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用于构建洋葱5号染色体整合重组和细胞遗传图谱的单基因酪胺荧光原位杂交定位

Tyramide-FISH mapping of single genes for development of an integrated recombination and cytogenetic map of chromosome 5 of Allium cepa.

作者信息

Romanov Dmitry, Divashuk Mikhail, Havey Michael J, Khrustaleva Ludmila

机构信息

a Center of Molecular Biotechnology, Russian State Agrarian University - MTAA, Moscow 127550, Russia.

b USDA-ARS and Department of Horticulture, University of Wisconsin, Madison, WI 53706 USA.

出版信息

Genome. 2015 Mar;58(3):111-9. doi: 10.1139/gen-2015-0019.

Abstract

Chromosome 5 of onion carries major quantitative trait loci (QTL) that control dry-matter content, pungency and storability of bulbs, amounts and types of epicuticular waxes, and resistances to abiotic factors, all of which are of interest to breeders. SNPs, SSRs, and RFLPs in expressed regions of the onion genome have been genetically mapped, and we used these clones and sequences from the NCBI database to develop DNA probes for in situ hybridization to integrate the genetic and physical maps of onion chromosome 5. We produced genomic amplicons from expressed regions of the onion genome that carried both exons and introns in order to increase the hybridization specificity of the probes and to enlarge the target DNA sizes. Tyramide-FISH technique was used to increase the detection sensitivity of relatively short target DNA regions, which range from 950 to 2100 bp. Through the integration of genetic and chromosomal maps, we were able to estimate the distribution of recombination events along onion chromosome 5. We demonstrated the efficiency of chromosomal in situ mapping of exon-intron genomic clones for the extremely large genome of onion.

摘要

洋葱的5号染色体携带着主要的数量性状基因座(QTL),这些基因座控制着鳞茎的干物质含量、辛辣味和耐贮性、表皮蜡质的数量和类型以及对非生物因子的抗性,所有这些都是育种者感兴趣的。洋葱基因组表达区域中的单核苷酸多态性(SNP)、简单序列重复(SSR)和限制性片段长度多态性(RFLP)已被进行遗传定位,我们利用这些克隆以及来自NCBI数据库的序列来开发用于原位杂交的DNA探针,以整合洋葱5号染色体的遗传图谱和物理图谱。我们从洋葱基因组的表达区域产生了携带外显子和内含子的基因组扩增子,以提高探针的杂交特异性并扩大目标DNA的大小。酪胺荧光原位杂交(Tyramide-FISH)技术用于提高对相对较短目标DNA区域(范围为950至2100 bp)的检测灵敏度。通过整合遗传图谱和染色体图谱,我们能够估计沿洋葱5号染色体的重组事件分布。我们证明了外显子-内含子基因组克隆在洋葱超大基因组的染色体原位定位中的效率。

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