Characterization of wheat-triticale lines resistant to powdery mildew, stem rust, stripe rust, wheat curl mite, and limitation on spread of WSMV

文献类型: 外文期刊

第一作者: Li, Hongjie

作者: Li, Hongjie;Conner, R. L.;Liu, Zhiyong;Li, Yiwen;Chen, Yu;Zhou, Yilin;Duan, Xiayu;Shen, Tianmin;Chen, Qin;Graf, R. J.;Jia, Xu

作者机构:

关键词: Secale cereale;triticale;Triticum aestivum

期刊名称:PLANT DISEASE ( 影响因子:4.438; 五年影响因子:4.7 )

ISSN: 0191-2917

年卷期: 2007 年 91 卷 4 期

页码:

收录情况: SCI

摘要: High yield potential and the wide adaptability of wheat-rye T1BL.1RS translocation lines are attractive to breeders. The wheat-rye lines Lankao 1, 3, 4, and 5 were resistant to a wide spectrum of wheat powdery mildew (Blumeria graminis f. sp. tritici) isolates from both China and Canada. They also were resistant to a mixture of wheat stem rust (Puccinia graminis f. sp. tritici) pathotypes (98WSR) and wheat stripe rust (P. striiformis f. sp. tritici) races from western Canada and China. Colonization of wheat curl mite (WCM) (Aceria tosichella) resulted in slower development of rolling and trapping leaves in the Lankao lines than in the WCM-susceptible check cultivars. The delayed development of Wheat streak mosaic (WSM) symptoms on Lankao lines was observed when transmitted by viruliferous WCM, even though they were susceptible to Wheat streak mosaic virus (WSMV). This effect of Lankao lines on limiting the spread of WSM was comparable with other known sources of WCM resistance. Sequential C-banding and genomic in situ hybridization analyses revealed the presence of a pair of T1BL.1RS translocated chromosomes in the Lankao lines. Segregation analysis of the F, progeny plants derived from crosses between Larkao 4 and the susceptible wheat cvs. Mingxian 169 and Lovrin 13 indicated that a single dominant gene was responsible for the isolate-specific resistance against wheat powdery mildew in Lankao 4. Polymerase chain reaction analysis using an STS marker amplified rye chromatin in powdery mildew-resistant and -susceptible F-2 plants of the Mingxian 169 x Lankao 4 cross demonstrated that the resistance of Lankao 4 was not controlled by a gene or genes located on the rye chromosome arm of T1BL.1RS. The resistance of the Lankao lines to diseases and limitation of the spread of WSMV, in combination with good quality and high yield potential, makes them useful for wheat improvement and production.

分类号:

  • 相关文献

[1]Molecular cytogenetic identification of Triticum aestivum Secale cereale substitution and addition lines. Li, HJ,Zhu, ZQ,Zhang, YM,Guo, BH,Wen, YX,Jia, X. 1998

[2]Variation of B Chromosome Associated with Tissue Culture in Wheat-rye Cross. Li, Hongjie,Tian, Bohong. 2009

[3]Primary identification of alien chromatin in T911289, a maintainer of wheat male sterile line with cytoplasm of Aegilops kotschyi. Liu, BS,Li, DY,Zhang, XY,Gao, QR,Sun, LZ,Sun, QX,Dong, ST. 2003

[4]The crossability percentages of 96 bread wheat landraces and cultivars from Japan with rye. Rui, M,Zheng, DS,Fan, L. 1996

[5]Molecular cytogenetic characterization of a new leaf rolling triticale. Ren, Z. L.,Yang, E. N.,Zhang, J. F.,Zou, Y. C.,Yang, Z. J.. 2011

[6]Differential aluminum resistance and organic acid anions secretion in triticale. Liu, Qiang,He, Li Sheng,Wang, Zheng Yuan,Cheng, Xie Zheng,Zheng, Shao Jian. 2007

[7]A fast generation cycling system for oat and triticale breeding. Liu, Hui,Yan, Guijun,Zwer, Pamela,Wang, Haibo,Liu, Chunji,Lu, Zhanyuan,Wang, Yanxia.

[8]Molecular cytogenetic characterization of a new wheat-rye 4R chromosome translocation line resistant to powdery mildew. An, Diaoguo,Ma, Pengtao,Luo, Qiaoling,Xu, Hongxing,Xu, Yunfeng,Zheng, Qi,Lv, Zhenling,Li, Bin,Li, Lihui,Zhou, Yilin.

[9]Screening salt tolerance germplasms and tagging the tolerance gene(s) using microsatellite (SSR) markers in wheat. Liu, X,Shi, J,Zhang, XY,Ma, YS,Jia, JZ. 2001

[10]Chromosome sorting and its applications in common wheat (Triticum aestivum) genome sequencing. Wu SuoWei,Zheng Xu,Liu BingHua,Yang Li,Song MeiFang,Zhou Peng,Zhou Yang,Meng FanHua,Wang ShanHong,Liu HongWei,Zhai HuQu,Yang JianPing,Xiao Yang,Zheng Xu,Cai YingFan,Yang JianPing,Dolezel, Jaroslav,Song MeiFang. 2010

[11]Characterization of a cell wall invertase gene TaCwi-A1 on common wheat chromosome 2A and development of functional markers. Dongyun Ma,Jun Yan,Zhonghu He,Ling Wu,Xianchun Xia.

[12]Mineral element concentrations in grains of Chinese wheat cultivars. Yong Zhang,Qichao Song,Jun Yan,Jianwei Tang,Rongrong Zhao,Yueqiang Zhang,Zhonghu He,Chunqin Zou,Ivan Ortiz-Monasterio. 2010

[13]Breeding Adult Plant Resistance to Stripe Rust in Spring Bread Wheat Germplasm Adapted to Sichuan Province of China. Zou, Y. C.,Yang, W. Y.,Tang, Y. L.,He, Z. H.,Singh, R. P.. 2011

[14]Cloning of 9-cis-epoxycarotenoid dioxygenase gene (TaNCED1) from wheat and its heterologous expression in tobacco. Zhang, S. J.,Song, G. Q.,Li, Y. L.,Gao, J.,Liu, J. J.,Fan, Q. Q.,Huang, C. Y.,Sui, X. X.,Chu, X. S.,Guo, D.,Li, G. Y.. 2014

[15]Development of dominant nuclear male-sterile lines with a blue seed marker in durum and common wheat. Liu, ZQ. 2001

[16]Inheritance in hexaploid wheat of genes for hairy auricles and hairy leaf sheath derived from Aegilops tauschii Coss.. Wu, BH,Hu, XR,Ye, Y,Zhang, Y. 1999

[17]A push-pull strategy to control aphids combines intercropping with semiochemical releases. Hatt, Severin,Zhang, Yong,Chen, Julian,Xu, Qinxuan,Hatt, Severin,Lopes, Thomas,Zhang, Yong,Francis, Frederic,Hatt, Severin,Bodson, Bernard. 2018

[18]Identification of a new stripe rust resistance gene in Chinese winter wheat Zhongmai 175. Lu Jia-ling,Chen Can,Liu Peng,He Zhong-hu,Xia Xian-chun,Chen Can,He Zhong-hu. 2016

[19]A major QTL controlling seed dormancy and pre-harvest sprouting resistance on chromosome 4A in a Chinese wheat landrace. Bai, Gui-Hua,Chen, Cui-Xia,Cai, Shi-Bin,Cai, Shi-Bin. 2008

[20]The effect of low water content on seed longevity. Hu, CL,Zhang, YL,Tao, M,Hu, XR,Jiang, CY. 1998

作者其他论文 更多>>