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Yr5-virulent races of Puccinia striiformis f.sp.tritici possess relative parasitic fitness higher than current main predominant races and potential risk
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作者 Gensheng Zhang Mudi Sun +4 位作者 Xinyao Ma Wei Liu Zhimin Du Zhensheng Kang Jie Zhao 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第8期2674-2685,共12页
Wheat stripe rust,caused by Puccinia striiformis f.sp.tritici(Pst),is one of the most destructive fungal diseases of wheat,and seriously threatens safe production of the crop worldwide.In China,new races historically ... Wheat stripe rust,caused by Puccinia striiformis f.sp.tritici(Pst),is one of the most destructive fungal diseases of wheat,and seriously threatens safe production of the crop worldwide.In China,new races historically appeared and rapidly developed to be predominant races and have resulted in ineffectiveness and replacement of wheat resistance cultivars as well as massive reduction in yield.In the present study,the relative parasitic fitness of the two newlyemerged Yr5-virulent races(TSA-6 and TSA-9)were compared with those of four currently predominant Chinese races(CYR31,CYR32,CYR33,and CYR34)based on evaluation on 10 Chinese wheat cultivars.As a result,there were significant differences in the relative parasitic fitness parameters among overall tested races based on multiple comparison(LSD)analysis(P<0.05).The principal component analysis(PCA)of overall parasitic fitness parameters indicated that the sporulation ability,infection and spore survivability,expansion capacity,and potential pathogenicity were the most important parasitic fitness attributes of the tested races.Based on the establishment of extracted three principal components and a comprehensive factor score mathematical models,evaluations of the parasitic fitness attributes of tested races showed that the level of relative parasitic fitness of the tested six races was:CYR32(1.15)>TSA-9(0.95)>TSA-6(0.92)>CYR34(0.29)>CYR31(–1.54)>CYR33(–1.77).The results indicated that two Yr5-virulent races TSA-9 and TSA-6 possessed relative parasitic fitness higher than races CYR34,CYR31,and CYR33,but lower than race CYR32,and have potential risks in developing to be predominant races.Therefore,continual monitoring of both Yr5-virulent races,and their variants is needed.The use of wheat cultivars(lines)with Yr5 resistance gene singly in wheat breeding is essential for being avoided,and is suggested to combine with other effective stripe rust resistance genes. 展开更多
关键词 wheat stripe rust puccinia striiformis f.sp.tritici parasitic fitness Yr5 new race
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Identification of eight Berberis species from the Yunnan-Guizhou plateau as aecial hosts for Puccinia striiformis f.sp.tritici,the wheat stripe rust pathogen 被引量:2
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作者 LI Si-nan CHEN Wen +5 位作者 MA Xin-yao TIAN Xia-xia LIU Yao HUANG Li-li KANG Zhen-sheng ZHAO Jie 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第6期1563-1569,共7页
Puccinia striiformis Westend.f.sp.tritici Erikss.(Pst)infects wheat and causes stripe rust.The rust is heteroecious with wheat as the primary uredinial and telial host and barberry(Berberis spp.)as the alternate pycni... Puccinia striiformis Westend.f.sp.tritici Erikss.(Pst)infects wheat and causes stripe rust.The rust is heteroecious with wheat as the primary uredinial and telial host and barberry(Berberis spp.)as the alternate pycnial and aecial host.More than 40 Berberis species have been identified as alternate hosts for Pst,and most of these are Chinese Berberis species.However,little is known about Berberis species or their geographic distributions in the Yunnan-Guizhou plateau in southwestern China.The Yunnan-Guizhou plateau is considered to be an important and relatively independent region for the evolution of the wheat stripe rust pathogen in China because the entire disease cycle can be completed within the region.In this study,we conducted a survey of barberry plants in the Yunnan-Guizhou plateau and identified the eight Pst-susceptible Berberis species under controlled conditions,including B.julianae,B.tsienii,B.veitchii,B.wilsonae,B.wilsonae var.guhtzunica,B.franchetiana,B.lepidifolia and B.pruinosa.These species are reported here for the first time to serve as alternate hosts for the wheat stripe rust pathogen under controlled conditions. 展开更多
关键词 Berberis spp. alternate host puccinia striiformis f.sp.tritici sexual reproduction stripe rust wheat yellow rust
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Association Analysis of SP-SNPs and Avirulence Genes in Puccinia striiformis f. sp. tritici, the Wheat Stripe Rust Pathogen 被引量:2
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作者 Chongjing Xia Meinan Wang +3 位作者 Anmin Wan Derick A. Jiwan Deven R. See Xianming Chen 《American Journal of Plant Sciences》 2016年第1期126-137,共12页
