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首页> 外文期刊>Czech Journal of Genetics and Plant Breeding >Detection of various U and M chromosomes in wheat-Aegilops biuncialis hybrids and derivatives using fluorescence in situ hybridisation and molecular markers.
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Detection of various U and M chromosomes in wheat-Aegilops biuncialis hybrids and derivatives using fluorescence in situ hybridisation and molecular markers.

机译:使用荧光原位杂交和分子标记检测小麦-埃及象草杂交种和衍生物中各种U和M染色体。

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摘要

The aim of the study was to select wheat-Aegilops biuncialis addition lines carrying Aegilops biuncialis chromosomes differing from those which were introgressed into the wheat-Ae. biuncialis addition lines produced earlier in Martonvasar, Hungary. In the course of the experiments new wheat-Ae. biuncialis addition lines carrying chromosomes 2Ub, 6Mb, 6Ub; 5Ub, 3Ub, 7Ub; 5Mb, 6Mb and 7Mb were selected. The 2Ub disomic addition line is relatively stable, as 91% of the progenies contain this chromosome pair. The 6Mb disomic addition line proved to be dwarf and sterile, but it still exists as a monosomic addition line. Progenies analysed from the 6Ub monosomic addition line did not carry the 6Ub chromosome. One plant containing the 5Ub, 3Ub and 7Ub chromosomes and one plant carrying 5Mb, 6Mb and 7Mb chromosomes showed very low fertility. Each of the plants produced a single seed, but seeds of the parent plants are still available. Line No. 49/00 carried a submetacentric Ae. biuncialis chromosome pair and the chromosome number 44 has been constant for several generations. After FISH no hybridisation site was observed on the Ae. biuncialis chromosome pair using the pSc119.2 and Afa family repetitive DNA probes, so it was not possible to identify the Ae. biuncialis chromosome pair. However, the use of wheat SSR markers and the (GAA)n microsatellite DNA probe allowed it to be characterised more accurately. These new lines facilitate gene transfer from Ae. biuncialis into cultivated wheat and the selection of U and M genome-specific wheat SSR markers.
机译:该研究的目的是选择携带不同于小麦-Ae的那些的携带有埃及伊蚊的染色体的小麦-埃及伊蚊的添加系。 biuncialis加法系在匈牙利的Martonvasar较早生产。在实验过程中,新的小麦Ae。携带染色体2U b ,6M b ,6U b 的比乌尼西亚斯附加系; 5U b ,3U b ,7U b ;选择了5M b ,6M b 和7M b 。 2U b 二体组添加系相对稳定,因为91%的后代包含该染色体对。 6M b 二体组添加线被证明是矮小的且不育的,但仍以单体添加线存在。从6U b 单体组添加系分析的后代没有携带6U b 染色体。一株含有5U b ,3U b 和7U b 染色体的植物和一株携带5M b ,6M < sup> b 和7M b 染色体显示出非常低的受精率。每个植物产生一个种子,但是亲本植物的种子仍然可用。 49/00号线载有亚超中心Ae。 biuncialis染色体对和第44号染色体已经保持了几代之久。 FISH后,在Ae上未观察到杂交位点。使用pSc119.2和Afa家族重复DNA探针对biuncialis染色体进行配对,因此无法鉴定Ae。 biuncialis染色体对。但是,使用小麦SSR标记和(GAA) n 微卫星DNA探针可以更准确地鉴定其特征。这些新品系促进了Ae基因的转移。栽培小麦中的双uncialis和U和M基因组特异性小麦SSR标记的选择。

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