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马尔贝克葡萄品种的二倍体基因组组装实现了对克隆表型变异背后转录组差异的单倍型识别分析。

Diploid genome assembly of the Malbec grapevine cultivar enables haplotype-aware analysis of transcriptomic differences underlying clonal phenotypic variation.

作者信息

Calderón Luciano, Carbonell-Bejerano Pablo, Muñoz Claudio, Bree Laura, Sola Cristobal, Bergamin Daniel, Tulle Walter, Gomez-Talquenca Sebastian, Lanz Christa, Royo Carolina, Ibáñez Javier, Martinez-Zapater José Miguel, Weigel Detlef, Lijavetzky Diego

机构信息

Instituto de Biología Agrícola de Mendoza (CONICET-UNCuyo), Genetica y Genomica de Vid, Chacras de Coria 5505, Mendoza, Argentina.

Instituto de Ciencias de la Vid y del Vino, ICVV, CSIC - Universidad de La Rioja - Gobierno de La Rioja, Logroño 26007, La Rioja, Spain.

出版信息

Hortic Res. 2024 Mar 14;11(5):uhae080. doi: 10.1093/hr/uhae080. eCollection 2024 May.

Abstract

To preserve their varietal attributes, established grapevine cultivars ( L. ssp. ) must be clonally propagated, due to their highly heterozygous genomes. Malbec is a France-originated cultivar appreciated for producing high-quality wines and is the offspring of cultivars Prunelard and Magdeleine Noire des Charentes. Here, we have built a diploid genome assembly of Malbec, after trio binning of PacBio long reads into the two haploid complements inherited from either parent. After haplotype-aware deduplication and corrections, complete assemblies for the two haplophases were obtained with a very low haplotype switch-error rate (<0.025). The haplophase alignment identified > 25% of polymorphic regions. Gene annotation including RNA-seq transcriptome assembly and prediction evidence resulted in similar gene model numbers for both haplophases. The annotated diploid assembly was exploited in the transcriptomic comparison of four clonal accessions of Malbec that exhibited variation in berry composition traits. Analysis of the ripening pericarp transcriptome using either haplophases as a reference yielded similar results, although some differences were observed. Particularly, among the differentially expressed genes identified only with the Magdeleine-inherited haplotype as reference, we observed an over-representation of hypothetically hemizygous genes. The higher berry anthocyanin content of clonal accession 595 was associated with increased abscisic acid responses, possibly leading to the observed overexpression of phenylpropanoid metabolism genes and deregulation of genes associated with abiotic stress response. Overall, the results highlight the importance of producing diploid assemblies to fully represent the genomic diversity of highly heterozygous woody crop cultivars and unveil the molecular bases of clonal phenotypic variation.

摘要

由于其高度杂合的基因组,已有的葡萄栽培品种(L. ssp.)必须通过克隆繁殖来保留其品种特性。马尔贝克是一种源自法国的栽培品种,以生产高品质葡萄酒而受到青睐,它是普鲁内拉德和马德莱娜黑夏朗德品种的后代。在这里,我们在将PacBio长读段按照从双亲继承的两个单倍体互补序列进行三重分箱后,构建了马尔贝克的二倍体基因组组装。经过单倍型感知重复数据去除和校正后,获得了两个单倍型阶段的完整组装,单倍型切换错误率非常低(<0.025)。单倍型阶段比对识别出超过25%的多态性区域。包括RNA-seq转录组组装和预测证据在内的基因注释,使得两个单倍型阶段的基因模型数量相似。注释后的二倍体组装被用于对四个马尔贝克克隆株系的转录组比较,这些克隆株系在浆果成分性状上表现出差异。尽管观察到了一些差异,但使用任何一个单倍型阶段作为参考对成熟果皮转录组进行分析都产生了相似的结果。特别是,在仅以继承自马德莱娜的单倍型作为参考识别出的差异表达基因中,我们观察到假设的半合子基因过度富集。克隆株系595中较高的浆果花青素含量与脱落酸反应增加有关,这可能导致观察到的苯丙烷代谢基因的过表达以及与非生物胁迫反应相关基因的失调。总体而言,这些结果突出了产生二倍体组装以充分代表高度杂合木本作物品种基因组多样性以及揭示克隆表型变异分子基础的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/430c/11101320/28d3322e884d/uhae080f1.jpg

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