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将四倍体黑小麦 A、B 基因组的染色质导入四倍体黑麦中。

Introgression of A- and B-genome of tetraploid triticale chromatin into tetraploid rye.

机构信息

Institute of Plant Genetics, Polish Academy of Sciences, Strzeszyńska 34, 60-479, Poznań, Poland.

出版信息

J Appl Genet. 2013 Nov;54(4):435-40. doi: 10.1007/s13353-013-0171-z. Epub 2013 Sep 24.

Abstract

An improvement of rye is one of the mainstream goals of current breeding. Our study is concerned with the introduction of the tetraploid triticale (ABRR) into the 4x rye (RRRR) using classical methods of distant crossing. One hundred fifty BC1F9 hybrid plants [(4x rye × 4x triticales) × 4x rye] obtained from a backcrossing program were studied. The major aim of this work was to verify the presence of an introgressed A- and B- genome chromatin of triticale in a collection of the 4x rye-tiritcale hybrids and to determine their chromosome compositions. In the present study, karyotypes of the previously reported BC1F2s and BC1F3s were compared with that of the BC1F9 generation as obtained after several subsequent open pollinations. The genomic in situ hybridisation (GISH) allowed us to identify 133 introgression forms in which chromosome numbers ranged between 26 and 32. Using four DNA probes (5S rDNA, 25S rDNA, pSc119.2 and pAs1), the fluorescence in situ hybridisation (FISH) was carried out to facilitate an exact chromosome identification in the hybrid plants. The combination of the multi-colour GISH with the repetitive DNA FISH singled out five types of translocated chromosomes: 2A.2R, 4A.4R, 5A.5R, 5B.5R and 7A.7R among the examined BC1F9s. The reported translocation lines could serve as valuable sources of wheat chromatin suitable for further improvements of rye.

摘要

黑麦改良是当前育种的主流目标之一。本研究关注的是利用远缘杂交的经典方法将四倍体黑麦小麦(ABRR)导入四倍体黑麦(RRRR)。我们对 150 株来自回交程序的 BC1F9 杂种植物[(4x 黑麦×4x 黑麦小麦)×4x 黑麦]进行了研究。这项工作的主要目的是验证在一组 4x 黑麦-黑麦小麦杂种中存在黑麦小麦的 A 和 B 基因组染色质,并确定它们的染色体组成。在本研究中,比较了先前报道的 BC1F2 和 BC1F3 的核型与通过多次开放授粉获得的 BC1F9 代的核型。基因组原位杂交(GISH)使我们能够鉴定出 133 种导入形式,其染色体数在 26 到 32 之间。利用四个 DNA 探针(5S rDNA、25S rDNA、pSc119.2 和 pAs1)进行荧光原位杂交(FISH),有助于在杂种植物中进行精确的染色体鉴定。多色 GISH 与重复 DNA FISH 的结合,鉴定出了 5 种易位染色体:在被检查的 BC1F9 中,有 2A.2R、4A.4R、5A.5R、5B.5R 和 7A.7R。报告的易位系可以作为小麦染色质的有价值来源,适用于进一步改良黑麦。

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