Puccinia striiformis f. sp. tritici (Pst) is one of the pathogenic fungi on wheat, caused stripe rust that is a great threat for wheat production all over the world. Intensive efforts have been made to study genetics ... Puccinia striiformis f. sp. tritici (Pst) is one of the pathogenic fungi on wheat, caused stripe rust that is a great threat for wheat production all over the world. Intensive efforts have been made to study genetics of wheat resistance to this disease, but few on avirulence of the pathogen due mainly to the nature of obligate biotrophism and the lack of systems for studying its genetics and molecular manipulations. To overcome these limitations, a natural Pst population comprising 352 isolates representative of a diverse virulence spectrum was genotyped using 97 secreted protein-single nucleotide polymorphism (SP-SNP) markers to identify candidate avirulence genes using association analysis. Among avirulence genes corresponding to 19 resistance genes, significantly associated SP-SNP markers were detected for avirulence genes AvYr1, AvYr2, AvYr6, AvYr7, AvYr8, AvYr44, AvYrExp2, AvYrSP, and AvYrTye. These results indicate that association analysis can be used to identify markers for avirulence genes. This study has laid the foundation for developing more SP-SNPs for mapping avirulence genes using segregating populations that can be generated through sexual reproduction on alternate hosts of the pathogen. 展开更多
关键词 puccinia striiformis f. sp. tritici Wheat stripe rust Avirulence Genes Secreted Proteins Single Nucleotide Polymorphism Association Analysis
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Study Genetic Variation Using DNA Molecular Markers and Identification Physiological Races of Wheat Stripe (yellow) Rust Puccinia striiformis f.sp tritici during 2010-2014 in Some Regions of Syria
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作者 Shoula Kharoui Fawaz Azmeh Buthainah N. Alsalamah 《Journal of Food Science and Engineering》 2017年第3期161-172,共12页
Yellow Rust (stripe) rust (Puccinia striiformis West. f. sp. tritici) is one of the most epidemic diseases infect wheat in cold and wet regions. In 1988, this disease caused a loss of seasonal production amounted ... Yellow Rust (stripe) rust (Puccinia striiformis West. f. sp. tritici) is one of the most epidemic diseases infect wheat in cold and wet regions. In 1988, this disease caused a loss of seasonal production amounted 70% on wheat variety Mexipak in Syria, and recurrent infection in 2010, caused by a virulent race called Yr27, caused a considerable loss in the production of bread wheat cultivars (Cham 8, Cham 6 particularly) amounted 90%. Recently, 15 races of yellow rust had been addressed in Syria for seasons 2010-2014; 159E256, 166E254, 166E256, 255 E112, 0 E0, 64 E 6, 230 El50, 0 E 18, 198 El30, 166 El50, 102 El60, 128 E0, 126 El50, 214E150, and 6E16. The race 6E16 was the most frequent during the two seasons, while the race 255El12 was the most virulent, followed by the race 230E222 and the race 0E0 was the weakest one. This study revealed the presence of fourteen newly observed races in Syria. Molecular Variance Analysis of Molecular Variance (AMOVA) of 55 yellow rust Puccinia striiformis f.sp tritici isolates examined by Amplify Fragment Length Polymorphism (AFLP) revealed high genetic variation within population, and the dimensional scale analysis (MSD) and tree diagram showed that the Syrian yellow rust isolates were clustered in three groups: the first group contained isolates derived from durum wheat, the second one contained bread wheat isolates, but the third was made of isolates derived from both durum and bread wheat species. 展开更多
关键词 Wheat yellow stripe) rust puccinia striiformis West f. sp. tritici DNA molecular markers AFLP PCR races Syria.
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Ultrastructural Changes in the Interaction Between Puccinia striiformis and Wheat Cultivar with Slow-Rusting Resistance 被引量:1
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作者 JIANG Xuan-li KANG Zhen-sheng 《Agricultural Sciences in China》 CSCD 2010年第1期64-70,共7页
Ultrastructural changes in both pathogen and host cells in the interaction between Puccinia striiformis and wheat cultivar (Libellula) with slow-rusting resistance were observed by transmission electron microscopy. ... Ultrastructural changes in both pathogen and host cells in the interaction between Puccinia striiformis and wheat cultivar (Libellula) with slow-rusting resistance were observed by transmission electron microscopy. Observations revealed marked changes in ultrastructure of both pathogen and host cells. In the pathogen respect, there were many vesicles appeared in the intercellular hyphae and gradually fused into bigger vacuoles, a number of fat drops and electron-dense granules accumulated, mitochondria became swollen and some of them degraded into vesicles, and the plasmalemma of intercellular hyphae became dark. In the haustoria, the cytoplasm degraded gradually and developed a vacuole in the center, fat drops increased, the extrahaustorial matrix widened with a great amount of electron-dense fibrillar and granular materials, and most of the haustoria died with in conjunction with the disappearance of fat drops and other organelles. Structural defense of the host, including formation of cell wall apposition, collar and papilla, occurred in the host respect. Host resistance expression and cytological features occurring in the slow-rusting resistance were discussed. 展开更多
