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比较基因组原位杂交(cGISH)分析野芥菜、油菜和黑芥之间的基因组关系。

Comparative genomic in situ hybridization (cGISH) analysis of the genomic relationships among Sinapis arvensis, Brassica rapa and Brassica nigra.

机构信息

School of Life Sciences, Jiangsu Normal University, Xuzhou, PR China.

出版信息

Hereditas. 2012 Jun;149(3):86-90. doi: 10.1111/j.1601-5223.2012.02248.x. Epub 2012 Jul 4.

Abstract

To further understand the relationships between the SS genome of Sinapis arvensis and the AA, BB genomes in Brassica, genomic DNA of Sinapis arvensis was hybridized to the metaphase chromosomes of Brassica nigra (BB genome), and the metaphase chromosomes and interphase nucleus of Brassica rapa (AA genome) by comparative genomic in situ hybridization (cGISH). As a result, every chromosome of B. nigra had signals along the whole chromosomal length. However, only half of the condensed heterochromatic areas in the interphase nucleus and the chromosomes showed rich signals in Brassica rapa. Interphase nucleus and the metaphase chromosomes of S. arvensis were simultaneously hybridized with digoxigenin-labeled genomic DNA of B. nigra and biotin-labeled genomic DNA of B. rapa. Signals of genomic DNA of B. nigra hybridized throughout the length of all chromosomes and all the condensed heterochromatic areas in the interphase nucleus, except chromosome 4, of which signals were weak in centromeric regions. Signals of the genomic DNA of B. rapa patterned the most areas of ten chromosomes and ten condensed heterochromatic areas, others had less signals. The results showed that the SS genome had homology with AA and BB genomes, but the homology between SS genome and AA genome was clearly lower than that between the SS genome and BB genome.

摘要

为了进一步了解野油菜 SS 基因组与芸薹属中 AA、BB 基因组的关系,我们利用比较基因组原位杂交(cGISH)技术,将野油菜基因组 DNA 杂交到黑芥(BB 基因组)的中期染色体和芸薹属白菜(AA 基因组)的中期染色体和间期核上。结果表明,黑芥的每条染色体在整个染色体长度上都有信号。然而,在芸薹属白菜的间期核和染色体的浓缩异染色质区只有一半显示出丰富的信号。同时,用生物素标记的黑芥基因组 DNA 和地高辛标记的芸薹属白菜基因组 DNA 杂交野油菜的间期核和中期染色体。黑芥基因组 DNA 的信号杂交在所有染色体的整个长度和间期核的所有浓缩异染色质区,除了 4 号染色体的着丝粒区域信号较弱。芸薹属白菜基因组 DNA 的信号模式化了 10 条染色体和 10 个浓缩异染色质区的大部分区域,其他区域的信号较少。结果表明,SS 基因组与 AA 和 BB 基因组具有同源性,但 SS 基因组与 AA 基因组的同源性明显低于 SS 基因组与 BB 基因组的同源性。

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