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首页> 外文期刊>The Plant Genome >Sequencing-Based Bin Map Construction of a Tomato Mapping Population, Facilitating High-Resolution Quantitative Trait Loci Detection
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Sequencing-Based Bin Map Construction of a Tomato Mapping Population, Facilitating High-Resolution Quantitative Trait Loci Detection

机译:基于测序的滨绘番茄映射群的建设,促进高分辨率定量特质基因座检测

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摘要

Genotyping-by-sequencing (GBS) was employed to construct a highly saturated genetic linkage map of a tomato (Solanum lycopersicumL.) recombinant inbred line (RIL) population, derived from a cross between cultivar NC EBR-1 and the wild tomatoS. pimpinellifoliumL. accession LA2093. A pipeline was developed to convert single nucleotide polymorphism (SNP) data into genomic bins, which could be used for fine mapping of quantitative trait loci (QTL) and identification of candidate genes. The pipeline, implemented in a python script named SNPbinner, adopts a hidden Markov model approach for calculation of recombination breakpoints followed by genomic bins construction. The total length of the newly developed high-resolution genetic map was 1.2-fold larger than previously estimated based on restriction fragment length polymorphism (RFLP) and polymerase chain reaction (PCR)–based markers. The map was used to verify and refine QTL previously identified for two fruit quality traits in the RIL population, fruit weight (FW) and fruit lycopene content (LYC). Two well-described FW QTL (fw2.2andfw3.2) were localized precisely at their known underlying causative genes, and the QTL intervals were decreased by two- to tenfold. A major QTL for LYC content (Lyc12.1) was verified at high resolution and its underlying causative gene was determined to be ζ-carotene isomerase(SlZISO). The RIL population, the high resolution genetic map, and the easy-to-use genotyping pipeline, SNPbinner, are made publicly available.
机译:使用基因分型(GBs)构建番茄(Solanum Lycopersicuml。)的高度饱和遗传联系地图,其重组近交系(RIL)群体,来自品种NC EBR-1和野生西红柿之间的交叉。 pimpinellifoliuml。加入LA2093。开发了一种管道以将单核苷酸多态性(SNP)数据转化为基因组箱,其可用于定量性状基因座(QTL)的精细映射和候选基因的鉴定。在名为SnPbinner的Python脚本中实现的管道采用隐藏的马尔可夫模型方法,用于计算重组断点,然后进行基因组箱结构。新开发的高分辨率遗传图的总长度比以前基于限制性片段长度多态性(RFLP)和基于聚合酶链反应(PCR)的标记估计的1.2倍。该地图用于验证和细化先前鉴定的QTL,QTL群体群体中的两种水果质量性状,果子重量(FW)和果环戊烯含量(LYC)。两个描述的FW QTL(FW2.2ANDFW3.2)精确地定位了其已知的潜在的致病基因,QTL间隔减少了两倍到十倍。在高分辨率下验证了LYC含量(LYC12.1)的主要QTL,并测定其潜在的致病基因是Ⅳ-胡萝卜素异构酶(SLZISO)。 RIL群体,高分辨率遗传图和易于使用的基因分型管道,SNPBINNER是公开的。

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