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Genotyping by sequencing reveals the interspecific C. maxima / C. reticulata admixture along the genomes of modern citrus varieties of mandarins tangors tangelos orangelos and grapefruits

机译:通过测序进行基因分型揭示了沿柑桔探戈橘子橘子和柚子的现代柑橘品种的基因组分布的种间最大梭菌/网状梭菌混合物。

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摘要

The mandarin horticultural group is an important component of world citrus production for the fresh fruit market. This group formerly classified as C. reticulata is highly polymorphic and recent molecular studies have suggested that numerous cultivated mandarins were introgressed by C. maxima (the pummelos). C. maxima and C. reticulata are also the ancestors of sweet and sour oranges, grapefruit, and therefore of all the “small citrus” modern varieties (mandarins, tangors, tangelos) derived from sexual hybridization between these horticultural groups. Recently, NGS technologies have greatly modified how plant evolution and genomic structure are analyzed, moving from phylogenetics to phylogenomics. The objective of this work was to develop a workflow for phylogenomic inference from Genotyping By Sequencing (GBS) data and to analyze the interspecific admixture along the nine citrus chromosomes for horticultural groups and recent varieties resulting from the combination of the C. reticulata and C. maxima gene pools. A GBS library was established from 55 citrus varieties, using the ApekI restriction enzyme and selective PCR to improve the read depth. Diagnostic polymorphisms (DPs) of C. reticulata/C. maxima differentiation were identified and used to decipher the phylogenomic structure of the 55 varieties. The GBS approach was powerful and revealed 30,289 SNPs and 8,794 Indels with 12.6% of missing data. 11,133 DPs were selected covering the nine chromosomes with a higher density in genic regions. GBS combined with the detection of DPs was powerful for deciphering the “phylogenomic karyotypes” of cultivars derived from admixture of the two ancestral species after a limited number of interspecific recombinations. All the mandarins, mandarin hybrids, tangelos and tangors analyzed displayed introgression of C. maxima in different parts of the genome. C. reticulata/C. maxima admixture should be a major component of the high phenotypic variability of this germplasm opening up the way for association studies based on phylogenomics.
机译:柑桔园艺集团是世界新鲜水果市场柑桔生产的重要组成部分。该组以前被称为网状梭菌,是高度多态的,最近的分子研究表明,极大的梭状芽胞杆菌(pummelos)渗入了许多栽培的普通话。 C. maxima和C. reticulata也是酸甜的橘子,葡萄柚的祖先,因此也是所有这些园艺群体之间的有性杂交衍生的“小柑橘”现代品种(普通话,探戈者,橘子)的祖先。最近,NGS技术极大地改变了植物进化和基因组结构的分析方式,从系统发育学转向系统发育学。这项工作的目的是开发一个通过测序基因分型(GBS)数据进行系统生物学推断的工作流程,并分析沿园艺九种柑橘染色体的种间混合物,以及园艺组和网状衣原体和C.最大基因库。使用ApekI限制酶和选择性PCR从55个柑橘品种中建立了GBS库,以提高读取深度。网状梭菌/ C。的诊断多态性(DPs)。鉴定出最大的分化,并用于解释55个品种的系统进化结构。 GBS方法功能强大,可显示30,289个SNP和8,794个Indel,缺失数据占12.6%。选择了11133个DP,它们覆盖了基因区域中密度更高的9条染色体。 GBS结合DPs的检测在有限的种间重组后,对于破译由两种祖先物种混合而来的品种的“系统核型”很有用。分析的所有普通话,普通话杂种,橘子和探戈显示了C. maxima 在基因组不同部分的渗入。 C reticulata / C maxim 混合物应该是该种质的高表型变异性的主要组成部分,从而为基于系统发育组学的关联研究开辟了道路。

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