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A High-Density, Sequence-Enriched Genetic Map of?Hordeum bulbosum?and Its Collinearity to?H. vulgare

机译:球形大麦的高密度,富含序列的遗传图谱及其与ΔH的共线性。庸俗的

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Hordeum bulbosum?L., a wild grass and close relative of cultivated barley (Hordeum vulgare?L.), gained importance in plant breeding as inducer of haploid plants in crosses with barley and also as a genetic resource for introgression of disease resistance/tolerance genes into cultivated barley. Genetic mapping of genes introgressed from?H. bulbosum?is a prerequisite for their efficient utilization in barley breeding, but often hindered due to repressed recombination. The mechanism underlying the reduced frequency or lack of meiotic recombination between?H.?bulbosum?and?H.?vulgare?chromatin in introgressed segments is not understood. It may be explained by lack of genome collinearity or other structural differences between both genomes. In the present study, two F1?mapping populations of?H. bulbosum?were analyzed by genotyping-by-sequencing (GBS) and four dense?H. bulbosum?genetic maps containing 1449, 996, 720, and 943 SNP markers, respectively, revealed overall a high degree of collinearity for all seven homeologous linkage groups of?H. vulgare?and?H. bulbosum. The patterns of distribution of recombination along chromosomes differed between barley and?H. bulbosum, indicating organizational differences between both genomes.
机译:大麦(Hordeum vulgare?L。)的野草和近缘大麦(Hordeum bulbosum?L。)在植物育种中作为大麦与单倍体杂交的单倍体植物的诱导剂,也是抗病/耐性渗入的遗传资源基因转化为栽培大麦。从?H渗入的基因的遗传图谱。鳞茎是在大麦育种中有效利用它们的先决条件,但通常由于重组受阻而受到阻碍。渗入片段中H.bulbosum和H.vulgare-chromatin之间减数分裂或频率降低或缺乏减数分裂重组的机制尚不清楚。这可能是由于缺乏基因组共线性或两个基因组之间的其他结构差异所致。在本研究中,两个H的F1映射种群。球茎通过基因分型(GBS)和四个密集的?H进行了分析。分别包含1449、996、720和943个SNP标记的球茎遗传图谱显示,所有七个H同源连锁组总体上具有较高的共线性。庸俗的?球茎大麦和ΔH之间沿染色体的重组分布方式不同。球茎,表明两个基因组之间的组织差异。

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