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影响小麦3B染色体基因和转座元件的结构变异

Structural Variations Affecting Genes and Transposable Elements of Chromosome 3B in Wheats.

作者信息

De Oliveira Romain, Rimbert Hélène, Balfourier François, Kitt Jonathan, Dynomant Emeric, Vrána Jan, Doležel Jaroslav, Cattonaro Federica, Paux Etienne, Choulet Frédéric

机构信息

Université Clermont Auvergne, INRAE, GDEC, Clermont-Ferrand, France.

Institute of Experimental Botany of the Czech Academy of Sciences, Centre of the Region Haná for Biotechnological and Agricultural Research, Olomouc, Czechia.

出版信息

Front Genet. 2020 Aug 18;11:891. doi: 10.3389/fgene.2020.00891. eCollection 2020.

Abstract

Structural variations (SVs) such as copy number and presence-absence variations are polymorphisms that are known to impact genome composition at the species level and are associated with phenotypic variations. In the absence of a reference genome sequence, their study has long been hampered in wheat. The recent production of new wheat genomic resources has led to a paradigm shift, making possible to investigate the extent of SVs among cultivated and wild accessions. We assessed SVs affecting genes and transposable elements (TEs) in a diversity panel of 45 accessions from seven tetraploid and hexaploid species using high-coverage shotgun sequencing of sorted chromosome 3B DNA and dedicated bioinformatics approaches. We showed that 23% of the genes are variable within this panel, and we also identified 330 genes absent from the reference accession Chinese Spring. In addition, 60% of the TE-derived reference markers were absent in at least one accession, revealing a high level of intraspecific and interspecific variability affecting the TE space. Chromosome extremities are the regions where we observed most of the variability, confirming previous hypotheses made when comparing wheat with the other grasses. This study provides deeper insights into the genomic variability affecting the complex genomes at the intraspecific and interspecific levels and suggests a phylogeny with independent hybridization events leading to different hexaploid species.

摘要

结构变异(SVs),如拷贝数变异和存在-缺失变异,是已知会在物种水平上影响基因组组成并与表型变异相关的多态性。在缺乏参考基因组序列的情况下,小麦中对它们的研究长期以来一直受到阻碍。最近新的小麦基因组资源的产生导致了范式转变,使得研究栽培种和野生种中SVs的程度成为可能。我们使用分选的3B染色体DNA的高覆盖鸟枪法测序和专门的生物信息学方法,评估了来自7个四倍体和六倍体物种的45个材料的多样性面板中影响基因和转座元件(TEs)的SVs。我们发现该面板中有23%的基因是可变的,并且我们还鉴定出参考材料中国春中不存在的330个基因。此外,至少有一个材料中不存在60%的源自TE的参考标记,这揭示了影响TE空间的种内和种间高水平变异性。染色体末端是我们观察到大部分变异性的区域,并证实了之前在将小麦与其他禾本科植物比较时提出的假设。这项研究为种内和种间水平上影响复杂基因组的基因组变异性提供了更深入的见解,并提出了一个具有导致不同六倍体物种的独立杂交事件的系统发育关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e92f/7461782/782fefe91051/fgene-11-00891-g001.jpg

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