【目的】将二倍体长穗偃麦草7E染色体导入主栽小麦背景,培育小麦-长穗偃麦草7E染色体抗赤霉病易位系,为小麦抗赤霉病遗传改良利用外源优良基因提供新种质。【方法】利用中国春-长穗偃麦草7E代换系DS7E(7B)与扬麦16杂交的F_2种子进行~(60)Co辐射(30 000 rad)和种植,表现型选择收获存活M_1植株的种子,从M_2连续通过表型农艺性状选择、单花滴注法进行赤霉病抗性鉴定和长穗偃麦草7E染色体或染色体臂特异分子标记PCR扩增筛选,最后在M_4代对中选材料以长穗偃麦草基因组DNA为探针进行基因组原位杂交(genomic in situ hybridization,GISH)证实。【结果】M_1选择了赤霉病发病率不同的13个单株进行繁殖。利用前期开发的长穗偃麦草7E染色体和7EL、7ES特异标记检测13株的后代M_2单株,获得含有长穗偃麦草7EL片段7株和7ES片段14株;对21株M_2衍生的222个M_3植株进行特异标记检测,共选择含有长穗偃麦草7EL片段13株和7ES片段3株;利用来自12株M_3的后代(M_4)进行GISH,共9株M_3的后代具有小麦-长穗偃麦草易位染色体,体细胞染色体2n=42。...
【英文摘要】
【Objective】The objective of this study was to transfer the chromosome 7E of Thinopyrum elongatum into cultivated common wheat(Triticum aestivam L.) to develop translocation lines resistant to Fusarium Head Blight(FHB) and thereby to provide new germplasm for improving FHB resistance in common wheat.【Method】The F_2 seeds from the cross between Yangmai16 and DS7E(7B) were radiated using ~(60)Co(at 30 000 rad), DS7E(7B) being a substitution line in which the chromosome 7B of Chinese Spring common wheat was sub...