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黑莓(Rubus argutus,cv. "Hillquist")染色体级别的基因组组装和注释。

A chromosome-length genome assembly and annotation of blackberry (Rubus argutus, cv. "Hillquist").

机构信息

School of Biological Sciences, Center for Bioinformatics and Computational Genomics, Georgia Tech, Atlanta, GA 30332, USA.

Department of Horticultural Science, North Carolina State University, Raleigh, NC 27607, USA.

出版信息

G3 (Bethesda). 2023 Feb 9;13(2). doi: 10.1093/g3journal/jkac289.

Abstract

Blackberries (Rubus spp.) are the fourth most economically important berry crop worldwide. Genome assemblies and annotations have been developed for Rubus species in subgenus Idaeobatus, including black raspberry (R. occidentalis), red raspberry (R. idaeus), and R. chingii, but very few genomic resources exist for blackberries and their relatives in subgenus Rubus. Here we present a chromosome-length assembly and annotation of the diploid blackberry germplasm accession "Hillquist" (R. argutus). "Hillquist" is the only known source of primocane-fruiting (annual-fruiting) in tetraploid fresh-market blackberry breeding programs and is represented in the pedigree of many important cultivars worldwide. The "Hillquist" assembly, generated using Pacific Biosciences long reads scaffolded with high-throughput chromosome conformation capture sequencing, consisted of 298 Mb, of which 270 Mb (90%) was placed on 7 chromosome-length scaffolds with an average length of 38.6 Mb. Approximately 52.8% of the genome was composed of repetitive elements. The genome sequence was highly collinear with a novel maternal haplotype-resolved linkage map of the tetraploid blackberry selection A-2551TN and genome assemblies of R. chingii and red raspberry. A total of 38,503 protein-coding genes were predicted, of which 72% were functionally annotated. Eighteen flowering gene homologs within a previously mapped locus aligning to an 11.2 Mb region on chromosome Ra02 were identified as potential candidate genes for primocane-fruiting. The utility of the "Hillquist" genome has been demonstrated here by the development of the first genotyping-by-sequencing-based linkage map of tetraploid blackberry and the identification of possible candidate genes for primocane-fruiting. This chromosome-length assembly will facilitate future studies in Rubus biology, genetics, and genomics and strengthen applied breeding programs.

摘要

黑莓(Rubus spp.)是全球第四大经济重要的浆果作物。在 Idaeobatus 亚属中已经为 Rubus 物种开发了基因组组装和注释,包括黑覆盆子(R. occidentalis)、红覆盆子(R. idaeus)和 R. chingii,但在 Rubus 亚属中,黑莓及其亲缘关系的基因组资源非常有限。在这里,我们展示了二倍体黑莓种质资源“Hillquist”(R. argutus)的染色体长度组装和注释。“Hillquist”是四倍体鲜食黑莓育种计划中唯一已知的 primocane 结实(一年生结实)的来源,并且在全球许多重要品种的谱系中都有代表。“Hillquist”组装使用 Pacific Biosciences 长读长进行组装,通过高通量染色体构象捕获测序进行支架构建,由 298 Mb 组成,其中 270 Mb(90%)被放置在 7 个染色体长度的支架上,平均长度为 38.6 Mb。大约 52.8%的基因组由重复元件组成。该基因组序列与四倍体黑莓选择 A-2551TN 的新型母系单倍型解析连锁图谱以及 R. chingii 和红覆盆子的基因组组装高度共线性。总共预测了 38,503 个编码蛋白的基因,其中 72%具有功能注释。在以前映射到 Ra02 染色体上 11.2 Mb 区域的一个位点内的 18 个开花基因同源物被鉴定为 primocane 结实的潜在候选基因。通过开发四倍体黑莓的第一个基于测序的基因分型连锁图谱和鉴定 primocane 结实的可能候选基因,这里展示了“Hillquist”基因组的实用性。这种染色体长度的组装将促进 Rubus 生物学、遗传学和基因组学的未来研究,并加强应用育种计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0d7/9911083/fb5070c24813/jkac289f1.jpg

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