نتایج جستجو برای: yellow stripe rust

تعداد نتایج: 55384  

2014
Gangming Zhan Yuan Tian Fuping Wang Xianming Chen Jun Guo Min Jiao Lili Huang Zhensheng Kang

Puccinia striiformis f. sp. tritici (Pst), the causal fungus of wheat stripe rust, was previously reported to be infected by Lecanicillium lecanii, Microdochium nivale and Typhula idahoensis. Here, we report a novel hyperparasite on Pst. This hyperparasitic fungus was identified as Cladosporium cladosporioides (Fresen.) GA de Vries based on morphological characteristics observed by light and sc...

Journal: :Phytopathology 2005
Vihanga Pahalawatta Xianming Chen

ABSTRACT Most barley cultivars are resistant to stripe rust of wheat that is caused by Puccinia striiformis f. sp. tritici. The barley cv. Steptoe is susceptible to all identified races of P. striiformis f. sp. hordei (PSH), the barley stripe rust pathogen, but is resistant to most P. striiformis f. sp. tritici races. To determine inheritance of the Steptoe resistance to P. striiformis f. sp. t...

Journal: :International Journal of Current Microbiology and Applied Sciences 2017

افشاری, فرزاد , خدارحمی, منوچهر , عمرانی, علی ,

Identifying the virulence factors of stripe rust (Puccinia striiformis f. sp. tritici) disease, awareness of numbers and identification of resistance genes in wheat breeding materials, accelerate the process of producing the resistance cultivars which are sustained against different races. To study the genetic and pathogenic and non-pathogenic spectrum of genes, five hot races of stripe rust wh...

2016
Amy Rinaldo Brian Gilbert Rainer Boni Simon G. Krattinger Davinder Singh Robert F. Park Evans Lagudah Michael Ayliffe

The hexaploid wheat (Triticum aestivum) adult plant resistance gene, Lr34/Yr18/Sr57/Pm38/Ltn1, provides broad-spectrum resistance to wheat leaf rust (Lr34), stripe rust (Yr18), stem rust (Sr57) and powdery mildew (Pm38) pathogens, and has remained effective in wheat crops for many decades. The partial resistance provided by this gene is only apparent in adult plants and not effective in field-g...

Journal: :Canadian journal of plant pathology 2021

Stripe (yellow) rust, caused by the biotrophic fungal pathogen Puccinia striiformis f. sp. tritici (Pst), is emerging as a serious threat to wheat (Triticum aestivum L.) production in many regions of North America. Genetic resistance stripe rust typically conditioned products genes that detect pathogen-associated molecular patterns and initiate cascade signalling events, culminating generation ...

2018
Qiong Zheng Wenjiang Huang Ximin Cui Yue Shi Linyi Liu

Yellow rust is one of the most destructive diseases for winter wheat and has led to a significant decrease in winter wheat quality and yield. Identifying and monitoring yellow rust is of great importance for guiding agricultural production over large areas. Compared with traditional crop disease discrimination methods, remote sensing technology has proven to be a useful tool for accomplishing s...

Journal: :Current opinion in plant biology 2005
James A Kolmer

The rusts of wheat are important fungal plant pathogens that can be disseminated thousands of kilometers across continents and oceans by wind. Rusts are obligate parasites that interact with resistance genes in wheat in a gene-for-gene manner. New races of rust develop by mutation and selection for virulence against rust resistance genes in wheat. In recent years, new races of wheat leaf rust, ...

Journal: :Agronomy 2022

Yellow (stripe) rust, caused by the biotrophic fungus Puccinia striiformis f. sp. tritici (Pst), stands as most serious wheat disease worldwide, affecting approximately 88% of world production. Even though yellow rust generally develops in cool humid weather conditions, expansion new races adapted to warmer climates threatens zones where severe P. epidemics were infrequent, such Andalusian crop...

A. Haghnazari B. Sharma P. Moradi, R. Bozorgipour

In order to produce doubled haploid lines of bread wheat resistant to strip or yellow rust, three F1 wheat hybrids were crossed using pollens of three maize hybrids. Out of 1071 pollinated florets, success in seed set ranged from 63.1% to 93.3% (mean 78%). Differences in seed set among the crosses were not significant. Embryo formation in the seeds developed on different crosses also varied fro...

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