نتایج جستجو برای: puccinia graminis f sp tritici

تعداد نتایج: 421203  

2006
O. CHICAIZA I. A. KHAN X. ZHANG J. C. BREVIS L. JACKSON X. CHEN J. DUBCOVSKY

We report here the release of four germplasm lines of hard red spring (HRS) wheat (T. aestivum L.) [Yecora Rojo Yr36– Gpc-B1 (Reg. no. GP-793, PI 638740), Yecora Rojo Lr47 (Reg. no. GP-791, PI 638738), Kern Lr47 (Reg. no. GP-792, PI 638739), and Anza Lr37/Yr17/Sr38 (Reg. no. GP-795, PI 638742)] and one durum wheat (T. turgidum L.) [UC1113 Yr36– Gpc-B1 (Reg. no. GP-794, PI 638741)], isogenic for...

Journal: :Science 2017
Jiapeng Chen Narayana M Upadhyaya Diana Ortiz Jana Sperschneider Feng Li Clement Bouton Susan Breen Chongmei Dong Bo Xu Xiaoxiao Zhang Rohit Mago Kim Newell Xiaodi Xia Maud Bernoux Jennifer M Taylor Brian Steffenson Yue Jin Peng Zhang Kostya Kanyuka Melania Figueroa Jeffrey G Ellis Robert F Park Peter N Dodds

Race-specific resistance genes protect the global wheat crop from stem rust disease caused by Puccinia graminis f. sp. tritici (Pgt) but are often overcome owing to evolution of new virulent races of the pathogen. To understand virulence evolution in Pgt, we identified the protein ligand (AvrSr50) recognized by the Sr50 resistance protein. A spontaneous mutant of Pgt virulent to Sr50 contained ...

Journal: :Science 2013
Cyrille Saintenac Wenjun Zhang Andres Salcedo Matthew N Rouse Harold N Trick Eduard Akhunov Jorge Dubcovsky

Wheat stem rust, caused by Puccinia graminis f. sp. tritici (Pgt), is a devastating disease that can cause severe yield losses. A previously uncharacterized Pgt race, designated Ug99, has overcome most of the widely used resistance genes and is threatening major wheat production areas. Here, we demonstrate that the Sr35 gene from Triticum monococcum is a coiled-coil, nucleotide-binding, leucine...

2017
Tianheng Ren Zongxiang Tang Shulan Fu Benju Yan Feiquan Tan Zhenglong Ren Zhi Li

Rye has been used worldwide as a source for the genetic improvement of wheat. In this study, two stable wheat-rye primary T1RS.1BL translocation lines were selected from the progeny of the crossing of the wheat cultivar Mianyang11-1 and a Chinese local rye variety, Weining. These two novel translocation lines were identified by molecular cytogenetic analysis. PCR results, multi-color fluorescen...

Journal: :Phytopathology 2011
M N Rouse Y Jin

Race TTKSK (or Ug99) of Puccinia graminis f. sp. tritici possesses virulence to several stem rust resistance genes commonly present in wheat cultivars grown worldwide. New variants detected in the race TTKSK lineage further broadened the virulence spectrum. The identification of sources of genetic resistance to race TTKSK and its relatives is necessary to enable the development and deployment o...

Journal: :Phytopathology 2015
Bhoja R Basnet Sukhwinder Singh Eric E Lopez-Vera Julio Huerta-Espino Sridhar Bhavani Yue Jin Matthew N Rouse Ravi P Singh

This study reports the identification of a new gene conferring resistance to the Ug99 lineage of races of Puccinia graminis f. sp. tritici in wheat (Triticum aestivum L.). Because the virulent races of stem rust pathogen continue to pose a serious threat in global wheat production, identification and molecular characterization of new resistance genes remains of utmost important to enhance resis...

Journal: :Phytopathology 2017
Colin W Hiebert Matthew N Rouse Jayaveeramuthu Nirmala Tom Fetch

Stem rust, caused by Puccinia graminis f. sp. tritici, is a destructive disease of wheat that can be controlled by deploying effective stem rust resistance (Sr) genes. Highly virulent races of P. graminis f. sp. tritici in Africa have been detected and characterized. These include race TRTTF and the Ug99 group of races such as TTKSK. Several Canadian and U.S. spring wheat cultivars, including t...

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