关键词 WHEAT puccinia striiformis ULTRASTRUCTURE slow-rusting resistance
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Variation in Telial Formation of <i>Puccinia striiformis</i>in the United States 被引量:1
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作者 Anmin Wan Meinan Wang Xianming Chen 《American Journal of Plant Sciences》 2019年第5期826-849,共24页
Puccinia striiformis, the causal agent of stripe rust in wheat, barley, and various wild grasses, produces urediniospores and teliospores on these primary or auxiliary hosts. Telial formation, which stops producing in... Puccinia striiformis, the causal agent of stripe rust in wheat, barley, and various wild grasses, produces urediniospores and teliospores on these primary or auxiliary hosts. Telial formation, which stops producing infectious urediniospores, is affected by various host and environmental conditions. However, it is not clear if variation exists among different isolates in the United States. To determine the differences in the pathogen population, 1423 isolates collected in the United States from 2013 to 2016 were tested for telial formation in the seedling stage at a diurnal temperature profile of 4&deg;C - 20&deg;C. The percentages of telial formation varied greatly among the isolates. Of the 1423 isolates, 62.97% produced telia with the percentages of telial formation ranging from 1% to 95% under the test conditions. The formation of telia was significantly affected by the year and the month when the isolates were collected. The epidemiological regions or states, host plants (wheat, barley, and grasses), and races of the isolates did not significantly affect telial formation. However, significant effects on telial formation were observed by interactions between year and region, year and race, month and region and among year, month, and region, as well as between year and month. The results showed that telial formation is a complex trait under the genetic control of the pathogen isolates for adaptation to different environments. Further studies are needed to identify genes involved in the formation of telia and the relationship of telial formation to the survival, aggressiveness, fitness, and evolution of the pathogen. 展开更多
关键词 puccinia striiformis stripE rust Telial Formation Wheat
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High-throughput RNA sequencing reveals differences between the transcriptomes of the five spore forms of Puccinia striiformis f.sp.tritici,the wheat stripe rust pathogen 被引量:1
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作者 Gangming Zhan Jia Guo +5 位作者 Yuan Tian Fan Ji Xingxuan Bai Jing Zhao Jun Guo Zhensheng Kang 《Stress Biology》 2023年第1期317-331,共15页
The devastating wheat stripe(yellow)rust pathogen,Puccinia striiformis f.sp.tritici(Pst),is a macrocyclic and heteroe-cious fungus.Pst produces urediniospores and teliospores on its primary host,wheat,and pycniospores... The devastating wheat stripe(yellow)rust pathogen,Puccinia striiformis f.sp.tritici(Pst),is a macrocyclic and heteroe-cious fungus.Pst produces urediniospores and teliospores on its primary host,wheat,and pycniospores and aeciospores are produced on its alternate hosts,barberry(Berberis spp.)or mahonia(Mahonia spp.).Basidiospores are developed from teliospores and infect alternate hosts.These five spore forms play distinct roles in Pst infection,disease development,and fungal survival,etc.However,the specific genes and mechanisms underlying these functional differences are largely unknown.In this study,we performed,for the first time in rust fungi,the deep RNA sequencing to examine the transcriptomic shift among all five Pst spore forms.Among a total of 29,591 identified transcripts,951 were specifically expressed in basidiospores,whereas 920,761,266,and 110 were specific for teliospores,pycniospores,aeciospores,and urediniospores,respectively.Additionally,transcriptomes of sexual spores,namely pycniospores and basidiospores,showed significant differences from those of asexual spores(urediniospores,teliospores,and aeciospores),and transcriptomes of urediniospores and aeciospores were more similar to each other than to the three other spore forms.Especially,the basidiospores and pycniospores which infected the berberis shows wide differences in the cell wall degrading-enzymes and mating and pheromone response genes.Besides,we also found that there are 6234 differential expressed genes between the urediniospores and pycniospores,while only have 3 genes have alternative splicing enents,suggesting that differential genes expression may make more contribution than AS.This comprehensive transcriptome profiling can substantially improve our understanding of the developmental biology of the wheat stripe rust fungus. 展开更多
