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利用 Illumina 和 PacBio 测序reads 提高非洲长芒野生稻(Oryza longistaminata)的混合从头基因组组装和注释。

Improved hybrid de novo genome assembly and annotation of African wild rice, Oryza longistaminata, from Illumina and PacBio sequencing reads.

机构信息

Inst. of Genomics and Bioinformatics, South China Agricultural Univ., Guangzhou, 510642, China.

Plant Germplasm and Genomics Center, Germplasm Bank of Wild Species in Southwestern China, Kunming Inst. of Botany, Chinese Acad. of Sciences, Kunming, 650204, China.

出版信息

Plant Genome. 2020 Mar;13(1):e20001. doi: 10.1002/tpg2.20001. Epub 2020 Mar 20.

Abstract

African wild rice Oryza longistaminata, one of the eight AA- genome species in the genus Oryza, possesses highly valued traits, such as the rhizomatousness for perennial rice breeding, strong tolerance to biotic and abiotic stresses, and high biomass production on poor soils. To obtain the high-quality reference genome for O. longistaminata we employed a hybrid assembly approach through incorporating Illumina and PacBio sequencing datasets. The final genome assembly comprised only 107 scaffolds and was approximately ∼363.5 Mb, representing ∼92.7% of the estimated African wild rice genome (∼392 Mb). The N50 lengths of the assembled contigs and scaffolds were ∼46.49 Kb and ∼6.83 Mb, indicating ∼3.72-fold and ∼18.8-fold improvement in length compared to the earlier released assembly (∼12.5 Kb and 364 Kb, respectively). Aided with Hi-C data and syntenic relationship with O. sativa, these assembled scaffolds were anchored into 12 pseudo-chromosomes. Genome annotation and comparative genomic analysis reveal that lineage-specific expansion of gene families that respond to biotic- and abiotic stresses are of great potential for mining novel alleles to overcome major diseases and abiotic adaptation in rice breeding programs. This reference genome of African wild rice will greatly enlarge the existing database of rice genome resources and unquestionably form a solid base to understand genomic basis underlying highly valued phenotypic traits and search for novel gene sources in O. longistaminata for the future rice breeding programs.

摘要

非洲长粒稻 Oryza longistaminata 是 Oryza 属的 8 个 AA 基因组物种之一,具有许多有价值的特性,例如用于多年生稻育种的根茎性、对生物和非生物胁迫的强耐受性以及在贫瘠土壤上的高生物量生产。为了获得高质量的 O. longistaminata 参考基因组,我们采用了混合组装方法,整合了 Illumina 和 PacBio 测序数据集。最终的基因组组装仅由 107 个支架组成,大小约为 363.5Mb,约占估计的非洲长粒稻基因组(约 392Mb)的 92.7%。组装的 contigs 和 scaffolds 的 N50 长度分别约为 46.49 Kb 和 6.83 Mb,与早期发布的组装相比,长度分别提高了约 3.72 倍和约 18.8 倍(分别约为 12.5 Kb 和 364 Kb)。借助 Hi-C 数据和与 O. sativa 的共线性关系,这些组装的支架被锚定到 12 个假染色体中。基因组注释和比较基因组分析表明,对生物和非生物胁迫做出反应的基因家族的谱系特异性扩张,对于挖掘新的等位基因以克服水稻育种计划中的主要疾病和非生物适应具有巨大潜力。非洲长粒稻的这个参考基因组将极大地扩大现有的水稻基因组资源数据库,并无疑为理解高度有价值的表型特性的基因组基础以及在 O. longistaminata 中寻找新的基因来源提供坚实的基础,以用于未来的水稻育种计划。

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