Whole-genome sequence and methylome profiling of the almond [Prunus dulcis (Mill.) D.A. Webb] cultivar ‘Nonpareil’

扁桃 生物 基因组 DNA甲基化 顺序装配 表观遗传学 Illumina染料测序 全基因组测序 遗传学 基因组计划 参考基因组 基因 植物 栽培 转录组 基因表达
作者
Katherine M. D’Amico-Willman,Wilberforce Zachary Ouma,Tea Meulia,Gina M. Sideli,Thomas M. Gradziel,Jonathan Fresnedo‐Ramírez
出处
期刊:G3: Genes, Genomes, Genetics [Genetics Society of America]
卷期号:12 (5) 被引量:28
标识
DOI:10.1093/g3journal/jkac065
摘要

Abstract Almond [Prunus dulcis (Mill.) D.A. Webb] is an economically important, specialty nut crop grown almost exclusively in the United States. Breeding and improvement efforts worldwide have led to the development of key, productive cultivars, including ‘Nonpareil,’ which is the most widely grown almond cultivar. Thus far, genomic resources for this species have been limited, and a whole-genome assembly for ‘Nonpareil’ is not currently available despite its economic importance and use in almond breeding worldwide. We generated a 571X coverage genome sequence using Illumina, PacBio, and optical mapping technologies. Gene prediction revealed 49,321 putative genes using MinION Oxford nanopore and Illumina RNA sequencing, and genome annotation found that 68% of predicted models are associated with at least one biological function. Furthermore, epigenetic signatures of almond, namely DNA cytosine methylation, have been implicated in a variety of phenotypes including self-compatibility, bud dormancy, and development of noninfectious bud failure. In addition to the genome sequence and annotation, this report also provides the complete methylome of several almond tissues, including leaf, flower, endocarp, mesocarp, exocarp, and seed coat. Comparisons between methylation profiles in these tissues revealed differences in genome-wide weighted % methylation and chromosome-level methylation enrichment.

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