Nuclear Genetic Polymorphism in Pyrenophora tritici-repentis Strains for ToxA and ToxB Effector Genes

2021 ◽  
Vol 57 (5) ◽  
pp. 533-539
Author(s):  
N. V. Mironenko ◽  
A. S. Orina ◽  
N. M. Kovalenko
2020 ◽  
Vol 110 (12) ◽  
pp. 1946-1958
Author(s):  
Mohamed Hafez ◽  
Ryan Gourlie ◽  
Therese Despins ◽  
Thomas K. Turkington ◽  
Timothy L. Friesen ◽  
...  

Parastagonospora nodorum is an important fungal pathogen that causes Septoria nodorum blotch (SNB) in wheat. This pathogen produces several necrotrophic effectors that act as virulence factors; three have been cloned, SnToxA, SnTox1, and SnTox3. In this study, P. nodorum and its sister species P. avenaria f. tritici (Pat1) were isolated from wheat node and grain samples collected from distanced sites in western Canada during 2018. The presence of effector genes and associated haplotypes were determined by PCR and sequence analysis. An internal transcribed spacer-restriction fragment length polymorphism test was developed to distinguish between leaf spotting pathogens (P. nodorum, Pat1, Pyrenophora tritici-repentis, and Bipolaris sorokiniana). P. nodorum was mainly recovered from wheat nodes and to a lesser extent from the grains, while Pat1 was exclusively isolated from grain samples. The effector genes were present in almost all P. nodorum isolates, with the ToxA haplotype 5 (H5) being most prevalent, while a novel ToxA haplotype (denoted here H21) is reported for the first time. In Pat1, only combinations of SnTox1 and SnTox3 genes were present. A ToxA haplotype network was also constructed to assess the evolutionary relationship among globally found haplotypes to date. Finally, cultivars representing wheat development in Canada for the last century were tested for sensitivity to Sn-effectors and to the presence of Tsn1, the ToxA sensitivity gene. Of tested cultivars, 32.9 and 56.9% were sensitive to SnTox1 and SnTox3, respectively, and Tsn1 was present in 59% of the cultivars. In conclusion, P. nodorum and Pat1 were prevalent wheat pathogens in Canada with a potential tissue-specific colonization capacity, while producing necrotrophic effectors to which wheat is sensitive.


2019 ◽  
Vol 10 ◽  
Author(s):  
Sana Kamel ◽  
Mejda Cherif ◽  
Mohamed Hafez ◽  
Therese Despins ◽  
Reem Aboukhaddour

2020 ◽  
Author(s):  
Fariba Ghaderi ◽  
Bahram Sharifnabi ◽  
Mohammad Javan-Nikkhah ◽  
Patrick C. Brunner ◽  
Bruce A. McDonald

ABSTRACTThe center of origin of the globally distributed wheat pathogen Parastagnospora nodorum has remained uncertain because only a small number of isolates from the Fertile Crescent, a region in the Middle East where wheat was domesticated from wild grasses, were included in earlier population genetic and phylogeographic studies. We isolated and genetically analyzed 193 P. nodorum strains from three naturally infected wheat fields distributed across Iran, a country located within the Fertile Crescent, using eleven neutral microsatellite loci. Compared to previous studies that included populations from North America, Europe, Africa, Australia and China, the populations from Iran had the highest genetic diversity globally and also exhibited greater population structure over smaller spatial scales, patterns typically associated with a species’ center of origin. Genes encoding the necrotrophic effectors SnToxA, SnTox1 and SnTox3 were found at a high frequency in the Iranian population. By sequencing 96 randomly chosen Iranian strains, we detected new alleles for all three effector genes. Analyses of allele diversity showed that all three effector genes had higher diversity in Iran than in any population included in previous studies, with Iran acting as a hub for the effector diversity that was found in other global populations. Taken together, these findings support the hypothesis that P. nodorum originated either within or nearby the Fertile Crescent with a genome that already encoded all three necrotrophic effectors during its emergence as a pathogen on wheat. Our findings also suggest that P. nodorum was the original source of the ToxA genes discovered in the wheat pathogens Phaeosphaeria avenaria f. sp. tritici 1, Pyrenophora tritici-repentis and Bipolaris sorokiniana.


2009 ◽  
Author(s):  
Anke Karl ◽  
Loretta Malta ◽  
Alexander Strobel ◽  
Katza Poehnitzsch ◽  
Sirko Rabe

2010 ◽  
Vol 48 (01) ◽  
Author(s):  
IA Malik ◽  
N Naz ◽  
F Moriconi ◽  
F Moriconi ◽  
B Baumgartner ◽  
...  

2009 ◽  
Vol 150 (33) ◽  
pp. 1545-1549 ◽  
Author(s):  
András Csejtei ◽  
Antal Tibold ◽  
István Ember ◽  
István Kiss

A colorectalis rákok a második leggyakoribb halálokként szerepelnek a rosszindulatú betegségek között. A fej-nyak táji daganatok halálozása Magyarországon 265%-kal emelkedett az utóbbi 30 évben. Nem lehet eléggé hangsúlyozni e két daganatcsoport közegészségügyi jelentőségét. A colorectalis daganatok esetén a GSTM1, GSTT1 enzimek, valamint a p53 72-es kodonjának, fej-nyak táji tumorok esetén az XRCC1 Arg194Trp és Arg399Gln polimorfizmusainak hatását elemeztük. Intraoperatíve eltávolított daganatos és megfelelően illesztett daganatmentes mintákat válogattunk. A formalinban fixált mintákat deparaffinizáltuk és proteináz-K-emésztésnek vetettük alá. A genotipizálást PCR, illetve a fej-nyak táji tumorok esetén PCR-RFLP módszerrel végeztük. A vizsgált allélek gyakoriságában nem volt különbség a daganatos és a kontrollcsoport között. Túlélés tekintetében szignifikáns különbséget találtunk a GSTM1 és a p53 allélek között Dukes B stádiumú colorectalis daganatok esetén és az XRCC1 194 allélek között III-as stádiumú fej-nyak táji tumorokban. A fenti típusú genetikai különbségek szisztematikus vizsgálata a jövőben hozzájárulhat az egyéni rizikóbecslés és az individualizált kezelések megalapozásához.


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