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Identification of individual chromosomes and parental genomes in Brassica juncea using GISH and FISH.

机译:使用GISH和FISH鉴定芥菜中的单个染色体和亲本基因组。

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摘要

The three diploid (B. nigra, B. oleracea, B. campestris) and three allotetraploid (B. carinata, B. juncea, B. napus) species of Brassica, known as the "U-triangle" are one of the best model systems for the study of polyploidy. Numerous molecular investigations have provided a wealth of new insights into the polyploid origin and changes during the evolution of Brassica, but there are still many controversial aspects of their relationship and evolution. Interpretation of genome changes during evolution requires individual chromosome identification within the genome and clear distinction of genomes within the allotetraploid. The aim of this study was to identify individual chromosomes of B. juncea (genome AABB; 2n=4x=36) and to determine their genomic origin. Fluorescence in situ hybridization with 5S and 45S rDNA probes enabled discrimination of a substantial number of chromosomes, providing chromosomal landmarks for 20 out of 36 chromosomes of B. juncea. Additionally, along with double target genomic in situ hybridization, it allowed assignment of all chromosomes to either the A or B genomes.
机译:芸苔属的三个二倍体(黑芥,油菜,campestris)和三个异源四倍体(芥菜,芥菜,油菜)被称为“ U三角”。多倍体研究系统。大量的分子研究为芸苔属的进化过程中多倍体的起源和变化提供了许多新的见解,但它们之间的关系和进化仍然存在许多有争议的方面。要解释进化过程中的基因组变化,需要对基因组内的各个染色体进行识别,并明确区分同质四倍体内的基因组。这项研究的目的是确定芥菜双歧杆菌的单个染色体(AABB基因组; 2n = 4x = 36)并确定其基因组起源。与5S和45S rDNA探针的荧光原位杂交能够区分大量染色体,从而为芥菜双歧杆菌36条染色体中的20条提供了染色体标记。此外,连同双靶基因组原位杂交,它允许将所有染色体分配给A或B基因组。

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