首页> 外文期刊>Euphytica >Molecular cytogenetic characterization and SSR marker analysis of a leaf rust resistant wheat line carrying a 6G(6B) substitution from Triticum timopheevii (Zhuk.)
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Molecular cytogenetic characterization and SSR marker analysis of a leaf rust resistant wheat line carrying a 6G(6B) substitution from Triticum timopheevii (Zhuk.)

机译:携带6G(6B)小麦的小麦抗叶锈病品系的分子细胞遗传学表征和SSR标记分析。

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摘要

A disease (powdery mildew, leaf rust) resistant line was selected from the progenies of a Triticum aestivum × Triticum timopheevii amphiploid produced at Martonvásár. This line was previously identified with C-banding as a 6G(6B) substitution. In order to detect the 6G chromosome in a wheat background, fluorescence in situ hybridization (FISH) and microsatellite marker analysis were used. Ten microsatellite markers of the 43 tested generated PCR products that were polymorphic between chromosomes 6B and 6G, and four showed length-polymorphism. The FISH hybridization pattern of 6G from T. timopheevii was identified using a combination of four repetitive DNA probes (Afa-family, pSc119.2, pTa71, (GAA)7). Genomic in situ hybridization (GISH) technique, capable of labelling the At and G genomes separately, was used on the same slides to differentiate the At and G genomes in T. timopheevii. The At and G genomes of T. timopheevii were grouped on the basis of the GISH patterns and a cyclic intergenomic translocation involving 6At-1G-4G was detected in T. timopheevii accession TRI667. The presence of 6G in the substitution line was demonstrated using FISH with the four repetitive DNA probes. Chromosome 6G was clearly identified and its FISH pattern was different from that of 6B in the parental wheat cultivar Fleischmann-481. According to field tests, the 6G(6B) substitution line has resistance to leaf rust.
机译:从Martonvásár产的普通小麦×普通小麦二倍体的后代中选择了一种抗病性(粉状,叶锈病)的品系。这条线以前被C波段标识为6G(6B)替代。为了检测小麦背景中的6G染色体,使用了荧光原位杂交(FISH)和微卫星标记分析。在43个测试生成的PCR产物中,有10个微卫星标记在6B和6G染色体之间具有多态性,其中四个显示出长度多态性。使用四种重复DNA探针(Afa-家族,pSc119.2,pTa71,(GAA)7 )的组合,鉴定了来自提莫非艾维虫6G的FISH杂交模式。在同一张幻灯片上使用能够分别标记At 和G基因组的基因组原位杂交(GISH)技术来区分T.phemopheevii中的At 和G基因组。根据GISH模式对Timopheevii的At和G基因组进行分组,并在Timopheevii登录号TRI667中检测到涉及6Ats-1G-4G的环状基因组易位。使用FISH和四个重复DNA探针证明了6G在替换系中的存在。在亲本小麦品种Fleischmann-481中,清楚地鉴定了6G染色体,其FISH模式与6B染色体不同。根据现场测试,6G(6B)替换线具有抗叶锈病的能力。

著录项

  • 来源
    《Euphytica》 |2012年第1期|p.45-55|共11页
  • 作者单位

    Agricultural Research Institute of the Hungarian Academy of Sciences, Martonvásár, P.O. Box 19, 2462, Hungary;

    Agricultural Research Institute of the Hungarian Academy of Sciences, Martonvásár, P.O. Box 19, 2462, Hungary;

    Agricultural Research Institute of the Hungarian Academy of Sciences, Martonvásár, P.O. Box 19, 2462, Hungary;

    Agricultural Research Institute of the Hungarian Academy of Sciences, Martonvásár, P.O. Box 19, 2462, Hungary;

    Agricultural Research Institute of the Hungarian Academy of Sciences, Martonvásár, P.O. Box 19, 2462, Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Triticum aestivum; T. timopheevii; Leaf rust resistance; Fluorescence in situ hybridization; Microsatellite marker;

    机译:普通小麦;T。噻虫啉;抗叶锈性;荧光原位杂交;微卫星标记;

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