关键词 puccinia striiformis f.sp.tritici Transcriptome Gene expression rust life cycle Spore stages
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Wheat stripe rust resistance gene Yr24/Yr26:A retrospective review 被引量:18
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作者 Robert McIntosh Jingmei Mu +1 位作者 Dejun Han Zhensheng Kang 《The Crop Journal》 SCIE CAS CSCD 2018年第4期321-329,共9页
The objective of this review is to describe events in China and elsewhere that are related to the discovery, genetic identification, use, and ultimate break-down of a single wheat gene for resistance to stripe rust, n... The objective of this review is to describe events in China and elsewhere that are related to the discovery, genetic identification, use, and ultimate break-down of a single wheat gene for resistance to stripe rust, namely Yr24/Yr26. In our retrospective analysis there was an early assumption of at least three genes at or near the locus, which caused an erroneous presumption of genetic diversity for resistance. It is an example of another boom and bust cycle in plant breeding with races virulent to Yr26(V26 races) now being the majority race group in the Chinese Pst population. We have attempted to present our story in a historical and personal context demonstrating research inputs from different national and international groups, as well as some significant contemporary side issues. It covers the period from the late 1980 s to 2017, during which significant rapid advances in the molecular biology of host: pathogen genetics occurred. We attempt to describe both successes and drawbacks in our work. 展开更多
关键词 puccinia striiformis Resistance genes Triticum aestivum VIRULENCE Yellow rust
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Molecular mapping of stripe rust resistance gene YrH9017 in wheat-Psathyrostachys huashanica introgression line H9017-14-16-5-3 被引量:3
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作者 MA Dong-fang HOU Lu +4 位作者 SUN Cai ZHANG Xing YIN Jun-liang GUO Qing-yun ZHU Yong-xing 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2019年第1期108-114,共7页
Several new stripe rust pathogen races emerged in the wheat growing regions of China in recent years.These races were virulent to most of the designated wheat seedling resistance genes.Thus,it is necessary and worthwh... Several new stripe rust pathogen races emerged in the wheat growing regions of China in recent years.These races were virulent to most of the designated wheat seedling resistance genes.Thus,it is necessary and worthwhile to identify new valuable resistant materials for the sake of diversifying resistant sources,pyramiding different resistance genes and achieving durable resistance.Here,we identified the resistance gene,temporarily designated as YrH9017,in wheat-Psathyrostachys huashanica introgression line H9017-14-16-5-3.A total of 146 F2 plants and their derived F2:3 families in a cross of Mingxian 169 and H9017-14-16-5-3 were used to evaluate seedling stripe rust response and as a mapping population.Finally,we constructed a genetic map including eight simple sequence repeat(SSR) markers and expressed sequence tag(EST) markers.YrH9017 was located on the long arm of chromosome 2A and closely linked with two EST-sequence tagged site(EST-STS) markers BG604577 and BE471201 at 1.3 and 1.8 cM distance,respectively.The two closest markers could be used for marker-assisted selection of YrH9017 in breeding. 展开更多
关键词 puccinia striiformis Psathyrostachys huashanica stripE rust MOLECULAR mapping resistance gene
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Effects of UV-B radiation intensity and timing on epidemiological components of wheat stripe rust 被引量:2
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作者 WANG Hui QIN Feng +2 位作者 CHENG Pei MA Zhan-hong WANG Hai-guang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第12期2704-2713,共10页
Stripe rust caused by Puccinia striiformis f. sp. tritici is an important wheat disease worldwide that is greatly influenced by environmental conditions. Ultraviolet B(UV-B) radiation is one important environmental fa... Stripe rust caused by Puccinia striiformis f. sp. tritici is an important wheat disease worldwide that is greatly influenced by environmental conditions. Ultraviolet B(UV-B) radiation is one important environmental factor affecting the occurrence and epidemiology of wheat stripe rust. Investigating UV-B radiation effects on the epidemiology of stripe rust may be conducive to monitoring and predicting this disease. In this study, wheat seedlings were exposed to UV-B radiation during different periods under laboratory conditions and radiation effects on epidemiological components of wheat stripe rust were investigated. Results showed that incubation period was shortened, and the infection efficiency, sporulation quantity and disease index increased when UV-B radiation was performed only pre-inoculation. When the UV-B radiation