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欧洲榛( Corylus avellana L.)的染色体水平基因组组装揭示了作物改良的目标。

A chromosome-scale genome assembly of European hazel (Corylus avellana L.) reveals targets for crop improvement.

机构信息

Sabanci University SUNUM Nanotechnology Research and Application Centre, Istanbul, Turkey.

Faculty of Engineering and Natural Sciences, Sabanci University, Istanbul, Turkey.

出版信息

Plant J. 2021 Mar;105(5):1413-1430. doi: 10.1111/tpj.15099. Epub 2021 Jan 6.

Abstract

The European hazelnut (Corylus avellana L.) is a tree crop of economic importance worldwide, but especially for northern Turkey, where the majority of production takes place. Hazelnut production is currently challenged by environmental stresses, such as a recent outbreak of severe powdery mildew disease; furthermore, allergy to hazelnuts is an increasing health concern in some regions. In order to provide a foundation for using the available hazelnut genetic resources for crop improvement, we produced a fully assembled genome sequence and annotation for a hazelnut species, from C. avellana cv. 'Tombul', one of the most important Turkish varieties. A hybrid sequencing strategy, combining short reads, long reads and proximity ligation methods, enabled us to resolve heterozygous regions and produce a high-quality 370-Mb assembly that agrees closely with cytogenetic studies and genetic maps of the 11 C. avellana chromosomes, and covers 97.8% of the estimated genome size. The genome includes 27 270 high-confidence protein-coding genes, over 20 000 of which were functionally annotated based on homology with known plant proteins. We focused particularly on gene families encoding hazelnut allergens, and the Mildew resistance Locus O (MLO) proteins that are an important susceptibility factor for powdery mildew. The complete assembly enabled us to differentiate between members of these families and to identify homologues that may be important in mildew disease and hazelnut allergy. These findings provide examples of how the genome can be used to guide research and to develop effective strategies for crop improvement in C. avellana.

摘要

欧洲榛(Corylus avellana L.)是一种在全球范围内具有经济重要性的树木作物,但尤其对土耳其北部地区来说更为重要,因为那里的榛子产量占大多数。榛子生产目前受到环境压力的挑战,例如最近爆发的严重白粉病;此外,在一些地区,对榛子过敏是一个日益严重的健康问题。为了为利用现有榛子遗传资源进行作物改良提供基础,我们针对土耳其最重要的品种之一,C. avellana cv. 'Tombul',生成了一个榛子物种的全组装基因组序列和注释。通过结合短读长、长读长和邻近连接方法的混合测序策略,我们能够解决杂合区域,并生成高质量的 370-Mb 组装,该组装与细胞遗传学研究和 11 条 C. avellana 染色体的遗传图谱高度一致,并且涵盖了估计基因组大小的 97.8%。该基因组包含 27 270 个高可信度的蛋白质编码基因,其中超过 20 000 个基于与已知植物蛋白的同源性进行了功能注释。我们特别关注编码榛子过敏原的基因家族和白粉病抗性 Locus O (MLO) 蛋白,它们是白粉病的一个重要易感性因素。完整的组装使我们能够区分这些家族的成员,并识别可能对白粉病和榛子过敏很重要的同源物。这些发现提供了如何利用基因组指导研究和开发 C. avellana 作物改良有效策略的示例。

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