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首页> 外文期刊>BMC Plant Biology >Molecular cytogenetic characterization of wheat– Elymus repens chromosomal translocation lines with resistance to Fusarium head blight and stripe rust
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Molecular cytogenetic characterization of wheat– Elymus repens chromosomal translocation lines with resistance to Fusarium head blight and stripe rust

机译:小麦 - 伊丽腐殖染色体易位线的分子细胞遗传学表征,具有抗镰刀菌枯竭和条纹锈病

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Fusarium head blight (FHB) caused by the fungus Fusarium graminearum Schwabe and stripe rust caused by Puccinia striiformis f. sp. tritici are devastating diseases that affect wheat production worldwide. The use of disease-resistant genes and cultivars is the most effective means of reducing fungicide applications to combat these diseases. Elymus repens (2n?=?6x?=?42, StStStStHH) is a potentially useful germplasm of FHB and stripe rust resistance for wheat improvement. Here, we report the development and characterization of two wheat–E. repens lines derived from the progeny of common wheat–E. repens hybrids. Cytological studies indicated that the mean chromosome configuration of K15–1192-2 and K15–1194-2 at meiosis were 2n?=?42?=?0.86 I?+?17.46 II (ring)?+?3.11 II (rod) and 2n?=?42?=?2.45 I?+?14.17 II (ring)?+?5.50 II (rod)?+?0.07 III, respectively. Genomic and fluorescence in situ hybridization karyotyping and simple sequence repeats markers revealed that K15–1192-2 was a wheat–E. repens 3D/?St double terminal chromosomal translocation line. Line K15–1194-2 was identified as harboring a pair of 7DS/?StL Robertsonian translocations and one 3D/?St double terminal translocational chromosome. Further analyses using specific expressed sequence tag-SSR markers confirmed that the wheat–E. repens translocations involved the 3St chromatin in both lines. Furthermore, compared with the wheat parent Chuannong16, K15–1192-2 and K15–1194-2 expressed high levels of resistance to FHB and stripe rust pathogens prevalent in China. Thus, this study has determined that the chromosome 3St of E. repens harbors gene(s) highly resistant to FHB and stripe rust, and chromatin of 3St introgressed into wheat chromosomes completely presented the resistance, indicating the feasibility of using these translocation lines as novel material for breeding resistant wheat cultivars and alien gene mining.
机译:Fusarium Head枯萎(FHB)由真菌纤肢禾本科施韦斯和普科尼亚斯特里米斯造成的条纹锈病引起。 sp。 Tritici是影响全世界小麦生产的破坏性疾病。使用抗病基因和品种是减少杀菌剂应用以打击这些疾病的最有效手段。 Elymus Repens(2N?=Δ6x?=Δ22,ststststhh)是FHB的潜在有用的种质和小麦改善的条纹耐锈性。在这里,我们报告了两只麦片的发展和表征。从普通小麦-e的后代衍生的释放线。释放混合动力车。细胞学研究表明,Meiosis的平均染色体构型和k15-1194-2的染色体构型为2N?=?42?=?0.86 I?+ 17.46 II(环)?+?3.11 II(棒)和2N?=?42?=?2.45 I?+?14.17 II(环)?+?5.50 II(棒)?+?0.07 III。基因组和荧光原位杂交核型和简单序列重复标记显示,K15-1192-2是小麦-e。重新缩回3D /?ST双末端染色体易位线。鉴定为覆盖一对7ds / robertsonian易位和一个3D / st双端子旋转染色体的线K15-1194-2。使用特异性表达序列标签-SSR标记进一步分析证实了小麦-E。重新替换易位涉及两条线的第3次染色质。此外,与小麦父母Chuannong16相比,K15-1192-2和K15-1194-2表达了对中国FHB和条纹锈病病原体的高水平抗性。因此,该研究已经确定了E.染色体的染色体释放到FHB和条纹锈病高度抗性,并且3st的染色质完全呈现为小麦染色体,表明使用这些易位线作为新颖的可行性抗药性小麦品种和外星基因开采的材料。

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