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甘蓝变种(Brassica oleracea var. capitata)染色体上高分辨率荧光原位杂交图谱的改进。

Improvement of high-resolution fluorescence in situ hybridisation mapping on chromosomes of Brassica oleracea var. capitata.

作者信息

Yang K, Zhang Y, Converse R, Lv J, Shi M, Zhang H, Zhu L

机构信息

College of Agronomy and Biotechnology, Southwest University, Chongqing, China.

Engineering Research Center of South Upland Agriculture, Ministry of Education, Southwest University, Chongqing, China.

出版信息

Plant Biol (Stuttg). 2016 Mar;18(2):325-31. doi: 10.1111/plb.12384. Epub 2015 Sep 13.

Abstract

The low resolution of chromosome-based Fluorescence in situ hybridisation (FISH) mapping is primarily due to the structure of the plant cell wall and cytoplasm and the compactness of regular chromosomes, which represent a significant obstacle to FISH. In order to improve spatial resolution and signal detection sensitivity, we provide a reproducible method to generate high-quality extended chromosomes that are ~13 times as long as their pachytene counterparts. We demonstrate that proteinase K used in this procedure is crucial for stretching pachytene chromosomes of Brassica oleracea in the context of a modified Carnoy's II fixative (6:1:3, ethanol:chloroform:acetic acid). The quality of super-stretched chromosomes was assessed in several FISH experiments. FISH signals from both repetitive 5S rDNA and single-copy ARC1 on super-stretched chromosomes are brighter than those on other different types of chromosome due to enhanced accessibility to targets on stretched pachytene chromosomes. In conclusion, the resulting extended chromosomes are suitable for FISH mapping for repetitive DNA sequences and the localisation of a single-copy locus, and FISH performed on super-stretched chromosomes can achieve significantly higher sensitivity and spatial resolution than other chromosome-based FISH mapping techniques.

摘要

基于染色体的荧光原位杂交(FISH)图谱分辨率较低,主要是由于植物细胞壁和细胞质的结构以及常规染色体的紧密程度,这对FISH构成了重大障碍。为了提高空间分辨率和信号检测灵敏度,我们提供了一种可重复的方法来生成高质量的伸展染色体,其长度约为粗线期染色体的13倍。我们证明,在改良的卡诺氏II固定液(6:1:3,乙醇:氯仿:乙酸)中,该程序中使用的蛋白酶K对于伸展甘蓝型油菜的粗线期染色体至关重要。在多个FISH实验中评估了超伸展染色体的质量。由于伸展的粗线期染色体上的靶标更容易接近,超伸展染色体上重复的5S rDNA和单拷贝ARC1的FISH信号都比其他不同类型染色体上的信号更亮。总之,所得的伸展染色体适用于重复DNA序列的FISH图谱绘制和单拷贝基因座的定位,并且在超伸展染色体上进行的FISH比其他基于染色体的FISH图谱绘制技术能够实现显著更高的灵敏度和空间分辨率。

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