Fu Shulan, Ren Zhenglong, Chen Xiaoming, Yan Benju, Tan Feiquan, Fu Tihua, Tang Zongxiang
Key Laboratory of Plant Breeding and Genetics, Sichuan Agricultural University, Wenjiang, Chengdu, 611130, Sichuan, People's Republic of China,
J Plant Res. 2014 Nov;127(6):743-53. doi: 10.1007/s10265-014-0659-6. Epub 2014 Aug 28.
Powdery mildew is one of the serious diseases of wheat (Triticum aestivum L., 2 n = 6 × = 42, genomes AABBDD). Rye (Secale cereale L., 2 n = 2 × = 14, genome RR) offers a rich reservoir of powdery mildew resistant genes for wheat breeding program. However, extensive use of these resistant genes may render them susceptible to new pathogen races because of co-evolution of host and pathogen. Therefore, the continuous exploration of new powdery mildew resistant genes is important to wheat breeding program. In the present study, we identified several wheat-rye addition lines from the progeny of T. aestivum L. Mianyang11 × S. cereale L. Kustro, i.e., monosomic addition lines of the rye chromosomes 4R and 6R; a disomic addition line of 6R; and monotelosomic or ditelosomic addition lines of the long arms of rye chromosomes 4R (4 RL) and 6R (6 RL). All these lines displayed immunity to powdery mildew. Thus, we concluded that both the 4 RL and 6 RL arms of Kustro contain powdery mildew resistant genes. It is the first time to discover that 4 RL arm carries powdery mildew resistant gene. Additionally, wheat lines containing new wheat-rye translocation chromosomes were also obtained: these lines retained a short arm of wheat chromosome 5D (5 DS) on which rye chromosome 4R was fused through the short arm 4 RS (designated 5 DS-4 RS · 4 RL; 4 RL stands for the long arm of rye chromosome 4R); or they had an extra short arm of rye chromosome 4R (4 RS) that was attached to the short arm of wheat chromosome 5D (5 DS) (designated 4 RS-5 DS · 5 DL; 5 DL stands for the long arm of wheat chromosome 5D). These two translocation chromosomes could be transmitted to next generation stably, and the wheat lines containing 5 DS-4 RS · 4 RL chromosome also displayed immunity to powdery mildew. The materials obtained in this study can be used for wheat powdery mildew resistant breeding program.
白粉病是小麦(普通小麦,Triticum aestivum L.,2n = 6× = 42,基因组AABBDD)的严重病害之一。黑麦(Secale cereale L.,2n = 2× = 14,基因组RR)为小麦育种计划提供了丰富的抗白粉病基因库。然而,由于寄主与病原菌的共同进化,这些抗性基因的广泛使用可能会使其对新的病原菌小种变得敏感。因此,持续探索新的抗白粉病基因对小麦育种计划至关重要。在本研究中,我们从普通小麦绵阳11(T. aestivum L. Mianyang11)与黑麦库斯特罗(S. cereale L. Kustro)的后代中鉴定出了几个小麦-黑麦附加系,即黑麦染色体4R和6R的单体附加系;6R的二体附加系;以及黑麦染色体4R(4RL)和6R(6RL)长臂的单端体或双端体附加系。所有这些品系对白粉病均表现出免疫性。因此,我们得出结论,库斯特罗的4RL和6RL臂均含有抗白粉病基因。这是首次发现4RL臂携带抗白粉病基因。此外,还获得了含有新的小麦-黑麦易位染色体的小麦品系:这些品系保留了小麦染色体5D的短臂(5DS),黑麦染色体4R通过短臂4RS与之融合(命名为5DS-4RS·4RL;4RL代表黑麦染色体4R的长臂);或者它们有一条额外的黑麦染色体4R短臂(4RS)附着在小麦染色体5D的短臂(5DS)上(命名为4RS-5DS·5DL;5DL代表小麦染色体5D的长臂)。这两条易位染色体能够稳定地传递给下一代,并且含有5DS-4RS·4RL染色体的小麦品系对白粉病也表现出免疫性。本研究获得的材料可用于小麦抗白粉病育种计划。