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葡萄属圆叶葡萄 cv. 卡洛斯的长读、染色体级别的组装及其对韧皮部难养菌亚种的独特抗性。

Long-read, chromosome-scale assembly of Vitis rotundifolia cv. Carlos and its unique resistance to Xylella fastidiosa subsp. fastidiosa.

机构信息

Department of Entomology and Plant Pathology, University of Tennessee, Knoxville, TN, 37996, USA.

Genomics and Bioinformatics Research Unit, USDA-ARS, Raleigh, NC, 27606, USA.

出版信息

BMC Genomics. 2023 Jul 20;24(1):409. doi: 10.1186/s12864-023-09514-y.

Abstract

BACKGROUND

Muscadine grape (Vitis rotundifolia) is resistant to many of the pathogens that negatively impact the production of common grape (V. vinifera), including the bacterial pathogen Xylella fastidiosa subsp. fastidiosa (Xfsf), which causes Pierce's Disease (PD). Previous studies in common grape have indicated Xfsf delays host immune response with a complex O-chain antigen produced by the wzy gene. Muscadine cultivars range from tolerant to completely resistant to Xfsf, but the mechanism is unknown.

RESULTS

We assembled and annotated a new, long-read genome assembly for 'Carlos', a cultivar of muscadine that exhibits tolerance, to build upon the existing genetic resources available for muscadine. We used these resources to construct an initial pan-genome for three cultivars of muscadine and one cultivar of common grape. This pan-genome contains a total of 34,970 synteny-constrained entries containing genes of similar structure. Comparison of resistance gene content between the 'Carlos' and common grape genomes indicates an expansion of resistance (R) genes in 'Carlos.' We further identified genes involved in Xfsf response by transcriptome sequencing 'Carlos' plants inoculated with Xfsf. We observed 234 differentially expressed genes with functions related to lipid catabolism, oxidation-reduction signaling, and abscisic acid (ABA) signaling as well as seven R genes. Leveraging public data from previous experiments of common grape inoculated with Xfsf, we determined that most differentially expressed genes in the muscadine response were not found in common grape, and three of the R genes identified as differentially expressed in muscadine do not have an ortholog in the common grape genome.

CONCLUSIONS

Our results support the utility of a pan-genome approach to identify candidate genes for traits of interest, particularly disease resistance to Xfsf, within and between muscadine and common grape.

摘要

背景

麝香葡萄(Vitis rotundifolia)对许多影响普通葡萄(V. vinifera)生产的病原体具有抗性,包括细菌性病原体 Xylella fastidiosa subsp. fastidiosa(Xfsf),它会引起 Pierce 病(PD)。之前在普通葡萄中的研究表明,Xfsf 通过 wzy 基因产生的复杂 O-链抗原延迟了宿主的免疫反应。麝香葡萄品种对 Xfsf 的耐受性范围从容忍到完全抗性不等,但机制尚不清楚。

结果

我们为‘Carlos’组装并注释了一个新的、长读长基因组组装,‘Carlos’是一个表现出耐受性的麝香葡萄品种,以建立现有的麝香葡萄遗传资源。我们使用这些资源构建了三个麝香葡萄品种和一个普通葡萄品种的初始泛基因组。这个泛基因组总共包含 34970 个具有相似结构的基因的同线性约束条目。‘Carlos’和普通葡萄基因组中抗性基因含量的比较表明,‘Carlos’中抗性(R)基因的扩张。我们通过对 Xfsf 接种的‘Carlos’植物进行转录组测序,进一步鉴定了参与 Xfsf 反应的基因。我们观察到 234 个差异表达基因,其功能与脂质代谢、氧化还原信号和脱落酸(ABA)信号有关,还有七个 R 基因。利用之前普通葡萄接种 Xfsf 的实验的公共数据,我们确定了在麝香葡萄反应中发现的大多数差异表达基因在普通葡萄中不存在,并且鉴定为在麝香葡萄中差异表达的三个 R 基因在普通葡萄基因组中没有同源物。

结论

我们的结果支持泛基因组方法在鉴定与麝香葡萄和普通葡萄之间和之内的感兴趣性状(特别是对 Xfsf 的抗病性)的候选基因的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2a2/10357881/7e64c4650644/12864_2023_9514_Fig1_HTML.jpg

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