Virulence Survey of <i>Puccinia striiformis</i> in Israel Revealed Considerable Changes in the Pathogen Population During the Period 2001 to 2019

生物 脲孢子 毒力 人口 茎锈病 栽培 Rust(编程语言) 接种 条锈病 普契尼亚 园艺 植物 农学 遗传学 基因 植物抗病性 人口学 社会学 程序设计语言 霉病 计算机科学
作者
Evsey Kosman,Pnina Ben-Yehuda,Jacob Manisterski,Yehoshua Anikster,Hanan Sela
出处
期刊:Plant Disease [American Phytopathological Society]
标识
DOI:10.1094/pdis-03-22-0568-re
摘要

A total of 353 urediniospore isolates of Puccinia striiformis f. sp. tritici (Pst) collected in Israel during 2001 to 2019 were analyzed. Pst pathogenicity was studied with a set of 20 differentials (17 Avocet and 3 other lines). Three periods were compared: 2001 to 2007, 2009 to 2016, and 2017 to 2019. No virulence to Yr5 or Yr15 was detected. Virulence frequencies on Yr4, Yr10, Yr24, and YrSp genes rose to the moderate level (0.28 to 0.44) in 2017 to 2019. Virulence frequencies to Yr2 and Yr9 decreased. One Pst phenotype was identified in all three periods, but its frequency drastically decreased from 0.74 in 2001 to 2016 to 0.21 in 2017 to 2019. The most probable scenario of emergence of wheat yellow rust in Israel is wind dissemination of Pst urediniospores from the Horn of Africa. Variability of the Pst population increased amid considerable evolution with two major transformations in 2009 and 2017. The first modification can be attributed to changes in wheat genetic background in Israel due to deployment of new cultivars resistant to yellow rust since 2004. The second shift in 2017 can be primarily explained by intensive deployment of wheat cultivars resistant to the stem rust race Ug99 in the 2010s in the Horn of Africa. This led to changing genetic backgrounds of the cultivated wheats in the donor region and development and long-distance spread of new Pst phenotypes to Israel. Two singular multivirulent Pst phenotypes were identified in 2019, one of them being closely related to the aggressive Warrior race. Such phenotypes may potentially defeat existing resistances.

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