Moullet Odile, Díaz Bermúdez Gemma, Fossati Dario, Brabant Cécile, Mascher Fabio, Schori Arnold
Plant Breeding and Genetic Resources, Agroscope Changins, CH-1260 Nyon, Switzerland.
Present Address: Saint-Genis-Pouilly, France.
Mol Breed. 2022 Sep 22;42(10):60. doi: 10.1007/s11032-022-01327-3. eCollection 2022 Oct.
Pre -harvest sprouting (PHS) is an important problem in cereal production reducing yield and grain quality. After decades of improvement, triticale remains particularly susceptible to PHS but no resistance genes or QTLs were identified so far in this species. As wheat shares the A and B genomes with triticale, wheat PHS resistance genes can be introgressed into triticale genome by recombination after interspecific crosses. In this project, three PHS resistance genes have been transferred from wheat to triticale by marker-assisted interspecific crosses, followed by four backcrosses. The gene from the 3AS chromosome of cultivar Zenkoujikomugi (Zen) and the and , respectively located on the 4AL and 5BL chromosomes derived both from cultivar Aus1408, were pyramided in the triticale cultivar Cosinus. Only the gene increases consistently the PHS resistance in triticale. The lack of efficacy of the other two genes, especially , could be the result of an imperfect linkage between the marker and the gene of interest. The introduction of PHS resistance genes did not alter agronomic nor disease resistance performances of triticale. This approach leads to two new, agronomically performant and PHS-resistant triticale cultivars. Today, two breeding triticale lines are ready to enter the official registration process.
收获前发芽(PHS)是谷物生产中的一个重要问题,会降低产量和谷物品质。经过数十年的改良,小黑麦仍然对PHS特别敏感,但到目前为止,在该物种中尚未鉴定出抗性基因或QTL。由于小麦与小黑麦共享A和B基因组,小麦的PHS抗性基因可以通过种间杂交后的重组导入小黑麦基因组。在这个项目中,通过标记辅助种间杂交,然后进行四次回交,已将三个PHS抗性基因从小麦转移到小黑麦中。来自品种Zenkoujikomugi(Zen)3AS染色体的基因以及分别位于来自品种Aus1408的4AL和5BL染色体上的基因,在小黑麦品种Cosinus中聚合。只有基因持续提高小黑麦的PHS抗性。其他两个基因,尤其是基因缺乏效果,可能是标记与目标基因之间不完全连锁的结果。PHS抗性基因的导入并未改变小黑麦的农艺性状或抗病性能。这种方法培育出了两个新的、农艺性能良好且抗PHS的小黑麦品种。如今,两个小黑麦育种系已准备好进入官方登记程序。