was performed only postinoculation or both pre-and post-inoculation, the incubation period was prolonged, and the infection efficiency, sporulation quantity and disease index were reduced. When healthy wheat seedlings were inoculated using urediospores collected from wheat leaves irradiated by UV-B only post-inoculation or both pre-and post-inoculation, infection efficiency, sporulation quantity and disease index were also reduced. However, in the latter, the disease incubation period did not differ under varying UV-B radiation intensities compared to that when wheat leaves were not treated with UV-B radiation. Overall, the effects of direct exposure of wheat plants to UV-B radiation with different intensities in different periods on epidemiological components of wheat stripe rust were systematically explored, and the results suggest that the effects of UV-B radiation increased gradually with the increase of UV-B radiation intensity. This information provides a basis for monitoring and predicting this disease as well as for conducting further studies on pathogen virulence variation. 展开更多
关键词 wheat stripe rust UV-B radiation epidemiological component puccinia striiformis f.sp.tritici
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Mapping of wheat stripe rust resistance gene Yr041133 by BSR-Seq analysis 被引量:2
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作者 Yahui Li Ruiming Lin +13 位作者 Jinghuang Hu Xiaohan Shi Dan Qiu Peipei Wu Gebremedhin Habteab Goitom Siqi Wang Hongjun Zhang Li Yang Hongwei Liu Qiuhong Wu Jingzhong Xie Yang Zhou Zhiyong Liu Hongjie Li 《The Crop Journal》 SCIE CSCD 2022年第2期447-455,共9页
Puccinia striiformis Westend. f. sp. tritici(Pst) pathotype CYR34 is widely virulent and prevalent in China.Here, we report identification of a strpie rust resistance(Yr) gene, designated Yr041133, in winter wheat lin... Puccinia striiformis Westend. f. sp. tritici(Pst) pathotype CYR34 is widely virulent and prevalent in China.Here, we report identification of a strpie rust resistance(Yr) gene, designated Yr041133, in winter wheat line 041133. This line produced a hypersensitive reaction to CYR34 and conferred resistance to 13 other pathotypes. Resistance to CYR34 in line 041133 was controlled by a single dominant gene. Bulked segregant RNA sequencing(BSR-Seq) was performed on a pair of RNA bulks generated by pooling resistant and susceptible recombinant inbred lines. Yr041133 was mapped to a 1.7 c M genetic interval on the chromosome arm 7 BL that corresponded to a 0.8 Mb physical interval(608.9–609.7 Mb) in the Chinese Spring reference genome. Based on its unique physical location Yr041133 differred from the other Yr genes on this chromosome arm. 展开更多
关键词 Bulked segregant analysis Genetic mapping puccinia striiformis f.sp.tritici Triticum aestivum Yellow rust
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Mapping a stable adult-plant stripe rust resistance QTL on chromosome 6AL in Chinese wheat landrace Yibinzhuermai 被引量:1
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作者 Mei Deng Li Long +15 位作者 Yukun Cheng Fangjie Yao Fangnian Guan Yuqi Wang Hao Li Zhien Pu Wei Li Qiantao Jiang Yuming Wei Jian Ma Houyang Kang Pengfei Qi Jirui Wang Youliang Zheng Yunfeng Jiang Guoyue Chen 《The Crop Journal》 SCIE CSCD 2022年第4期1111-1119,共9页
Stripe rust,caused by Puccinia striiformis f.sp.tritici(Pst),is one of the most important diseases threatening the yield and stability of wheat production in China and many other countries.Identification and utilizati... Stripe rust,caused by Puccinia striiformis f.sp.tritici(Pst),is one of the most important diseases threatening the yield and stability of wheat production in China and many other countries.Identification and utilization of new genes for durable stripe rust resistance are important for ongoing control of this disease.The objectives of this study were to identify quantitative trait loci(QTL)associated with adult-plant stripe rust resistance in the Chinese wheat landrace Yibinzhuermai(YBZR)and to provide wheat breeders with new sources of potentially durable resistance.A total of 117 recombinant inbred lines(RILs)(F5:8)derived from a cross between YBZR and highly susceptible cultivar Taichung 29(TC29)were assessed for stripe rust severity in field experiments at Wenjiang in 2016 and 2017 and Chongzhou in 2016,2017,2018,and 2019 in Sichuan following inoculation with a mixture of current Pst races.The RILs were genotyped using the Wheat55K single nucleotide polymorphism(SNP)array.Three QTL were identified on chromosome arms 6AL,5BL and 7DS.QYr.YBZR-6AL and QYr.YBZR-7DS conferred major effects in all field environments,explaining 10.6%to 14.7%and 11.5%to 21.2%of phenotypic variation,respectively.The QTL on 5BL and 7DS likely correspond to previously known QTL,whereas QYr.YBZR-6AL is probably novel.Haplotype analysis revealed that the resistance allele at QYr.YBZR-6AL was present in 2.8%of 324 Chinese wheat landraces.SNP markers closely linked with QYr.YBZR-6AL were converted to kompetitive allele-specific PCR markers and validated in the RIL population and a subset of 92 wheat cultivars.QYr.YBZR-6AL and its markers should be useful in breeding programs to improve the level and durability of stripe rust resistance. 展开更多
