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挖掘葡萄霜霉病易感性基因:基于基因组学的育种和定制基因编辑资源。

Mining Grapevine Downy Mildew Susceptibility Genes: A Resource for Genomics-Based Breeding and Tailored Gene Editing.

机构信息

Research and Innovation Centre, Edmund Mach Foundation, Via E. Mach 1, 38010 San Michele all'Adige, Italy.

Department of Agricultural, Food, Environmental and Animal Sciences, University of Udine, Via delle Scienze 206, 33100 Udine, Italy.

出版信息

Biomolecules. 2021 Jan 28;11(2):181. doi: 10.3390/biom11020181.

Abstract

Several pathogens continuously threaten viticulture worldwide. Until now, the investigation on resistance loci has been the main trend to understand the interaction between grapevine and the mildew causal agents. Dominantly inherited gene-based resistance has shown to be race-specific in some cases, to confer partial immunity, and to be potentially overcome within a few years since its introgression. Recently, on the footprint of research conducted in Arabidopsis, putative genes associated with downy mildew susceptibility have been discovered also in the grapevine genome. In this work, we deep-sequenced four putative susceptibility genes-namely , , , -in 190 genetically diverse grapevine genotypes to discover new sources of broad-spectrum and recessively inherited resistance. Identified Single Nucleotide Polymorphisms were screened in a bottleneck analysis from the genetic sequence to their impact on protein structure. Fifty-five genotypes showed at least one impacting mutation in one or more of the scouted genes. Haplotypes were inferred for each gene and two of them at the gene were found significantly more represented in downy mildew resistant genotypes. The current results provide a resource for grapevine and plant genetics and could corroborate genomic-assisted breeding programs as well as tailored gene editing approaches for resistance to biotic stresses.

摘要

几种病原体不断威胁着全世界的葡萄种植业。到目前为止,对抗性基因座的研究一直是了解葡萄与霜霉病病原体相互作用的主要趋势。在某些情况下,显性遗传的基于基因的抗性表现为专化性,赋予部分免疫力,并在其导入后的几年内可能被克服。最近,在拟南芥研究的基础上,在葡萄基因组中也发现了与霜霉病易感性相关的假定基因。在这项工作中,我们对 190 个遗传多样性的葡萄基因型进行了深度测序,以发现具有广谱和隐性遗传抗性的新来源。在从遗传序列到其对蛋白质结构影响的瓶颈分析中筛选出了鉴定的单核苷酸多态性。在 55 个基因型中,在一个或多个被探测基因中发现了至少一个影响突变。推断了每个基因的单倍型,其中两个 在 基因中发现与抗霜霉病基因型显著相关。目前的结果为葡萄和植物遗传学提供了一个资源,并且可以支持基因组辅助的育种计划以及针对生物胁迫抗性的定制基因编辑方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/def5/7912118/b4443a34b980/biomolecules-11-00181-g001.jpg

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