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酸角(Annona muricata)染色体水平参考基因组:广玉兰类研究和热带果树学的新资源。

Chromosome-level reference genome of the soursop (Annona muricata): A new resource for Magnoliid research and tropical pomology.

机构信息

Institute for Biodiversity and Environmental Research, Universiti Brunei Darussalam, Jalan Tungku Link, Brunei Darussalam.

Alliance for Conservation Tree Genomics, Pha Tad Ke Botanical Garden, Luang Prabang, Laos.

出版信息

Mol Ecol Resour. 2021 Jul;21(5):1608-1619. doi: 10.1111/1755-0998.13353. Epub 2021 Mar 10.

Abstract

The flowering plant family Annonaceae includes important commercially grown tropical crops, but development of promising species is hindered by a lack of genomic resources to build breeding programs. Annonaceae are part of the magnoliids, an ancient lineage of angiosperms for which evolutionary relationships with other major clades remain unclear. To provide resources to breeders and evolutionary researchers, we report a chromosome-level genome assembly of the soursop (Annona muricata). We assembled the genome using 444.32 Gb of DNA sequences (676× sequencing depth) from PacBio and Illumina short-reads, in combination with 10× Genomics and Bionano data (v1). A total of 949 scaffolds were assembled to a final size of 656.77 Mb, with a scaffold N50 of 3.43 Mb (v1), and then further improved to seven pseudo-chromosomes using Hi-C sequencing data (v2; scaffold N50: 93.2 Mb, total size in chromosomes: 639.6 Mb). Heterozygosity was very low (0.06%), while repeat sequences accounted for 54.87% of the genome, and 23,375 protein-coding genes with an average of 4.79 exons per gene were annotated using de novo, RNA-seq and homology-based approaches. Reconstruction of the historical population size showed a slow continuous contraction, probably related to Cenozoic climate changes. The soursop is the first genome assembled in Annonaceae, supporting further studies of floral evolution in magnoliids, providing an essential resource for delineating relationships of ancient angiosperm lineages. Both genome-assisted improvement and conservation efforts will be strengthened by the availability of the soursop genome. As a community resource, this assembly will further strengthen the role of Annonaceae as model species for research on the ecology, evolution and domestication potential of tropical species in pomology and agroforestry.

摘要

番荔枝科植物包括重要的商业种植热带作物,但由于缺乏基因组资源来建立育种计划,有发展前景的物种的开发受到阻碍。番荔枝科是木兰类植物的一部分,木兰类植物是被子植物的一个古老谱系,其与其他主要分支的进化关系尚不清楚。为了为种植者和进化研究人员提供资源,我们报告了一种百香果(Annona muricata)的染色体水平基因组组装。我们使用来自 PacBio 和 Illumina 短读序列的 444.32Gb DNA 序列(676×测序深度),结合 10×基因组和 Bionano 数据(v1)组装了基因组。总共组装了 949 个支架,最终大小为 656.77Mb,支架 N50 为 3.43Mb(v1),然后使用 Hi-C 测序数据(v2)进一步改进为七个假染色体(支架 N50:93.2Mb,染色体总大小:639.6Mb)。杂合度非常低(0.06%),而重复序列占基因组的 54.87%,使用从头、RNA-seq 和基于同源性的方法注释了 23375 个蛋白质编码基因,平均每个基因有 4.79 个外显子。历史种群规模的重建显示出缓慢的持续收缩,可能与新生代气候变化有关。百香果是番荔枝科中第一个组装的基因组,支持木兰类植物花进化的进一步研究,为阐明古老被子植物谱系的关系提供了必要的资源。基因组辅助改良和保护工作将因百香果基因组的可用性而得到加强。作为一个社区资源,这个组装将进一步加强番荔枝科作为研究热带物种生态、进化和在园艺学和农林学中驯化潜力的模式物种的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e44b/8251617/e9f308c5b334/MEN-21-1608-g001.jpg

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