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A Parthenogenesis Gene Candidate and Evidence for Segmental Allopolyploidy in Apomictic Brachiaria decumbens

机译:单性生殖基因候选者和无融合性臂状臂菜节段同素多倍体的证据。

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摘要

Apomixis, asexual reproduction through seed, enables breeders to identify and faithfully propagate superior heterozygous genotypes by seed without the disadvantages of vegetative propagation or the expense and complexity of hybrid seed production. The availability of new tools such as genotyping by sequencing and bioinformatics pipelines for species lacking reference genomes now makes the construction of dense maps possible in apomictic species, despite complications including polyploidy, multisomic inheritance, self-incompatibility, and high levels of heterozygosity. In this study, we developed saturated linkage maps for the maternal and paternal genomes of an interspecific Brachiaria ruziziensis (R. Germ. and C. M. Evrard) × B. decumbens Stapf. F1 mapping population in order to identify markers linked to apomixis. High-resolution molecular karyotyping and comparative genomics with Setaria italica (L.) P. Beauv provided conclusive evidence for segmental allopolyploidy in B. decumbens, with strong preferential pairing of homologs across the genome and multisomic segregation relatively more common in chromosome 8. The apospory-specific genomic region (ASGR) was mapped to a region of reduced recombination on B. decumbens chromosome 5. The Pennisetum squamulatum (L.) R.Br. PsASGR-BABY BOOM-like (psASGR–BBML)-specific primer pair p779/p780 was in perfect linkage with the ASGR in the F1 mapping population and diagnostic for reproductive mode in a diversity panel of known sexual and apomict Brachiaria (Trin.) Griseb. and P. maximum Jacq. germplasm accessions and cultivars. These findings indicate that ASGR–BBML gene sequences are highly conserved across the Paniceae and add further support for the postulation of the ASGR–BBML as candidate genes for the apomictic function of parthenogenesis.
机译:无融合生殖是通过种子进行无性繁殖,使育种者能够通过种子鉴定并忠实地繁殖优良的杂合基因型,而无营养繁殖或杂交种子生产的费用和复杂性的缺点。尽管缺乏复杂性,包括多倍体,多体遗传,自交不亲和和高杂合度,但新工具的可用性,例如通过测序和缺乏参考基因组物种的生物信息学管道进行基因分型,在无融合生殖物种中构建致密图谱成为可能。在这项研究中,我们为种间Brachiaria ruziziensis(R. Germ。和C. M. Evrard)×B. decumbens Stapf的母本和父本基因组开发了饱和连锁图。 F1作图种群,以鉴定与无融合生殖有关的标记。带有Setaria italica(L.)P. Beauv的高分辨率分子核型分析和比较基因组学为de。becumbens中的节段异源多倍体提供了确凿的证据,整个基因组中的同系物有很强的优先配对和在8号染色体上相对常见的多体分离。特异性基因组区域(ASGR)被定位到枯草芽孢杆菌第5号染色体上重组减少的区域。 PsASGR-BABY BOOM样(psASGR–BBML)特异性引物对p779 / p780与F1作图群体中的ASGR完美结合,并在已知的性和无生殖臂臂虫(Trin。)Griseb的多样性小组中对生殖方式进行诊断。 。和P.最大雅克。种质种质和品种。这些发现表明,ASGR–BBML基因序列在整个Paniceae中是高度保守的,并为ASGR–BBML作为单性生殖的无融合生殖功能候选基因的假设提供了进一步的支持。

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