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Bentham, A.

Publications and source records attributed to Bentham, A..

2 recordsLinked to original sources

Sanctuary: A Starship transposon facilitating the movement of the virulence factor ToxA in fungal wheat pathogens

There is increasing evidence that mobile genetic elements can drive the emergence of pathogenic fungal species by moving virulence genes horizontally. The 14 kbp ToxhAT transposon has been shown to be moving the necrotrophic effector, ToxA, horizontally between fungal species that infect Triticum aestivum (wheat), namely Parastagonospora nodorum, Pyrenophora tritici-repentis, and Bipolaris sorokiniana. All three species utilise the ToxA protein to infect wheat. Previous genomic evidence found ToxhAT in distinct chromosomal positions in two isolates of B. sorokiniana, indicating that the transposon is still active in this species. Here we confirm the movement of ToxhAT using long-read Nanopore MinION sequencing of eight novel and one previously published B. sorokiniana isolates. One event of independent transposition of ToxhAT was observed, and target site duplications of "TA" were identified, confirming this was an autonomous movement facilitated by a yet unidentified transposase. Whole genome analysis revealed that ToxhAT is a passenger embedded in a much larger, conserved 170-196 kbp mobile genetic element. This element, termed Sanctuary, belongs to the newly described Starship transposon superfamily. This classification is based on the presence of short direct repeats, empty insertion sites, a putative tyrosine recombinase gene and other features of Starship transposons. We also show that ToxhAT has been independently captured by two different Starships, Sanctuary and Horizon which share little to no sequenced identity, outside of ToxhAT. This classification makes Horizon and Sanctuary part of a growing number of Starships involved in the horizontal gene transfer of adaptive genetic material between fungal species. ImportanceThe work presented here expands our understanding of a novel group of mobile genetic elements called Starships that facilitate the horizontal exchange of virulence genes in fungal pathogens. Our analysis shows that Sanctuary and ToxhAT are likely active and autonomous transposons in the B. sorokiniana genome. We also show that the smaller ToxhAT transposon has been independently captured by two different Starships, viz. Sanctuary in B. sorokiniana and Horizon in P. tritici-repentis and P. nodorum. Outside of ToxhAT these two Starships share no sequence identity. The capture of ToxhAT by two different mobile elements in three different fungal wheat pathogens demonstrates how horizontal transposon transfer is driving the evolution of virulence in these important wheat pathogens.

genomics↗

The blast effector Pwl2 is a virulence factor that modifies the cellular localisation of host protein HIPP43 to suppress immunity.

The rice blast fungus Magnaporthe oryzae secretes a battery of effector proteins to facilitate host infection. Among these effectors, Pwl2 was first identified as a host specificity determinant for infection of weeping lovegrass (Eragrostis curvula) and is also recognised by the barley Mla3 resistance gene. However, its biological activity is not known. Here we show that PWL2 expression is regulated by the Pmk1 MAP kinase during cell-to-cell movement by M. oryzae at plasmodesmata (PD)-containing pit field sites. Consistent with its regulation, we provide evidence that Pwl2 binds to a barley heavy metal-binding isoprenylated protein HIPP43, which results in its displacement from plasmodesmata. Transgenic barley lines overexpressing either PWL2 or HIPP43 exhibit attenuated immune responses and increased disease susceptibility. By contrast, a Pwl2SNDEYWY mutant that does not interact with HIPP43, fails to alter the PD localisation of HIPP43. Targeted deletion of three copies of PWL2 in M. oryzae results in a{Delta} pwl2 mutant showing gain-of-virulence to weeping lovegrass and barley Mla3 lines, but also a reduction in severity of blast disease on susceptible host plants. Taken together, our results provide evidence that Pwl2 is a virulence factor that acts by suppressing host immunity through perturbing the plasmodesmatal deployment of HIPP43.

plant biology↗