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一个多组学的黄花烟栽培种资源,用于基础研究和生物技术。

A multi-omic Nicotiana benthamiana resource for fundamental research and biotechnology.

机构信息

Centre for Agriculture and the Bioeconomy, Queensland University of Technology (QUT), Brisbane, Queensland, Australia.

ARC Centre of Excellence for Plant Success in Nature & Agriculture, Brisbane, Queensland, Australia.

出版信息

Nat Plants. 2023 Sep;9(9):1558-1571. doi: 10.1038/s41477-023-01489-8. Epub 2023 Aug 10.

Abstract

Nicotiana benthamiana is an invaluable model plant and biotechnology platform with a ~3 Gb allotetraploid genome. To further improve its usefulness and versatility, we have produced high-quality chromosome-level genome assemblies, coupled with transcriptome, epigenome, microRNA and transposable element datasets, for the ubiquitously used LAB strain and a related wild accession, QLD. In addition, single nucleotide polymorphism maps have been produced for a further two laboratory strains and four wild accessions. Despite the loss of five chromosomes from the ancestral tetraploid, expansion of intergenic regions, widespread segmental allopolyploidy, advanced diploidization and evidence of recent bursts of Copia pseudovirus (Copia) mobility not seen in other Nicotiana genomes, the two subgenomes of N. benthamiana show large regions of synteny across the Solanaceae. LAB and QLD have many genetic, metabolic and phenotypic differences, including disparate RNA interference responses, but are highly interfertile and amenable to genome editing and both transient and stable transformation. The LAB/QLD combination has the potential to be as useful as the Columbia-0/Landsberg errecta partnership, utilized from the early pioneering days of Arabidopsis genomics to today.

摘要

黄花烟是一种非常有价值的模式植物和生物技术平台,其基因组约为 3Gb allotetraploid。为了进一步提高其用途和多功能性,我们已经为广泛使用的 LAB 菌株和相关的野生型 QLD 产生了高质量的染色体水平基因组组装,同时还生成了转录组、表观基因组、microRNA 和转座元件数据集。此外,还为另外两个实验室菌株和四个野生型产生了单核苷酸多态性图谱。尽管从祖先四倍体中丢失了五条染色体,但基因间区的扩张、广泛的片段性异源多倍体化、先进的二倍体化以及最近 Copia 假病毒(Copia)移动的爆发证据在其他 Nicotiana 基因组中并未出现,N. benthamiana 的两个亚基因组在茄科中显示出大片段的同线性。LAB 和 QLD 具有许多遗传、代谢和表型差异,包括不同的 RNA 干扰反应,但它们高度可育,适合基因组编辑,并且都可以进行瞬时和稳定转化。LAB/QLD 组合有可能像哥伦比亚-0/ Landsberg erecta 伙伴关系一样有用,从拟南芥基因组学的早期开拓性时代一直使用到今天。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/383e/10505560/d11d388c8c84/41477_2023_1489_Fig1_HTML.jpg

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