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Jassar, O.

Publications and source records attributed to Jassar, O..

2 recordsLinked to original sources

A cyclic adenosine monophosphate (cAMP)-specific phosphodiesterase interacts with begomovirus capsid proteins and modulates virus retention within its vector

Begomoviruses are whitefly-transmitted ss-DNA viruses infecting dicotyledonous plants and contribute to major economic losses to global crop production. Invasion and establishment of an aggressive species of B. tabaci, known as the B cryptic species, has severely constrained vegetable production in the southeastern and southwestern United States. Disruption of genes/pathways critical for whitefly mediated transmission can be effective for the management of begomoviruses. In this study, yeast two hybrid (Y2H)-based screening of B. tabaci cDNA library identified a cyclic adenosine monophosphate (cAMP)-specific phosphodiesterase (PDE4) of the whitefly as an interacting partner with capsid proteins (CPs) of old- and new-world begomoviruses. Interactions of PDE4 with begomovirus CPs were validated by GST-pull-down assays, co-immunoprecipitation, and co-immunolocalization in whitefly midgut. The PDE4 family of enzymes hydrolyze cAMP and regulate intracellular cAMP levels. This study revealed that elevation of cAMP within whitefly by chemically inhibiting or gene (PDE4) silencing resulted in increased retention and transmission of begomoviruses. Similarly, decreased cAMP levels resulted in reduced begomovirus retention. The results of this study demonstrate that whitefly mediated transmission of begomoviruses is regulated by intracellular cAMP by unknown mechanisms. ImportanceBegomoviruses, transmitted by the sweetpotato whitefly, (Bemisa tabaci Gennadius), are the causal agents of many economically important plant virus diseases. Lack of host plant resistance against begomoviruses, high whitefly abundance, and whiteflys ability to develop insecticide resistance rapidly often renders commonly used management practice ineffective. This study demonstrates how begomovirus retention within whitefly and its transmission can be modulated by altering cAMP expression of its insect vector. Naturally occurring bio-pesticides that target insect cAMPs are known. Our findings can lead to alternative strategies for the management of begomoviruses by targeting whitefly cAMP using chemicals, botanicals, or RNAi-based insecticides.

molecular biology↗

Effects of calcium-regulated autophagy on Candidatus Liberibacter solanacearum in carrot psyllid midguts

Candidatus Liberibacter solanacearum (CLso) transmitted by the carrot psyllid, Bactericera trigonica causes carrot yellows in Israel, and has recently gained much importance due to the excessive economical loss. Understanding the interactions between CLso and the psyllid at the cellular level is fundamental for the disease management. Here, we demonstrate the role of calcium ATPase, cytosolic calcium and most importantly Beclin1 in regulating autophagy and its association with Liberibacter. Presence of CLso generates reactive oxygen species and induces the expression of the detoxification enzymes in the psyllid midguts. CLso also induces the expression of both sarco/endoplasmic reticulum Ca2+ pump (SERCA) and 1,4,5-trisphosphate receptors (ITPR) in the midguts, followed by high levels of calcium in the cytosol. Silencing these proteins individually disrupted the calcium levels in the cytosol leading to direct effects on autophagy and thus on Liberibacter. On the other hand, inhibiting Beclin1-phosphorylation through different calcium induced kinases altered the expression of autophagy and CLso abundance. This study establishes a direct correlation between cytosolic calcium levels, autophagy and CLso in the carrot psyllid midgut.

molecular biology↗