Chromosome-scale assembly of apple mint (Mentha suaveolens).

IF 1.9 Q3 GENETICS & HEREDITY BMC genomic data Pub Date : 2024-11-08 DOI:10.1186/s12863-024-01278-y
Alana Firl, Meric C Lieberman, Nestor Kippes, Helen Tsai, Eric Dowd, Luca Comai, Isabelle M Henry
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Abstract

Objectives: Mint oil is used in various commercial applications world-wide. Mint oil is typically harvested from commercial clones of peppermint or spearmints. Spearmints are the product of a cross between two diploid species: Mentha longifolia (horse mint) and Mentha suaveolens (apple mint). Peppermints are the product of an additional hybridization step between spearmint and an octoploid Mentha aquatica (water mint). Here, we present a chromosome-scale assembly of the genome of a clone of M. suaveolens. Together with the previously assembled genome of M. longifolia, these assemblies are instrumental in addressing questions regarding the origins of spearmint and peppermint oil and the genomic composition of commercial spearmints, and to start elaborating strategies for mint cultivar improvement.

Data description: A Falcon assembly of the genome of M. suaveolens was generated from 103X coverage of PacBio long reads. Additional scaffolding was conducted by Dovetail Genomics, using a Chicago library, and a HiC library. The resulting assembly had an N50 of 44.7 Mb, and 98.45% of the 536 Mb of the assembly were contained within 12 large superscaffolds. Finally, a genetic map was applied to correct persistent misjoins. Illumina RNA-Seq libraries from a variety of tissues were used to annotate the genome.

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苹果薄荷(Mentha suaveolens)的染色体组组装。
目的:薄荷油在全世界有多种商业用途。薄荷油通常是从薄荷或留兰香的商业克隆中提取的。留兰香是两个二倍体物种杂交的产物:Mentha longifolia(马薄荷)和 Mentha suaveolens(苹果薄荷)杂交的产物。薄荷是留兰香和八倍体 Mentha aquatica(水薄荷)杂交的产物。在这里,我们展示了一个克隆 M. suaveolens 基因组的染色体组组装。这些组装结果与之前组装的长叶薄荷(M. longifolia)基因组一起,有助于解决有关留兰香和薄荷油的起源以及商品留兰香基因组组成的问题,并有助于开始制定薄荷品种改良战略:从 103X 覆盖率的 PacBio 长读数中生成了 M. suaveolens 的 Falcon 基因组。Dovetail Genomics 公司使用芝加哥文库和 HiC 文库进行了额外的支架处理。由此产生的装配的 N50 为 44.7 Mb,装配的 536 Mb 中有 98.45% 包含在 12 个大的超级支架中。最后,应用基因图谱纠正了持续存在的错接。来自不同组织的Illumina RNA-Seq文库被用来注释基因组。
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