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Linkage Disequilibrium and Population Structure in Wild and Cultivated Populations of Rubber Tree (Hevea brasiliensis)

机译:橡胶树(巴西橡胶树)野生和栽培种群的连锁不平衡和种群结构

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摘要

Among rubber tree species, which belong to the Hevea genus of the Euphorbiaceae family, Hevea brasiliensis (Willd. ex Adr.de Juss.) Muell. Arg. is the main commercial source of natural rubber production worldwide. Knowledge of the population structure and linkage disequilibrium (LD) of this species is essential for the efficient organization and exploitation of genetic resources. Here, we obtained single-nucleotide polymorphisms (SNPs) using a genotyping-by-sequencing (GBS) approach and then employed the SNPs for the following objectives: (i) to identify the positions of SNPs on a genetic map of a segregating mapping population, (ii) to evaluate the population structure of a germplasm collection, and (iii) to detect patterns of LD decay among chromosomes for future genetic association studies in rubber tree. A total of 626 genotypes, including both germplasm accessions (368) and individuals from a genetic mapping population (254), were genotyped. A total of 77,660 and 21,283 SNPs were detected by GBS in the germplasm and mapping populations, respectively. The mapping population, which was previously mapped, was constructed with 1,062 markers, among which only 576 SNPs came from GBS, reducing the average interval between two adjacent markers to 4.4 cM. SNPs from GBS genotyping were used for the analysis of genetic structure and LD estimation in the germplasm accessions. Two groups, which largely corresponded to the cultivated and wild populations, were detected using STRUCTURE and via principal coordinate analysis. LD analysis, also using the mapped SNPs, revealed that non-random associations varied along chromosomes, with regions of high LD interspersed with regions of low LD. Considering the length of the genetic map (4,693 cM) and the mean LD (0.49 for cultivated and 0.02 for wild populations), a large number of evenly spaced SNPs would be needed to perform genome-wide association studies in rubber tree, and the wilder the genotypes used, the more difficult the mapping saturation.
机译:在属于大戟科的橡胶树属的橡胶树种中,巴西橡胶树(Willd。ex Adr.de Juss。)Muell。精氨酸是全球天然橡胶生产的主要商业来源。了解该物种的种群结构和连锁不平衡(LD)对于有效组织和利用遗传资源至关重要。在这里,我们使用基因分型(GBS)方法获得了单核苷酸多态性(SNP),然后将其用于以下目标:(i)在分离图谱人群的遗传图谱上确定SNP的位置;(ii)评估种质集合的种群结构,以及(iii)检测染色体之间的LD衰变模式,以便将来在橡胶树中进行遗传关联研究。对总共626种基因型进行了基因分型,包括种质种质(368)和来自遗传作图群体的个体(254)。 GBS在种质和作图群体中分别检测到77,660和21,283个SNP。用1,062个标记构建了先前作图的作图种群,其中只有576个SNP来自GBS,从而将两个相邻标记之间的平均间隔降低到4.4 cM。来自GBS基因分型的SNP用于种质材料的遗传结构分析和LD估计。使用结构和主坐标分析法检测了两组,主要对应于栽培和野生种群。 LD分析,也使用映射的SNP,揭示了非随机性关联沿着染色体变化,具有高LD的区域散布有低LD的区域。考虑到遗传图谱的长度(4,693 cM)和平均LD(耕种的0.49,野生种群的平均LD),在橡胶树中进行基因组范围的关联研究需要大量均匀间隔的SNP,而野生的使用的基因型,映射饱和度越困难。

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