Abstract

Lettuce infectious yellows virus (LIYV) is the type member of the genus Crinivirus in the family Closteroviridae. Like many other positive-strand RNA viruses, LIYV infections induce a number of cytopathic changes in plant cells, of which the two most characteristic are: Beet yellows virus-type inclusion bodies composed of vesicles derived from cytoplasmic membranes; and conical plasmalemma deposits (PLDs) located at the plasmalemma over plasmodesmata pit fields. The former are not only found in various closterovirus infections, but similar structures are known as ‘viral factories’ or viroplasms in cells infected with diverse types of animal and plant viruses. These are generally sites of virus replication, virion assembly and in some cases are involved in cell-to-cell transport. By contrast, PLDs induced by the LIYV-encoded P26 non-virion protein are not involved in replication but are speculated to have roles in virus intercellular movement. These deposits often harbor LIYV virions arranged to be perpendicular to the plasma membrane over plasmodesmata, and our recent studies show that P26 is required for LIYV systemic plant infection. The functional mechanism of how LIYV P26 facilitates intercellular movement remains unclear, however, research on other plant viruses provides some insights on the possible ways of viral intercellular movement through targeting and modifying plasmodesmata via interactions between plant cellular components and viral-encoded factors. In summary, beginning with LIYV, we review the studies that have uncovered the biological determinants giving rise to these cytopathological effects and their importance in viral replication, virion assembly and intercellular movement during the plant infection by closteroviruses, and compare these findings with those for other positive-strand RNA viruses.

Highlights

  • Viruses are small obligate intracellular parasites that depend entirely on host cells for their replication

  • We provide an overview of the cellular modifications induced during closterovirus infection, especially those induced by Lettuce infectious yellows virus (LIYV), the type member of the genus Crinivirus in the family Closteroviridae (Wang et al, 2010)

  • P26 expressed from the heterologous TMV (Tobacco mosaic virus) vector was shown to be sufficient to induce the formation of the plasmalemma deposits (PLDs) indistinguishable from those produced by LIYV infection, unlike LIYV particles, TMV particles were not observed associated with the PLDs (Medina et al, 2005; Stewart et al, 2009), which might indicate specific interactions between LIYV virions and the P26-aggregated PLDs

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Summary

INTRODUCTION

Viruses are small obligate intracellular parasites that depend entirely on host cells for their replication. Viruses of the family Closteroviridae possess the largest and the most complex genomes (up to 20 kb) and virions (up to 2000 nm) of all +ssRNA plant-infecting viruses (Rubio et al, 2013), and cause phloem-limited infections in host plants. The different types of well-studied cellular remodeling induced by other +ssRNA viruses, including how these alternations are formed and their roles in the virus infection cycle, are discussed, and we believe those may provide new understandings and perspectives on the molecular biology of closteroviruses and their interactions with host cells. Closteroviridae cause severe diseases in various cultivated crops worldwide including citrus, beet, lettuce, tomato, cucurbits and grapevines, that lead to great economic losses Their genetic similarity and threats on agriculture make the studies on the molecular biology of closteroviruses and their interactions with their plant host cells important. Studies on LIYV have proved to be critical in establishing a basic understanding of crinivirus–host interactions and their pathogenesis

CYTOPATHOLOGY OF CLOSTEROVIRUS INFECTIONS
THE FAMILY Closteroviridae
Crinivirus Crinivirus Crinivirus Crinivirus
Closterovirus Closterovirus Closterovirus Ampelovirus
Vesicle Type
CONCLUSION AND FUTURE PERSPECTIVES

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