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Pacbio Sequencing Reveals Identical Organelle Genomes between American Cranberry (Vaccinium macrocarpon Ait.) and a Wild Relative

机译:Pacbio测序揭示了美洲蔓越莓(Vaccinium macrocarpon Ait。)和一个野生亲戚之间的相同细胞器基因组

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摘要

Breeding efforts in the American cranberry (Vaccinium macrocarpon Ait.), a North American perennial fruit crop of great importance, have been hampered by the limited genetic and phenotypic variability observed among cultivars and experimental materials. Most of the cultivars commercially used by cranberry growers today were derived from a few wild accessions bred in the 1950s. In different crops, wild germplasm has been used as an important genetic resource to incorporate novel traits and increase the phenotypic diversity of breeding materials. Vaccinium microcarpum (Turcz. ex Rupr.) Schmalh. and V. oxycoccos L., two closely related species, may be cross-compatible with the American cranberry, and could be useful to improve fruit quality such as phytochemical content. Furthermore, given their northern distribution, they could also help develop cold hardy cultivars. Although these species have previously been analyzed in diversity studies, genomic characterization and comparative studies are still lacking. In this study, we sequenced and assembled the organelle genomes of the cultivated American cranberry and its wild relative, V. microcarpum. PacBio sequencing technology allowed us to assemble both mitochondrial and plastid genomes at very high coverage and in a single circular scaffold. A comparative analysis revealed that the mitochondrial genome sequences were identical between both species and that the plastids presented only two synonymous single nucleotide polymorphisms (SNPs). Moreover, the Illumina resequencing of additional accessions of V. microcarpum and V. oxycoccos revealed high genetic variation in both species. Based on these results, we provided a hypothesis involving the extension and dynamics of the last glaciation period in North America, and how this could have shaped the distribution and dispersal of V. microcarpum. Finally, we provided important data regarding the polyploid origin of V. oxycoccos.
机译:北美多年生水果作物美洲蔓越莓(Vaccinium macrocarpon Ait。)的育种工作因品种和实验材料间有限的遗传和表型变异而受到阻碍。如今,蔓越莓种植者商业上使用的大多数品种都来自1950年代培育的一些野生种。在不同的农作物中,野生种质已被用作重要的遗传资源,以整合新的性状并增加育种材料的表型多样性。细叶越桔(Vaccinium microcarpum)(Turcz。ex Rupr。)Schmalh。和V. oxycoccos L.(两个密切相关的物种)可能与美洲蔓越莓具有交叉相容性,并且对于改善果实品质(例如植物化学成分)可能有用。此外,鉴于它们的北部分布,它们还可以帮助培育耐寒的品种。尽管这些物种以前已在多样性研究中进行过分析,但仍缺乏基因组表征和比较研究。在这项研究中,我们对美国蔓越莓及其野生近缘种V. microcarpum的细胞器基因组进行了测序和组装。 PacBio测序技术使我们能够以极高的覆盖率和单个环形支架组装线粒体和质体基因组。对比分析表明,两个物种之间的线粒体基因组序列相同,质体仅表现出两个同义的单核苷酸多态性(SNP)。此外,Illumina对小果面包果和oxycoccocos的其他种的重新测序揭示了两个物种的高度遗传变异。基于这些结果,我们提供了一个假设,该假设涉及北美最后一次冰川期的扩展和动力学,以及这如何影响微型腕果草的分布和扩散。最后,我们提供了有关羟丙酸球菌多倍体起源的重要数据。

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