Manning_2013_G3.(Bethesda)_3_41

Reference

Title : Comparative genomics of a plant-pathogenic fungus, Pyrenophora tritici-repentis, reveals transduplication and the impact of repeat elements on pathogenicity and population divergence - Manning_2013_G3.(Bethesda)_3_41
Author(s) : Manning VA , Pandelova I , Dhillon B , Wilhelm LJ , Goodwin SB , Berlin AM , Figueroa M , Freitag M , Hane JK , Henrissat B , Holman WH , Kodira CD , Martin J , Oliver RP , Robbertse B , Schackwitz W , Schwartz DC , Spatafora JW , Turgeon BG , Yandava C , Young S , Zhou S , Zeng Q , Grigoriev IV , Ma LJ , Ciuffetti LM
Ref : G3 (Bethesda) , 3 :41 , 2013
Abstract : Pyrenophora tritici-repentis is a necrotrophic fungus causal to the disease tan spot of wheat, whose contribution to crop loss has increased significantly during the last few decades. Pathogenicity by this fungus is attributed to the production of host-selective toxins (HST), which are recognized by their host in a genotype-specific manner. To better understand the mechanisms that have led to the increase in disease incidence related to this pathogen, we sequenced the genomes of three P. tritici-repentis isolates. A pathogenic isolate that produces two known HSTs was used to assemble a reference nuclear genome of approximately 40 Mb composed of 11 chromosomes that encode 12,141 predicted genes. Comparison of the reference genome with those of a pathogenic isolate that produces a third HST, and a nonpathogenic isolate, showed the nonpathogen genome to be more diverged than those of the two pathogens. Examination of gene-coding regions has provided candidate pathogen-specific proteins and revealed gene families that may play a role in a necrotrophic lifestyle. Analysis of transposable elements suggests that their presence in the genome of pathogenic isolates contributes to the creation of novel genes, effector diversification, possible horizontal gene transfer events, identified copy number variation, and the first example of transduplication by DNA transposable elements in fungi. Overall, comparative analysis of these genomes provides evidence that pathogenicity in this species arose through an influx of transposable elements, which created a genetically flexible landscape that can easily respond to environmental changes.
ESTHER : Manning_2013_G3.(Bethesda)_3_41
PubMedSearch : Manning_2013_G3.(Bethesda)_3_41
PubMedID: 23316438
Gene_locus related to this paper: pyrtr-b2vxe8 , pyrtr-b2vvm1 , pyrtr-b2vzr5 , pyrtr-b2vu22 , pyrtr-kex1

Related information

Gene_locus related to this paper: pyrtr-b2vxe8 , pyrtr-b2vvm1 , pyrtr-b2vzr5 , pyrtr-b2vu22 , pyrtr-kex1

Citations formats

Manning VA, Pandelova I, Dhillon B, Wilhelm LJ, Goodwin SB, Berlin AM, Figueroa M, Freitag M, Hane JK, Henrissat B, Holman WH, Kodira CD, Martin J, Oliver RP, Robbertse B, Schackwitz W, Schwartz DC, Spatafora JW, Turgeon BG, Yandava C, Young S, Zhou S, Zeng Q, Grigoriev IV, Ma LJ, Ciuffetti LM (2013)
Comparative genomics of a plant-pathogenic fungus, Pyrenophora tritici-repentis, reveals transduplication and the impact of repeat elements on pathogenicity and population divergence
G3 (Bethesda) 3 :41

Manning VA, Pandelova I, Dhillon B, Wilhelm LJ, Goodwin SB, Berlin AM, Figueroa M, Freitag M, Hane JK, Henrissat B, Holman WH, Kodira CD, Martin J, Oliver RP, Robbertse B, Schackwitz W, Schwartz DC, Spatafora JW, Turgeon BG, Yandava C, Young S, Zhou S, Zeng Q, Grigoriev IV, Ma LJ, Ciuffetti LM (2013)
G3 (Bethesda) 3 :41