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染色体水平的野豌豆基因组为转化研究和新驯化的凉爽气候下的现金覆盖作物提供了新工具。

Chromosome-level Thlaspi arvense genome provides new tools for translational research and for a newly domesticated cash cover crop of the cooler climates.

机构信息

ecSeq Bioinformatics GmbH, Leipzig, Germany.

Department of Computer Science, Leipzig University, Leipzig, Germany.

出版信息

Plant Biotechnol J. 2022 May;20(5):944-963. doi: 10.1111/pbi.13775. Epub 2022 Feb 6.

Abstract

Thlaspi arvense (field pennycress) is being domesticated as a winter annual oilseed crop capable of improving ecosystems and intensifying agricultural productivity without increasing land use. It is a selfing diploid with a short life cycle and is amenable to genetic manipulations, making it an accessible field-based model species for genetics and epigenetics. The availability of a high-quality reference genome is vital for understanding pennycress physiology and for clarifying its evolutionary history within the Brassicaceae. Here, we present a chromosome-level genome assembly of var. MN106-Ref with improved gene annotation and use it to investigate gene structure differences between two accessions (MN108 and Spring32-10) that are highly amenable to genetic transformation. We describe non-coding RNAs, pseudogenes and transposable elements, and highlight tissue-specific expression and methylation patterns. Resequencing of forty wild accessions provided insights into genome-wide genetic variation, and QTL regions were identified for a seedling colour phenotype. Altogether, these data will serve as a tool for pennycress improvement in general and for translational research across the Brassicaceae.

摘要

田芥菜(野菘蓝)正在被培育成一种冬季一年生的油料作物,能够在不增加土地使用的情况下改善生态系统和提高农业生产力。它是一种自交的二倍体,生命周期短,并且易于进行基因操作,因此成为一种易于进行遗传和表观遗传学研究的基于田间的模式物种。高质量的参考基因组的可用性对于理解芥菜的生理学以及阐明其在十字花科中的进化历史至关重要。在这里,我们呈现了一个改良基因注释的 var. MN106-Ref 的染色体水平基因组组装,并利用它来研究两个高度可遗传转化的(MN108 和 Spring32-10)品系之间的基因结构差异。我们描述了非编码 RNA、假基因和转座元件,并强调了组织特异性表达和甲基化模式。对四十个野生品系的重测序提供了对全基因组遗传变异的深入了解,并鉴定了幼苗颜色表型的 QTL 区域。总的来说,这些数据将成为芥菜改良的工具,也将成为十字花科跨领域研究的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4035/11383736/3531d03c9707/PBI-20-944-g003.jpg

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