</link><description>
		

 2019 
		
		
		Autophagy-virus interplay in plants: from antiviral recognition to proviral manipulation 
		 Översiktsartikel (Vetenskapligt granskad)</description></item><item><title>Diverse plant viruses: a toolbox for dissection of cellular pathways</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=102005</link><description>
		

 2019 
		
		
		Diverse plant viruses: a toolbox for dissection of cellular pathways 
		 Annat bidrag i vetenskaplig tidskrift (Vetenskapligt granskad)</description></item><item><title>Dynamics of Protein Accumulation from the 3 ' End of Viral RNA Are Different from Those in the Rest of the Genome in Potato Virus A Infection</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=101928</link><description>
		

 2019 
		
		
		Dynamics of Protein Accumulation from the 3 ' End of Viral RNA Are Different from Those in the Rest of the Genome in Potato Virus A Infection 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Turnip Mosaic Virus Counteracts Selective Autophagy of the Viral Silencing Suppressor HCpro</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=93493</link><description>
		

 2018 
		
		
		Turnip Mosaic Virus Counteracts Selective Autophagy of the Viral Silencing Suppressor HCpro 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Bacteria Exploit Autophagy for Proteasome Degradation and Enhanced Virulence in Plants</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=95328</link><description>
		

 2018 
		
		
		Bacteria Exploit Autophagy for Proteasome Degradation and Enhanced Virulence in Plants 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Autophagy as an emerging arena for plant-pathogen interactions</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87380</link><description>
		

 2017 
		
		
		Autophagy as an emerging arena for plant-pathogen interactions 
		 Översiktsartikel (Vetenskapligt granskad)</description></item><item><title>NBR1-mediated antiviral xenophagy in plant immunity</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=93426</link><description>
		

 2017 
		
		
		NBR1-mediated antiviral xenophagy in plant immunity 
		 Editorial (Vetenskapligt granskad)</description></item><item><title>Autophagy as a mediator of life and death in plants</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=93423</link><description>
		

 2017 
		
		
		Autophagy as a mediator of life and death in plants 
		 Översiktsartikel (Vetenskapligt granskad)</description></item><item><title>Coat Protein Regulation by CK2, CPIP, HSP70, and CHIP Is Required for Potato Virus A Replication and Coat Protein Accumulation</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87533</link><description>
		

 2017 
		
		
		Coat Protein Regulation by CK2, CPIP, HSP70, and CHIP Is Required for Potato Virus A Replication and Coat Protein Accumulation 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Selective autophagy limits cauliflower mosaic virus infection by NBR1-mediated targeting of viral capsid protein and particles</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87382</link><description>
		

 2017 
		
		
		Selective autophagy limits cauliflower mosaic virus infection by NBR1-mediated targeting of viral capsid protein and particles 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Cotranslational Coat Protein-Mediated Inhibition of Potyviral RNA Translation</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87535</link><description>
		

 2015 
		
		
		Cotranslational Coat Protein-Mediated Inhibition of Potyviral RNA Translation 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Formation of Potato Virus A-Induced RNA Granules and Viral Translation Are Interrelated Processes Required for Optimal Virus Accumulation</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=74913</link><description>
		

 2015 
		
		
		Formation of Potato Virus A-Induced RNA Granules and Viral Translation Are Interrelated Processes Required for Optimal Virus Accumulation 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Intracellular coordination of potyviral RNA functions in infection</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=66866</link><description>
		

 2014 
		
		
		Intracellular coordination of potyviral RNA functions in infection 
		 Översiktsartikel (Vetenskapligt granskad)</description></item><item><title>Ribosomal Protein P0 Promotes Potato Virus A Infection and Functions in Viral Translation Together with VPg and eIF(iso)4E</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87539</link><description>
		

 2013 
		
		
		Ribosomal Protein P0 Promotes Potato Virus A Infection and Functions in Viral Translation Together with VPg and eIF(iso)4E 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Emerging picture of host chaperone and cyclophilin roles in RNA virus replication</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87536</link><description>
		

 2011 
		
		
		Emerging picture of host chaperone and cyclophilin roles in RNA virus replication 
		 Översiktsartikel (Vetenskapligt granskad)</description></item><item><title>Potyviral VPg Enhances Viral RNA Translation and Inhibits Reporter mRNA Translation In Planta</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87537</link><description>
		

 2011 
		
		
		Potyviral VPg Enhances Viral RNA Translation and Inhibits Reporter mRNA Translation In Planta 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>Renilla luciferase-based quantitation of Potato virus A infection initiated with Agrobacterium infiltration of N. benthamiana leaves</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87538</link><description>
		

 2010 
		
		
		Renilla luciferase-based quantitation of Potato virus A infection initiated with Agrobacterium infiltration of N. benthamiana leaves 
		 Forskningsartikel (Vetenskapligt granskad)</description></item><item><title>HSP70 and its cochaperone CPIP promote potyvirus infection in Nicotiana benthamiana by regulating viral coat protein functions</title><link>https://publications.slu.se/rb/?file=publ/show&amp;id=87373</link><description>
		

 2010 
		
		
		HSP70 and its cochaperone CPIP promote potyvirus infection in Nicotiana benthamiana by regulating viral coat protein functions 
		 Forskningsartikel (Vetenskapligt granskad)</description></item></channel></rss>