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番茄种间 NB-LRR 基因库及其对育种策略的影响。

The Tomato Interspecific NB-LRR Gene Arsenal and Its Impact on Breeding Strategies.

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Via Università 100, 80055 Portici (NA), Italy.

出版信息

Genes (Basel). 2021 Jan 27;12(2):184. doi: 10.3390/genes12020184.

Abstract

Tomato ( L.) is a model system for studying the molecular basis of resistance in plants. The investigation of evolutionary dynamics of tomato resistance (R)-loci provides unique opportunities for identifying factors that promote or constrain genome evolution. Nucleotide-binding domain and leucine-rich repeat (NB-LRR) receptors belong to one of the most plastic and diversified families. The vast amount of genomic data available for Solanaceae and wild tomato relatives provides unprecedented insights into the patterns and mechanisms of evolution of NB-LRR genes. Comparative analysis remarked a reshuffling of R-islands on chromosomes and a high degree of adaptive diversification in key R-loci induced by species-specific pathogen pressure. Unveiling NB-LRR natural variation in tomato and in other Solanaceae species offers the opportunity to effectively exploit genetic diversity in genomic-driven breeding programs with the aim of identifying and introducing new resistances in tomato cultivars. Within this motivating context, we reviewed the repertoire of NB-LRR genes available for tomato improvement with a special focus on signatures of adaptive processes. This issue is still relevant and not thoroughly investigated. We believe that the discovery of mechanisms involved in the generation of a gene with new resistance functions will bring great benefits to future breeding strategies.

摘要

番茄(L.)是研究植物抗性分子基础的模式系统。研究番茄抗性(R)基因座的进化动态为识别促进或限制基因组进化的因素提供了独特的机会。核苷酸结合域和富含亮氨酸重复(NB-LRR)受体属于最具可塑性和多样化的家族之一。茄科和野生番茄亲缘植物的大量基因组数据为 NB-LRR 基因的进化模式和机制提供了前所未有的见解。比较分析注意到 R 岛在染色体上的重排以及由物种特异性病原体压力引起的关键 R 基因座的高度适应性多样化。揭示番茄和其他茄科植物中 NB-LRR 的自然变异为利用基因组驱动的育种计划中的遗传多样性提供了机会,目的是在番茄品种中鉴定和引入新的抗性。在这种激励背景下,我们回顾了可用于番茄改良的 NB-LRR 基因库,特别关注适应性过程的特征。这个问题仍然很重要,也没有得到彻底的研究。我们相信,发现产生具有新抗性功能的基因的机制将为未来的育种策略带来巨大的好处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82ba/7911644/9507e1fd5957/genes-12-00184-g001.jpg

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