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The high‐quality genome of diploid strawberry (Fragaria nilgerrensis) provides new insights into anthocyanin accumulation

机译:二倍体草莓(Fradaria nilgerrensis)的高质量基因组在花青素积累的情况下提供了新的见解

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Fragaria nilgerrensis is a wild diploid strawberry species endemic to east and southeast region in Asia and provides a rich source of genetic variations for strawberry improvement. Here, we present a chromosome‐scale assembly of F.?nilgerrensis using single‐molecule real‐time (SMRT) Pacific Biosciences sequencing and chromosome conformation capture (Hi‐C) genome scaffolding. The genome assembly size was 270.3?Mb, with a contig N50 of ~8.5?Mb. A total of 28?780 genes and 117.2?Mb of transposable elements were annotated for this genome. Next, detailed comparative genomics with the high‐quality F.?vesca reference genome was conducted to obtain the difference among transposable elements, SNPs, Indels, and so on. The genome size of F.?nilgerrensis was enhanced by around 50?Mb relatively to F.?vesca, which is mainly due to expansion of transposable elements. In comparison with the F.?vesca genome, we identified 4?561?825 SNPs, 846?301 Indels, 4243 inversions, 35?498 translocations and 10?099 relocations. We also found a marked expansion of genes involved in phenylpropanoid biosynthesis, starch and sucrose metabolism, cyanoamino acid metabolism, plant–pathogen interaction, brassinosteroid biosynthesis and plant hormone signal transduction in F.?nilgerrensis, which may account for its specific phenotypes and considerable environmental adaptability. Interestingly, we found sequence variations in the upstream regulatory region of FnMYB10, a core transcriptional activator of anthocyanin biosynthesis, resulted in the low expression level of the FnMYB10 gene, which is likely responsible for white fruit phenotype of F.?nilgerrensis. The high‐quality F.?nilgerrensis genome will be a valuable resource for biological research and comparative genomics research.
机译:Fragaria nilgerrensis是亚洲东部和东南地区的野生二倍体草莓物种,为草莓改善提供了丰富的遗传变异来源。在这里,我们介绍了使用单分子实时(SMRT)太平洋生物学测序和染色体构象捕获(HI-C)基因组脚手架的染色体级组件。基因组组装尺寸为270.3μmb,具有〜8.5Ωmb的折叠n50。总共28个?780基因和117.2μm的转移元素用于该基因组。接下来,进行了具有高质量F.?Vesca参考基因组的详细的比较基因组学,以获得转换元件,SNP,Indel等的差异。 F.?nilgerrensis的基因组大小相对于F.?Vesca而增强了约50μmb,这主要是由于转换元素的膨胀。与F.?Vesca Genome相比,我们确定了4?561?825 SNPS,846?301 indels,4243逆,35?498易位和10?099重新安置。我们还发现,参与苯丙烷化生物合成,淀粉和蔗糖代谢,氰基酸代谢,植物病原体相互作用,芸苔类固醇的生物合成,芸苔类化合物和植物激素信号转导的显着扩增,F.Ilgerrensis中可能考虑其特定表型和相当大的环境适应性。有趣的是,我们发现FNMYB10的上游调节区的序列变化,花青素生物合成的核心转录激活剂,导致FNMYB10基因的低表达水平,这可能负责F.?nilgerrensis的白色果实表型。高品质的F.?nilgerrensis基因组将成为生物学研究和比较基因组学研究的宝贵资源。

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