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Characterization of Newly Developed Wheat/Barley Introgression Lines in Respect of Aluminium Tolerance

机译:关于耐铝性的新开发小麦/大麦基因渗入系的鉴定

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The Al tolerance of newly developed wheat/barley disomic addition, substitution and translocation lines carry chromosomes of three different barley cultivars was evaluated by comparing the root growth in solution containing 75 μM AlCl3 at pH 4.0 to that of known Al-tolerant and sensitive wheat genotypes. The wheat Asakaze komugi, barley Manas cultivars and their hybrid derivatives were found to have high levels of Al tolerance. The wheat line Mv9kr1, barley cultivar Igri and progenies of the hybrids were sensitive to Al. In most cases, the Al tolerance of the wheat/barley introgression lines derived from Al-sensitive wheat Mv9kr1 and barley Betzes with moderate Al tolerance was similar to that of the wheat parents, but the 2DS.2DL-1HS translocation line of Mv9kr1/Betzes exhibited more intensive root growth, while accumulating less Al than the parental lines. This indicates that either the lack of the distal part of chromosome 2DL or the presence of the distal part of 1HS improved the Al tolerance level.
机译:通过比较pH值为4.0的含75μMAlCl3的溶液的根系生长与已知的耐铝和敏感小麦基因型的根生长,评估了新开发的小麦/大麦二体组添加,替代和易位系携带三个不同大麦品种的染色体的Al耐性。发现小麦Asakaze komugi,大麦玛纳斯品种及其杂种衍生物具有高水平的耐铝性。小麦品系Mv9kr1,大麦品种伊格里(Igri)和杂交后代对铝敏感。在大多数情况下,对Al敏感的小麦Mv9kr1和中等耐性的大麦Betzes衍生的小麦/大麦基因渗入系的Al耐性与小麦亲本相似,但Mv9kr1 / Betzes的2DS.2DL-1HS易位系表现出更强的根系生长,同时积累的铝比亲本系少。这表明缺少2DL染色体的远端或存在1HS的远端都改善了A1耐受水平。

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