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Featured researches published by Wang BaoTong.


Journal of Integrative Agriculture | 2014

Molecular Mapping of a Stripe Rust Resistance Gene YrH9020a Transferred from Psathyrostachys huashanica Keng on Wheat Chromosome 6D

Ze-guang Liu; Wei-yuan Yao; Xuexue Shen; Kai-xiang Chao; Yu Fan; Min-zhou Li; Wang BaoTong; Li Qiang; Jinxue Jing

Abstract Stripe rust (yellow rust), caused by Puccinia striiformis f. sp. tritici ( Pst ), is one of the most devastating diseases of wheat throughout the world. H9020-1-6-8-3 is a translocation line originally developed from interspecific hybridization between wheat line 7182 and Psathyrostachys huashanica Keng and is resistant to most Pst races in China. To identify the resistance gene(s) in the translocation line, H9020-1-6-8-3 was crossed with susceptible cultivar Mingxian 169, and seedlings of the parents, F 1 , F 2 , F 3 , and BC 1 generations were tested with prevalent Chinese Pst race CYR32 under controlled greenhouse conditions. The results indicated that there is a single dominant gene, temporarily designated as YrH9020a, conferring resistance to CYR32. The resistance gene was mapped by the F 2 population from Mingxian 169/H9020-1-6-8-3. It was linked to six microsatellite markers, including Xbarc196, Xbarc202, Xbarc96, Xgpw4372, Xbarc21, and Xgdm141, flanked by Xbarc96 and Xbarc202 with at 4.5 and 8.3 cM, respectively. Based on the chromosomal locations of these markers and the test of Chinese Spring (CS) nullitetrasomic and ditelosomic lines, the gene was assigned to chromosome 6D. According to the origin and the chromosomal location, YrH9020a might be a new resistance gene to stripe rust. The flanking markers linked to YrH9020a could be useful for marker-assisted selection in breeding programs.


Journal of Triticeae Crops | 2009

Analysis of the virulent genes of Erysiphe graminis f. sp.tritici and the resistance genes of wheat commercial cultivars in Shaanxi Province.

Shi YaQian; Wang BaoTong; Li Qiang; Wu XingYuan; Wang Fang; Liu Heng; TianYueE; Liu QianRu


Journal of Agricultural Biotechnology | 2010

SSR molecular mapping of stripe rust resistance gene of wheat translocation line H9020-20-12-1-8 derived from Psathyrostachys huashanica Keng.

Yao Qiang; Wang Yang; He MiaoMiao; Li Yang; Zhou XinLi; Wang BaoTong; Jing JinXue


Journal of Triticeae Crops | 2010

Postulation of wheat powdery mildew resistance genes in 101 wheat cultivars (lines) from major wheat-cultivating regions in China.

Cao XueRen; Zhou YiLin; DuanXiaYu; Song Yuli; He WenLan; Ding KeJian; Wang BaoTong; Xia Xian-chun


Acta Phytopathologica Sinica | 2009

Parasitic fitness of the major epidemic strains of Puccinia striiformis f. sp. tritici in China

Wang BaoTong; Li GaoBao; Li Qiang; Wang Fang; Shi YaQian; Liu QianRu; Kang Zhen-sheng


Acta Phytophylacica Sinica | 2000

Correlation analysis of slow-rusting factors to stripe rust in wheat cultivars and the clustering.

Wang BaoTong; Yuan Wenhuan; Li GaoBao; Jin XinZao; Wang Fang


Acta Phytopathologica Sinica | 2009

Genetic analysis and SSR molecular mapping of translocation line V9128-3 derived from Triticum aestivum-Haynaldia villosa resistance to stripe rust.

Hou Lu; Song XiaoHe; Lu YaMing; Hu MaoLin; He MiaoMiao; Jing JinXue; Wang BaoTong


Acta Phytopathologica Sinica | 2012

The sensitivity of Fusarium graminearum to carbendazim in Shaanxi Province

Wang BaoTong


Zhiwu Bingli Xuebao | 2016

湖北省北西部におけるコムギ黄さび病の主要流行種の寄生適合性の研究【JST・京大機械翻訳】

Xue Nan; Wang Qiao; Fan Yu; Yang Lijun; Huang Chaoyan; Li GaoBao; Li Qiang; Wang BaoTong


Zhiwu Bingli Xuebao | 2016

Parasitic fitness of the major epidemic races of Puccinia striiformis f. sp. tritici in the northwest of Hubei province

Xue Nan; Wang Qiao; Fan Yu; Yang Lijun; Huang Chaoyan; Li GaoBao; Li Qiang; Wang BaoTong

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Hu MaoLin

Laboratory of Molecular Biology

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Yang Lijun

Huanghe Science and Technology College

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