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首页> 外文期刊>Plant Biotechnology Reports >Karyotype and genomic in situ hybridization pattern in ×Brassicoraphanus, an intergeneric hybrid between Brassica campestris ssp. pekinensis and Raphanus sativus
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Karyotype and genomic in situ hybridization pattern in ×Brassicoraphanus, an intergeneric hybrid between Brassica campestris ssp. pekinensis and Raphanus sativus

机译:甘蓝型油菜(Brassica campestris ssp)之间的属间杂种×Brassicoraphanus的核型和基因组原位杂交模式。 pekinensis和萝卜

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摘要

The karyotype and genomic in situ hybridization (GISH) of an intergeneric hybrid Baemoochae, ×Brassicoraphanus, which originated from hybridization between Chinese cabbage, Brassica campestris (synonym, rapa) ssp. pekinensis, and radish, Raphanus sativus, were analyzed to determine its chromosome complement. In the karyotype analysis, B. campestris was verified to have 2n = 20 chromosomes, including a particular pair of the subtelomeric chromosomes with the nucleolar organizer; R. sativus to have 2n = 18 chromosomes, including a particular pair of the submetacentric chromosomes with the secondary constriction of nucleolar organizer; and ×Brassicoraphanus to have 2n = 38 chromosomes, including both the subtelomeric chromosomes of Brassica and the secondary constriction chromosome pair of Raphanus. These findings indicate that ×Brassicoraphanus is a polyploid between Brassica and Raphanus. In the GISH analysis using chromosomes of B. campestris and R. sativus as the probe and blocking DNA, respectively, only 20 chromosomes of Brassica had hybridization signals. This result reveals that ×Brassicoraphanus is an intergeneric hybrid consisting of the complete genomes of both Brassica and Raphanus. However, the nucleolar organizers of Brassica and Raphanus were not identified because the hybridization signals appeared to be centering mainly around the centromere, becoming weak at the edges.
机译:属间杂种Baemoochae×Brassicoraphanus的核型和基因组原位杂交(GISH),其起源于大白菜与油菜(Brassica campestris)(同名,rapa)之间的杂交。对北京小金鸡和萝卜Raphanus sativus进行分析以确定其染色体互补。在核型分析中,证实了野油菜(B. campestris)具有2n = 20条染色体,包括具有核仁组织者的一对特定的亚端粒染色体。 R. sativus具有2n = 18个染色体,其中包括一对特定的亚中心染色体,并具有核仁组织者的次要收缩;和×Brassicoraphanus具有2n = 38条染色体,包括芸苔属的亚端粒染色体和萝卜的次生收缩染色体对。这些发现表明×Brassicoraphanus是芸苔属和Raphanus之间的多倍体。在以野菜双歧杆菌(B. campestris)和栽培双歧杆菌(R. sativus)的染色体分别作为探针和封闭DNA的GISH分析中,仅芸苔属植物的20条染色体具有杂交信号。该结果表明,×Braassicoraphanus是由芸苔属和Raphanus的完整基因组组成的属间杂种。然而,由于杂交信号似乎主要集中在着丝粒周围,在边缘处变弱,因此未鉴定出芸苔属和萝卜属的核仁组织者。

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