关键词 puccinia striiformis QTL mapping Single nucleotide polymorphism Yellow rust
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Ultrastructure of Slow-Rusting Expression of Wheat to Stripe Rust
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作者 MAQing SHANGHong-sheng QIANGLei XIEFang-qin SUNHui 《Agricultural Sciences in China》 CAS CSCD 2005年第6期443-448,共6页
The ultrastructure of wheat cultivars with slow-rusting resistance expression to the stripe rust, Puccinia striiformis, wasstudied through TEM. The results show that slow-rusting has the same hypersensitive response c... The ultrastructure of wheat cultivars with slow-rusting resistance expression to the stripe rust, Puccinia striiformis, wasstudied through TEM. The results show that slow-rusting has the same hypersensitive response characters with the lowinfection type resistance, but the mesophyll cell necrotized less in number, thereby only partially inhibiting the extensionof rust fungus, and the fungus being inhibited and necrosed slighter in degree. Apart from the occurrence ofhypersensitiveness, the response of the host cells in slow-rusting wheat cultivars to the infection of fungus also producesstructural materials associated with defense reaction, but distinctly less than that in resistant cultivar. Thus, it is suggestedthat the slow-rusting resistance might have a similar mechanism with the low infection type resistance of race specificity,but with lower intensity. 展开更多
关键词 WHEAT puccinia striiformis Slow-rusting RESISTANCE ULTRASTRUCTURE
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Wheat Stripe Rust Virulence and Varietal Resistance in the Foot Hill Himalayas of Nepal
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作者 Sarala Sharma Etienne Duveiller +3 位作者 Chandra Bahadur Karki Dhruba Bahadur Thapa Ram Chandra Sharma Arun Kumar Joshi 《Journal of Agricultural Science and Technology(B)》 2015年第7期477-485,共9页
Stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst) is an important disease of wheat (Triticum aestivum) in Nepal, which is a part of the Himalayas stretching over the North of Nepal, India, Pakistan,... Stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst) is an important disease of wheat (Triticum aestivum) in Nepal, which is a part of the Himalayas stretching over the North of Nepal, India, Pakistan, Bhutan and beyond. Wheat production plays a crucial role in food security of the marginal hill farmers of Nepal. Frequent epidemics of the rust have caused huge loss in farmer's field. Periodic monitoring during 1980-2008 showed that changes in virulence occurred during this period. The objective of this study was to evaluate Pst resistance and its effective genes in wheat genotypes. For this, trap nurseries, wheat stripe rust differentials, commercial cultivars and advanced breeding lines were tested under artificial epiphytotic and natural hot spots conditions during 2005 to 2010. Four genes (Yr5, Yr10, Yr15 and YrSp) consistently showed resistance to the prevailing races. The gene Yr9 and Yr27 in combinations with Yrl8 were found effective. Other lines with combination of minor genes were also found effective. The genotypes Amadina, Kukuna, Tukuru, Kakatsi and Buck Buck widely used in breeding program were resistant. The cultivation of varieties WK1204, Gautam, Gaura and Dhaulagiri have ensured genetic diversity for the rust resistance and slowed down frequent occurrence of epidemics. The findings of these studies could help in developing effective varietal resistance program in the sub-continent. 展开更多
关键词 puccinia striiformis resistance VIRULENCE stripe rust Triticum aestivum wheat.
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小麦条锈病跨区域全周期绿色防控技术体系的构建与应用
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作者 刘万才 李跃 +10 位作者 王保通 李好海 冯小军 刘媛 彭红 吕国强 张光先 王玲 赵中华 王晓杰 康振生 《植物保护》 CAS CSCD 北大核心 2024年第3期1-9,36,共10页
小麦条锈病是我国小麦生产上一种跨区域流行的重大病害。1949年以来,我国小麦条锈病研究,治理能力明显提升,发病面积、流行程度、流行频率明显降低,但由于条锈菌Puccinia striiformis f.sp.tritici新毒性小种不断产生和气候异常变化等... 小麦条锈病是我国小麦生产上一种跨区域流行的重大病害。1949年以来,我国小麦条锈病研究,治理能力明显提升,发病面积、流行程度、流行频率明显降低,但由于条锈菌Puccinia striiformis f.sp.tritici新毒性小种不断产生和气候异常变化等因素的影响,近年来其流行规律和成灾机制出现了新的变化,发生危害加重,严重威胁小麦生产和国家粮食安全。基于“十二五”以来我国在小麦条锈病菌毒性新小种产生、有性生殖、侵染循环和大区流行规律等方面的最新研究成果,作者在学习和实践以往病害治理经验的基础上,坚持长短结合、标本兼治、分区治理、综合防治的指导思想,制定了“以绿色防控为基础,以全周期管理为重点,以跨区域联防联控为保障”的防控策略,提出了精准监测预报、毒性小种变异监测、早期菌源控制、抗病品种合理布局和应急防控等关键技术,集成构建了全国小麦条锈病跨区域全周期绿色防控技术体系,制定了越夏易变区、冬季繁殖区(越冬区)和春季流行区分区防控技术体系。经在小麦条锈病主要流行区大面积试验示范,取得了防控效果85%以上,化学农药用量减少10%以上,小麦单产提高5%以上的成效。2022年-2023年在全国小麦主产区大范围组织推广应用,有效控制了小麦条锈病严重流行势头,全国病害发生面积出现了新低,有效减轻了灾害损失,保障了国家粮食安全。 展开更多
关键词 小麦条锈病 条锈菌 跨区域全周期 绿色防控 技术体系 大区流行
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Grain yield losses in yellow-rusted durum wheat estimated using digital and conventional parameters under field conditions 被引量:3
