新型寡聚核苷酸荧光原位杂交:发展与应用
作者:
作者单位:

1.广西大学广西甘蔗生物学重点实验室,南宁 530004;2.福建农林大学国家甘蔗工程技术研究中心,福州 350002

作者简介:

研究方向为甘蔗遗传育种,E-mail: jchunxiu99@163.com

通讯作者:

邓祖湖,研究方向为甘蔗遗传育种,E-mail: dengzuhu@163.com

中图分类号:

基金项目:

广西甘蔗生物学重点实验室重大创新基地项目(AE3310019005)


New Oligo Fluorescence in situ Hybridization: Development and Application
Author:
Affiliation:

1.Guangxi Key Laboratory of Sugarcane Biology, Guangxi University, Nanning 530004;2.National Engineering Research Center for Sugarcane, Fujian Agriculture and Forestry University, Fuzhou 350002

Fund Project:

Foundation project: Major Innovation Base Project of Guangxi Key Laboratory of Sugarcane Biology(AE3310019005)

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    摘要:

    荧光原位杂交技术(FISH, fluorescence in situ hybridization)是分子细胞遗传学中最为重要的手段之一,可以实现DNA或RNA序列在染色体上精确的可视化的直观定位。随着基因组测序技术的发展和测序成本的降低,大量物种的基因组信息被不断公布,基于高通量测序和参考基因组衍生的寡聚核苷酸序列(Oligo, oligonucleotide)探针在FISH中表现出独特的优势。和传统FISH探针相比,Oligo-FISH能更加精确、深入地揭示植物在进化过程中染色体的进化、遗传与变异。本研究对荧光标记的靶标DNA与荧光探针的种类与应用,寡聚核苷酸探针的种类及制备技术进行了综述, 重点聚焦于Oligo-FISH的起源发展及其在鉴定植物染色体、识别植物同源染色体方面所发挥的重要作用。Oligo-FISH技术可用于构建物种属内的染色体核型,利用Oligo-FISH结果可为该属没有全基因组的作物的基因组组装提供指导, Oligo涂染还可以很好地解决异源多倍体物种中非同源染色体间的融合与交换问题,能够准确地检测染色体间是否存在易位等行为及异源重组。因此,Oligo-FISH技术的发展为基因组染色体水平的组装提供了强有力的支撑。未来Oligo-FISH技术与信号放大技术结合能够克服重复序列高度富集区域Oligo探针密度低的困难,可对非常短的基因区域进行可视化,如对启动子、增强子的检测,在转基因中对基因片段定位等,这些研究将有助于更加深入地了解物种遗传和进化,进一步推动作物遗传育种的改良与发展。

    Abstract:

    Fluorescence in situ hybridization (FISH, fluorescence in situ hybridization) is a powerful tool for molecular cytogenetics studies and is able to authentically allocate particular DNA or RNA sequences on chromosomes. With the development of the genome sequencing technology, the reduction of sequencing cost and the publishment of a large number of species genome information, Oligonucleotide (Oligo) probes based on high-throughput sequencing and reference genome were developed showing the advantages in FISH. In comparison with the traditional probes, Oligo-FISH can further reveal the evolution, inheritance and variation of chromosomes more precisely and deeply in plant evolution.This paper reviews the types and applications of target DNA and fluorescent probes in the development of fluorescence labeling, as well as the types and preparation techniques of oligonucleotide probes, mainly focusing on the origin and development of Oligo-FISH and its application in plants, which plays an important role in the identification of plant chromosomes and plant homologous chromosomes. Since the karyotype of species and genera can be constructed by Oligo-FISH technology, the results of Oligo-FISH can provide guidance for genome assembly of crops in this genus which have no complete genomes. Oligo painting can also solve the problem of fusion and exchange between chromosomes of heteropolyploid species and accurately detect whether there is translocation and heterologous recombination between chromosomes. Therefore, the development of Oligo-FISH technology provides strong support for the assembly of the genome at chromosome level. In the future, Oligo-FISH technology combined with signal amplification technology can overcome the challenge of low Oligo probes with high concentration of repeat sequences in regions, and visualize limited gene regions, such as the detection of promoters or enhancers or the localization of gene segments in transgenes. These studies will make better use of the research results of species genetics and evolution to further ensure, assist and innovate the improvement and development of crop genetics and breeding.

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引用本文

姜春秀,姚伟,张木清,等.新型寡聚核苷酸荧光原位杂交:发展与应用[J].植物遗传资源学报,2023,24(2):349-356.

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  • 收稿日期:2022-08-01
  • 最后修改日期:2022-08-26
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  • 在线发布日期: 2023-03-14
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