Exportin 1 is required for the reproduction and maize mosaic virus accumulation in its insect vectorPeregrinus maidis

Author:

Xavier Cesar A. D.,Tyson Clara,Kerner Leo M.,Whitfield Anna E.ORCID

Abstract

ABSTRACTExportin 1 (XPO1) is the major karyopherin-β nuclear receptor mediating the nuclear export of hundreds of proteins and some classes of RNA and regulates several critical processes in the cell, including but not limited to, cell-cycle progression, transcription, translation, oncogenesis and longevity. Viruses have co-opted XPO1 to promote nucleocytoplasmic transport of viral proteins and RNA. Maize mosaic virus (MMV) is anAlphanucleorhabdovirustransmitted in a circulative propagative manner by the corn planthopper,Peregrinus maidis. MMV replicates in the nucleus of plant and insect hosts, and it remains unknown whether MMV co-optsP. maidis XPO1(PmXPO1) to complete its life cycle. Because XPO1 plays multiple regulatory roles in cell functions and virus infection, we hypothesized that RNAi-mediated silencing ofXPO1would simultaneously and negatively affect MMV accumulation and insect physiology. AlthoughPmXPO1expression was not modulated during MMV infection,PmXPO1knockdown negatively affected MMV accumulation inP. maidisat 12 and 15 days after microinjection. Likewise,PmXPO1knockdown negatively affectedP. maidissurvival and reproduction.PmXPO1exhibited tissue specific expression patterns with higher expression in the ovaries compared to the guts of adult females. Survival rate was significantly lower forPmXPO1knockdown females, compared to controls, but no effect was observed for males. Adult females withPmXPO1knockdown were heavier and had a larger abdomen compared to controls at 4, 8 and 12 days after dsRNA microinjection. Consistent with an increase in weight, glyceride content specifically and significantly increased inPmXPO1knockdown female planthoppers. Ovary development was significantly inhibited, and mature eggs were not observed in adult females withPmXPO1knockdown. Consistent with a major role ofPmXPO1 in ovary function and egg production, oviposition and egg hatch in plants was dramatically reduced in dsRNAPmXPO1treated insects compared with control. Altogether, these results suggest thatPmXPO1is a positive regulator ofP. maidisreproduction and that it plays a proviral role in the insect vector supporting MMV infection.

Publisher

Cold Spring Harbor Laboratory

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