Trubacheeva N V, Salina E A, Numerova O M, Pershina L A
Institute of Cytology and Genetics, Russian Academy of Sciences, Novosibirsk, 630090 Russia.
Genetika. 2003 Jun;39(6):791-5.
Genomes of three alloplasmic wheat lines obtained on the basis of barley--wheat hybrid Horderum geniculatum All. (2n = 28) x Triticum aestivum L. (2n = 42)(Pyrotrix 28) were examined using random amplified polymorphic DNA (RAPD) analysis. Line L-29 was obtained after first backcross of the initial hybrid with the wheat variety Pyrotrix 28 and ten subsequent self-pollinating generations. This line was represented by euploid plants with typical to the common wheat chromosome number (2n = 42), as well as by aneuploids, which contained an additional telocentric chromosome in the main karyotype (2n = 42 + t). Lines L-26 and L-27 were obtained by two backcrosses of one BC1 plant with the wheat variety Novosibirskaya 67 and one subsequent self-polination of one BC3 plant. Chromosome number in all these plants corresponded to 2n = 40 + 4t. RAPD analysis was carried out using seven primers, which were previously proved to be effective for identification of the barley genome fragments within hybrid genomes of alloplasmic lines. The presence of barley genome fragments in line L-29 was revealed by use of five primers, while in lines L-26 and L-27 these fragments were detected by use of one primer. The significant difference in the number of barley RAPD fragments in the genomes of alloplasmic lines obtained at different backcrossing stages suggests more intense displacement of barley genome during backcrossing compared to self-pollination in BC1 plants.
利用随机扩增多态性DNA(RAPD)分析,对基于大麦-小麦杂种Horderum geniculatum All.(2n = 28)×普通小麦Triticum aestivum L.(2n = 42)(Pyrotrix 28)获得的三个异质小麦系的基因组进行了检测。L-29系是初始杂种与小麦品种Pyrotrix 28首次回交并随后经过十代自花授粉后获得的。该系由具有普通小麦典型染色体数(2n = 42)的整倍体植株以及在主要核型中含有一条额外端着丝粒染色体的非整倍体植株(2n = 42 + t)组成。L-26和L-27系是通过一株BC1植株与小麦品种Novosibirskaya 67进行两次回交以及一株BC3植株随后进行一次自花授粉获得的。所有这些植株的染色体数均为2n = 40 + 4t。使用七种引物进行RAPD分析,这些引物先前已被证明对鉴定异质系杂种基因组中的大麦基因组片段有效。L-29系中通过五种引物检测到了大麦基因组片段,而在L-26和L-27系中仅通过一种引物检测到了这些片段。在不同回交阶段获得的异质系基因组中,大麦RAPD片段数量的显著差异表明,与BC1植株中的自花授粉相比,回交过程中大麦基因组的取代更为强烈。