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A High-Density Genetic Map of an Allohexaploid Brassica Doubled Haploid Population Reveals Quantitative Trait Loci for Pollen Viability and Fertility

机译:异源六倍体芸苔属双倍单倍体种群的高密度遗传图谱揭示了花粉生存力和生育力的数量性状位点。

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摘要

A doubled haploid (DH) mapping population was obtained from microspore culture of an allohexaploid F1 from the cross between two recently-synthesized allohexaploid Brassica lines. We used single nucleotide polymorphism (SNP) genetic variation based on restriction-site associated DNA (RAD) sequencing to construct a high density genetic linkage map of the population. RAD libraries were constructed from the genomic DNA of both parents and 146 DH progenies. A total of 2.87 G reads with an average sequencing depth of 2.59 × were obtained in the parents and of 1.41 × in the progeny. A total of 290,422 SNPs were identified from clustering of RAD reads, from which we developed 7,950 high quality SNP markers that segregated normally (1:1) in the population. The linkage map contained all 27 chromosomes from the parental A, B and C genomes with a total genetic distance of 5725.19 cM and an average of 0.75 cM between adjacent markers. Genetic distance on non-integrated linkage groups was 1534.23 cM, or 21% of total genetic distance. Out of 146 DH progenies, 91 had a complete set of 27 chromosomes as expected of a hexaploid species, and 21 out of 27 chromosomes showed high collinearity between the physical and linkage maps. The loss of chromosome(s) or chromosome segment(s) in the DH population was associated with a reduction in pollen viability. Twenty-five additive QTL were associated with pollen viability and fertility-related traits (seed number, seed yield, pod length, plant height, 1000-seed weight). In addition, 44 intra-genomic and 18 inter-genomic epistatic QTL pairs were detected for 4 phenotypic traits. This provides confidence that the DH population may be selected for improved pollen viability and fertility in a future allohexaploid Brassica species.
机译:从最近合成的两个异源六倍体芸苔属品系之间的杂交中,从异源六倍体F1的小孢子培养获得双倍单倍体(DH)作图群体。我们使用基于限制性位点相关DNA(RAD)测序的单核苷酸多态性(SNP)遗传变异来构建种群的高密度遗传连锁图。 RAD文库由亲本和146个DH后代的基因组DNA组成。在亲本中获得了总共2.87 G读数,平均测序深度为2.59×,在子代中获得了1.41×。从RAD读物的聚类中总共鉴定出290,422个SNP,从中我们开发了7,950个高质量SNP标记,这些标记在人群中正常隔离(1:1)。连锁图包含来自亲本A,B和C基因组的全部27条染色体,总遗传距离为5721.59 cM,相邻标记之间的平均距离为0.75 cM。非整合连锁群的遗传距离为1534.23 cM,占总遗传距离的21%。在146个DH子代中,有91个完整的27个染色体符合六倍体物种的预期,在27个染色体中的21个显示出物理图谱和连锁图之间的高共线性。 DH群体中染色体或染色体区段的丢失与花粉活力的降低有关。 25个附加QTL与花粉活力和与生育力相关的性状(种子数,种子产量,荚果长度,植物高度,1000种子重量)相关。另外,针对4个表型性状,检测到44个基因组内和18个基因组间上位QTL对。这提供了在未来的异源六倍体芸苔属植物中可以选择DH种群以提高花粉生存力和繁殖力的信心。

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