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作者 Omar Vergara-Diaz Shawn C.Kefauver +2 位作者 Abdelhalim Elazab Maria Teresa Nieto-Taladriz Jose Luis Araus 《The Crop Journal》 CSCD 2015年第3期200-210,共11页
The biotrophic fungus Puccinia striiformis f. sp. tritici is the causal agent of the yellow rust in wheat. Between the years 2010–2013 a new strain of this pathogen(Warrior/Ambition),against which the present cultiva... The biotrophic fungus Puccinia striiformis f. sp. tritici is the causal agent of the yellow rust in wheat. Between the years 2010–2013 a new strain of this pathogen(Warrior/Ambition),against which the present cultivated wheat varieties have no resistance, appeared and spread rapidly. It threatens cereal production in most of Europe. The search for sources of resistance to this strain is proposed as the most efficient and safe solution to ensure high grain production. This will be helped by the development of high performance and low cost techniques for field phenotyping. In this study we analyzed vegetation indices in the Red,Green, Blue(RGB) images of crop canopies under field conditions. We evaluated their accuracy in predicting grain yield and assessing disease severity in comparison to other field measurements including the Normalized Difference Vegetation Index(NDVI), leaf chlorophyll content, stomatal conductance, and canopy temperature. We also discuss yield components and agronomic parameters in relation to grain yield and disease severity.RGB-based indices proved to be accurate predictors of grain yield and grain yield losses associated with yellow rust(R2= 0.581 and R2= 0.536, respectively), far surpassing the predictive ability of NDVI(R2= 0.118 and R2= 0.128, respectively). In comparison to potential yield, we found the presence of disease to be correlated with reductions in the number of grains per spike, grains per square meter, kernel weight and harvest index. Grain yield losses in the presence of yellow rust were also greater in later heading varieties. The combination of RGB-based indices and days to heading together explained 70.9% of the variability in grain yield and 62.7% of the yield losses. 展开更多
关键词 Wheat yellow rust Field phenotyping NDVI Phenology puccinia striiformis RGB-based indices Triticum durum
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Genomic analysis,trajectory tracking,and field surveys reveal sources and long-distance dispersal routes of wheat stripe rust pathogen in China 被引量:2
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作者 Yuxiang Li Jichen Dai +24 位作者 Taixue Zhang Baotong Wang Siyue Zhang Conghao Wang Jiguang Zhang Qiang Yao Mingju Li Chengyun Li Yuelin Peng Shiqin Cao Gangming Zhan Fei Tao Haifeng Gao Weili Huang Xiaojun Feng Yingwen Bai Zhuoma Qucuo Hongsheng Shang Chong Huang Wancai Liu Jiasui Zhan Xiangming Xu Xianming Chen Zhensheng Kang Xiaoping Hu 《Plant Communications》 SCIE CSCD 2023年第4期174-188,共15页
Identifying sources of phytopathogen inoculum and determining their contributions to disease outbreaks are essential for predicting disease development and establishing control strategies.Puccinia striiformis f.sp.tri... Identifying sources of phytopathogen inoculum and determining their contributions to disease outbreaks are essential for predicting disease development and establishing control strategies.Puccinia striiformis f.sp.tritici(Pst),the causal agent of wheat stripe rust,is an airborne fungal pathogen with rapid virulence variation that threatens wheat production through its long-distance migration.Because of wide variation in geographic features,climatic conditions,and wheat production systems,Pst sources and related dispersal routes in China are largely unclear.In the present study,we performed genomic analyses of 154 Pst isolates from all major wheat-growing regions in China to determine Pst population structure and diversity.Through trajectory tracking,historical migration studies,genetic introgression analyses,and field surveys,we investigated Pst sources and their contributions to wheat stripe rust epidemics.We identified Longnan,the Himalayan region,and the Guizhou Plateau,which contain the highest population genetic diversities,as the Pst sources in China.Pst from Longnan disseminates mainly to eastern Liupan Mountain,the Sichuan Basin,and eastern Qinghai;that from the Himalayan region spreads mainly to the Sichuan Basin and eastern Qinghai;and that from the Guizhou Plateau migrates mainly to the Sichuan Basin and the Central Plain.These findings improve our current understanding of wheat stripe rust epidemics in China and emphasize the need for managing stripe rust on a national scale. 展开更多
关键词 puccinia striiformis f.sp.tritici stripe rust disease epidemics population genetics genome sequencing
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New insights in the battle between wheat and Puccinia striiformis 被引量:1
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作者 Chunlei TANG Xiaojie WANG +4 位作者 Yulin CHENG Minjie LIU Mengxin ZHAO Jinping WEI Zhensheng KANG 《Frontiers of Agricultural Science and Engineering》 2015年第2期101-114,共14页
