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首页> 外文期刊>TAG Theoretical and Applied Genetics >Molecular cytogenetic characterization of alien introgressions with gene Fhb3 for resistance to Fusarium head blight disease of wheat
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Molecular cytogenetic characterization of alien introgressions with gene Fhb3 for resistance to Fusarium head blight disease of wheat

机译:Fhb3基因对小麦枯萎病抗性的外源基因渗入的分子细胞遗传学表征

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Fusarium head blight (FHB) resistance was identified in the alien species Leymus racemosus, and wheat-Leymus introgression lines with FHB resistance were reported previously. Detailed molecular cytogenetic analysis of alien introgressions T01, T09, and T14 and the mapping of Fhb3, a new gene for FHB resistance, are reported here. The introgression line T09 had an unknown wheat-Leymus translocation chromosome. A total of 36 RFLP markers selected from the seven homoeologous groups of wheat were used to characterize T09 and determine the homoeologous relationship of the introgressed Leymus chromosome with wheat. Only short arm markers for group 7 detected Leymus-specific fragments in T09, whereas 7AS-specific RFLP fragments were missing. C-banding and genomic in situ hybridization results indicated that T09 has a compensating Robertsonian translocation T7AL·7Lr#1S involving the long arm of wheat chromosome 7A and the short arm of Leymus chromosome 7Lr#1 substituting for chromosome arm 7AS of wheat. Introgression lines T01 (2n = 44) and T14 (2n = 44) each had two pairs of independent translocation chromosomes. T01 had T4BS·4BL-7Lr#1S + T4BL-7Lr#1S·5Lr#1S. T14 had T6BS·6BL-7Lr#1S + T6BL·5Lr#1S. These translocations were recovered in the progeny of the irradiated line Lr#1 (T5Lr#1S·7Lr#1S). The three translocation lines, T01, T09, and T14, and the disomic addition 7Lr#1 were consistently resistant to FHB in greenhouse point-inoculation experiments, whereas the disomic addition 5Lr#1 was susceptible. The data indicated that at least one novel FHB resistance gene from Leymus, designated Fhb3, resides in the distal region of the short arm of chromosome 7Lr#1, because the resistant translocation lines share a common distal segment of 7Lr#1S. Three PCR-based markers, BE586744-STS, BE404728-STS, and BE586111-STS, specific for 7Lr#1S were developed to expedite marker-assisted selection in breeding programs.
机译:在外来种Leymus racemosus中发现了镰刀菌对枯萎病的抗性,先前也报道了具有FHB抗性的小麦-Leymus渗入系。本文报道了外源基因渗入T01,T09和T14的详细分子细胞遗传学分析以及Fhb抗性的新基因Fhb3的作图。渗入系T09具有未知的小麦-羊草易位染色体。从七个小麦同源群体中选择的总共36个RFLP标记用于表征T09并确定渗入的羊草染色体与小麦的同源关系。仅第7组的短臂标记物在T09中检测到了羊草特异性片段,而缺少7AS特异性RFLP片段。 C带和基因组原位杂交结果表明,T09具有补偿性的罗伯逊易位T7AL·7Lr#1S,涉及小麦7A染色体的长臂和羊草染色体7Lr#1的短臂替代了小麦的7AS染色体。渗入系T01(2n = 44)和T14(2n = 44)各自具有两对独立的易位染色体。 T01具有T4BS·4BL-7Lr#1S + T4BL-7Lr#1S·5Lr#1S。 T14具有T6BS·6BL-7Lr#1S + T6BL·5Lr#1S。这些易位在照射线Lr#1(T5Lr#1S·7Lr#1S)的后代中恢复。在温室点接种实验中,三个易位系,T01,T09和T14以及二体添加7Lr#1始终对FHB具有抗性,而二体添加5Lr#1易感。数据表明,来自Leymus的至少一个新的FHB抗性基因(称为Fhb3)存在于7Lr#1染色体短臂的远端区域,因为抗性易位系共享一个7Lr#1S的共同远端。开发了三种针对7Lr#1S的基于PCR的标记,分别为BE586744-STS,BE404728-STS和BE586111-STS,以加快育种程序中标记辅助的选择。

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