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高质量的羽扇豆基因组序列为探索土壤和种子质量提供了线索。

High-quality genome sequence of white lupin provides insight into soil exploration and seed quality.

机构信息

BPMP, Univ Montpellier, CNRS, INRAE, SupAgro, Montpellier, France.

MPIPZ, Cologne, Germany.

出版信息

Nat Commun. 2020 Jan 24;11(1):492. doi: 10.1038/s41467-019-14197-9.

Abstract

White lupin (Lupinus albus L.) is an annual crop cultivated for its protein-rich seeds. It is adapted to poor soils due to the production of cluster roots, which are made of dozens of determinate lateral roots that drastically improve soil exploration and nutrient acquisition (mostly phosphate). Using long-read sequencing technologies, we provide a high-quality genome sequence of a cultivated accession of white lupin (2n = 50, 451 Mb), as well as de novo assemblies of a landrace and a wild relative. We describe a modern accession displaying increased soil exploration capacity through early establishment of lateral and cluster roots. We also show how seed quality may have been impacted by domestication in term of protein profiles and alkaloid content. The availability of a high-quality genome assembly together with companion genomic and transcriptomic resources will enable the development of modern breeding strategies to increase and stabilize white lupin yield.

摘要

白 Lupinus albus L. 是一种一年生作物,因其富含蛋白质的种子而被栽培。由于簇生根的产生,它适应了贫瘠的土壤,簇生根由数十个定侧根组成,可显著改善土壤探测和养分获取(主要是磷酸盐)。利用长读测序技术,我们提供了一个栽培白 Lupinus albus L. 品系(2n = 50,451 Mb)的高质量基因组序列,以及一个地方品种和一个野生近缘种的从头组装。我们描述了一个现代品系,通过早期建立侧根和簇生根来提高土壤探测能力。我们还展示了在蛋白质图谱和生物碱含量方面,种子质量如何因驯化而受到影响。高质量基因组组装的可用性以及配套的基因组和转录组资源将使现代育种策略得以发展,以增加和稳定白 Lupinus albus L. 的产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fbe/6981116/e7c034005634/41467_2019_14197_Fig1_HTML.jpg

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