Wheat stripe rust caused by Puccinia striiformis f.sp.tritici(Pst)poses a great threat to wheat production worldwide.The rapid change in virulence of Pst leads to a loss of resistance in currently resistant wheat cult... Wheat stripe rust caused by Puccinia striiformis f.sp.tritici(Pst)poses a great threat to wheat production worldwide.The rapid change in virulence of Pst leads to a loss of resistance in currently resistant wheat cultivars,which results in frequent disease epidemics.Therefore,a major focus is currently placed on investigating the molecular mechanisms underlying this rapid variation of pathogenicity and coevolving wheat resistance.Limited by the lack of a system for stable transformation of Pst and the difficulties in wheat transformation,it is not easy to generate deeper insights into the wheat-Pst interaction using established genetic methods.Nevertheless,considerable effort has been made to unravel the wheat-Pst interaction and significant progress is being made.Histology and cytology have revealed basic details of infection strategies and defense responses during wheat-Pst interactions,identified cellular components involved in wheat-Pst interactions,and have helped to elucidate their role in the infection process or in plant defense responses.Transcriptome and genome sequencing has revealed the molecular features and dynamics of the wheat-Pst pathosystem.Extensive molecular analyses have led to the identification of major components in the wheat resistance response and in Pst virulence.Studies of wheat-Pst interactions have now entered a new phase in which cellular and molecular approaches are being used.This review focuses on the cellular biology of wheat-Pst interactions and integrates the emerging data from molecular analyses with the histocytological observations. 展开更多
关键词 WHEAT strip rust puccinia striiformis f.sp.tritici host defense pathogen virulence biotrophic fungus
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A secreted catalase contributes to Puccinia striiformis resistance to host-derived oxidative stress 被引量:1
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作者 Pu Yuan Wenhao Qian +4 位作者 Lihua Jiang Conghui Jia Xiaoxuan Ma Zhensheng Kang Jie Liu 《Stress Biology》 CAS 2021年第1期256-270,共15页
Plants can produce reactive oxygen species(ROS)to counteract pathogen invasion,and pathogens have also evolved corresponding ROS scavenging strategies to promote infection and pathogenicity.Catalases(CATs)have been fo... Plants can produce reactive oxygen species(ROS)to counteract pathogen invasion,and pathogens have also evolved corresponding ROS scavenging strategies to promote infection and pathogenicity.Catalases(CATs)have been found to play pivotal roles in detoxifying H_(2)O_(2)formed by superoxide anion catalyzed by superoxide dismutases(SODs).However,few studies have addressed H_(2)O_(2)removing during rust fungi infection of wheat.In this study,we cloned a CAT gene PsCAT1 from Puccinia striiformis f.sp.tritici(Pst),which encodes a monofunctional heme-containing catalase.PsCAT1 exhibited a high degree of tolerance to pH and temperature,and forms high homopolymers.Heterologous complementation assays in Saccharomyces cerevisiae reveal that the signal peptide of PsCAT1 is functional.Overexpression of PsCAT1 enhanced S.cerevisiae resistance to H_(2)O_(2).Transient expression of PsCAT1 in Nicotiana benthamiana suppressed Bax-induced cell death.Knockdown of PsCAT1 using a host-induced gene silencing(HIGS)system led to the reduced virulence of Pst,which was correlated to H_(2)O_(2)accumulation in HIGS plants.These results indicate that PsCAT1 acts as an important pathogenicity factor that facilitates Pst infection by scavenging host-derived H_(2)O_(2). 展开更多
关键词 Wheat stripe rust puccinia striiformis f.sp.tritici CATALASE Reactive oxygen species Host-induced gene silencing
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1997~2001年我国小麦条锈菌生理小种变化动态 被引量:50
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作者 万安民 吴立人 +7 位作者 贾秋珍 金社林 李高宝 王保通 姚革 杨家秀 原宗英 毕云青 《植物病理学报》 CAS CSCD 北大核心 2003年第3期261-266,共6页
1997~ 2 0 0 1年采自我国 13个省和自治区的主要生产品种和重要抗源上的小麦条锈菌标样 4 0 0 8份 ,其鉴定结果基本反映了这期间我国小麦条锈菌生理小种的变化状况。 1997年发现了水源 11致病类型 13和 14 ,2 0 0 1年把原Hybrid 4 6致... 1997~ 2 0 0 1年采自我国 13个省和自治区的主要生产品种和重要抗源上的小麦条锈菌标样 4 0 0 8份 ,其鉴定结果基本反映了这期间我国小麦条锈菌生理小种的变化状况。 1997年发现了水源 11致病类型 13和 14 ,2 0 0 1年把原Hybrid 4 6致病类型 3(HY 3)命名为条中 32号。这期间共监测到 4 1个小种和致病类型 ,每年都能监测到的小种和致病类型有 32个 ,为条中 17、19、2 1、2 2、2 3、2 5、2 6、2 8号 ,洛 10 2 ,条中 2 9,洛 13 2、3,条中 30、31、32 ,Hybrid 4 6 4、5、6、7、8,水源 11 2、3、4、5、6、7、8、10、11、12、13和 14。条中2 9、30、31、32号为主要流行小种。 1997~ 2 0 0 0年间条中 31号位居第一 ,出现频率为 10 .8%~ 13.5 % ,其次为条中 32号 (4 .8%~11.7% ) ,由于条中 32号逐年持续上升 ,2 0 0 1年超过条中 31号而位居第一。其次是条中 2 9和 30号 ,两者出现频率基本相当 ,1997~ 1999年条中 2 9号略高位第 3(3.3%~ 4 .0 % ) ,条中 30号位第 4 (2 .6 %~ 3.3% ) ,2 0 0 0~ 2 0 0 1年 ,条中 30号略高位第 3(3.6 %~7.3% ) ,条中 2 9号位第 4 (2 .7%~ 3.1% )。出现频率较高的还有条中 2 3号、2 5号、2 6号、2 8号和Hybrid 4 6 4、5、7、8,水源 11 3、4、5、7、11、13和 14 ,其它为? 展开更多
关键词 1997~2001年 中国 小麦 条锈菌 生理小种 变化动态
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