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通过对五倍体杂种的基因组原位杂交分析揭示八倍体草莓(草莓属)亚基因组组成

Insight into octoploid strawberry (Fragaria) subgenome composition revealed by GISH analysis of pentaploid hybrids.

作者信息

Liu Bo, Poulsen Elizabeth G, Davis Thomas M

机构信息

Department of Biological Sciences, University of New Hampshire, Durham, NH 03824, USA.

出版信息

Genome. 2016 Feb;59(2):79-86. doi: 10.1139/gen-2015-0116. Epub 2016 Feb 2.

Abstract

As the product of interspecific hybridization between its two ancestral octoploid (2n = 8x = 56) species (Fragaria chiloensis and F. virginiana), the cultivated strawberry (F. ×ananassa) is among the most genomically complex of crop plants, harboring subgenomic components derived from as many as four different diploid ancestors. To physically visualize the octoploids' subgenome composition(s), we launched molecular cytogenetic studies using genomic in situ hybridization (GISH), comparative GISH (cGISH), and rDNA-FISH techniques. First, GISH resolution in Fragaria was tested by using diploid and triploid hybrids with predetermined genome compositions. Then, observation of an octoploid genome was implemented by hybridizing chromosomes of pentaploid (2n = 5x = 35) hybrids from F. vesca × F. virginiana with genomic DNA probes derived from diploids (2n = 2x = 14) F. vesca and F. iinumae, which have been proposed by phylogenetic studies to be closely related to the octoploids yet highly divergent from each other. GISH and cGISH results indicated that octoploid-derived gametes (n = 4x = 28) carried seven chromosomes with hybridization affinities to F. vesca, while the remaining 21 chromosomes displayed varying affinities to F. iinumae, indicating differing degrees of subgenomic contribution to the octoploids by these two putatively ancestral diploids. Combined rDNA-FISH revealed severe 25S rDNA loss in both the F. vesca- and F. iinumae-like chromosome groups, while only the prior group retained its 5S loci.

摘要

栽培草莓(F. ×ananassa)是其两个八倍体(2n = 8x = 56)祖先物种(智利草莓和弗州草莓)种间杂交的产物,是基因组最为复杂的作物之一,含有源自多达四个不同二倍体祖先的亚基因组成分。为了从物理层面直观呈现八倍体的亚基因组组成,我们开展了分子细胞遗传学研究,采用基因组原位杂交(GISH)、比较基因组原位杂交(cGISH)和核糖体DNA荧光原位杂交(rDNA-FISH)技术。首先,通过使用具有预定基因组组成的二倍体和三倍体杂种来测试草莓属植物中GISH的分辨率。然后,通过将来自野草莓×弗州草莓的五倍体(2n = 5x = 35)杂种的染色体与源自二倍体(2n = 2x = 14)野草莓和饭沼草莓的基因组DNA探针杂交,对八倍体基因组进行观察,系统发育研究表明这两个二倍体与八倍体密切相关,但彼此差异很大。GISH和cGISH结果表明,源自八倍体的配子(n = 4x = 28)携带7条与野草莓具有杂交亲和力的染色体,而其余21条染色体对饭沼草莓表现出不同程度的亲和力,表明这两个假定的祖先二倍体对八倍体的亚基因组贡献程度不同。联合rDNA-FISH显示,在类似野草莓和类似饭沼草莓的染色体组中均存在严重的25S rDNA缺失,而只有前一组保留了其5S位点。

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