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A Comprehensive Transcriptional Profiling of Pepper Responses to Root-Knot Nematode

机译:对根结线虫的辣椒反应的综合转录分析

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摘要

Genetic resistance remains a key component in integrated pest management systems. The cosmopolitan root-knot nematode (RKN; Meloidogyne spp.) proves a significant management challenge as virulence and pathogenicity vary among and within species. RKN greatly reduces commercial bell pepper yield, and breeding programs continuously develop cultivars to emerging nematode threats. However, there is a lack of knowledge concerning the nature and forms of nematode resistance. Defining how resistant and susceptible pepper cultivars mount defenses against RKN attacks can help inform breeding programs. Here, we characterized the transcriptional responses of the highly related resistant (Charleston Belle) and susceptible (Keystone Resistance Giant) pepper cultivars throughout early nematode infection stages. Comprehensive transcriptomic sequencing of resistant and susceptible cultivar roots with or without Meloidogyneincognita infection over three-time points; covering early penetration (1-day), through feeding site maintenance (7-days post-inoculation), produced > 300 million high quality reads. Close examination of chromosome P9, on which nematode resistance hotspots are located, showed more differentially expressed genes were upregulated in resistant cultivar at day 1 when compared to the susceptible cultivar. Our comprehensive approach to transcriptomic profiling of pepper resistance revealed novel insights into how RKN causes disease and the plant responses mounted to counter nematode attack. This work broadens the definition of resistance from a single loci concept to a more complex array of interrelated pathways. Focus on these pathways in breeding programs may provide more sustainable and enduring forms of resistance.
机译:遗传抵抗仍然是综合虫害管理系统中的关键组成部分。 COSOMOPOLITAN根结NEMATODE(RKN; Meloidogyne SPP。)证明了显着的管理挑战,因为物种之间的毒力和致病性不同。 RKN大大减少了商业甜椒产量,养殖计划不断为新兴线虫威胁开发品种。然而,缺乏关于线虫抗性的性质和形式的知识。定义耐药和敏感的辣椒品种对RKN攻击的抗置抗干扰有助于通知繁殖计划。在这里,我们在早期的线虫感染阶段表征了高度相关的抗性(Charleston Belle)和易感(Keystone抗性巨型)辣椒品种的转录反应。抗性和易感品种综合转录组序列,有或没有组织遗工三个时间点的隐身感染;覆盖早期渗透(1天),通过喂养网站维护(接种后7天),生产> 300万高质量的读数。与易感品种相比,染色体P9的染色体P9染色体p9显示出更差异表达的基因,在第1天在第1天在抗性品种时被上调。我们对辣椒抗性转录组分布的综合方法揭示了RKN如何导致疾病和安装在逆线攻击中的植物反应的新颖见解。这项工作拓宽了从单个基因概念到更复杂的相互关联途径的抵抗的定义。专注于育种计划中的这些途径可以提供更可持续和持久的抵抗形式。

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