Transcriptomic profiling reveals distinct responses to beet curly top virus (BCTV) infection in resistant and susceptible sugar beet genotypes.

IF 3.7 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY BMC Genomics Pub Date : 2024-12-23 DOI:10.1186/s12864-024-11143-y
Jordan Withycombe, Jinlong Han, Jacob MacWilliams, Kevin M Dorn, Vamsi J Nalam, Punya Nachappa
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Abstract

Background: Sugar beets (Beta vulgaris L.) are grown worldwide and suffer economic loss annually due to curly top disease caused by the beet curly top virus (BCTV). The virus is spread by the beet leafhopper (BLH), Circulifer tenellus Baker. Current management strategies rely on chemical control and planting BCTV-resistant sugar beet genotypes. However, the genetic mechanism underlying BCTV resistance in sugar beet is unknown. This study aimed to determine these mechanisms by comparing a resistant (EL10) and susceptible (FC709-2) sugar beet genotype using host plant suitability (no-choice), host preference (choice) assays, and transcriptomic analysis.

Results: Host plant suitability assays revealed no significant differences in adult survival or nymph production between viruliferous and non-viruliferous BLH on either genotype, suggesting that BCTV resistance is not directly associated with reduced beet leafhopper fitness. However, host preference assays showed that viruliferous BLH preferred settling on the susceptible genotype, FC709-2, compared to the resistant genotype, EL10 whereas the non-viruliferous BLH showed no preference. RNA-sequencing analysis of BCTV-inoculated (viruliferous BLH-fed) and mock-inoculated (non-viruliferous BLH-fed) plants at day 1, 7, or 14 post-inoculations highlighted dynamic and contrasting responses between the two genotypes. The resistant genotype had differentially expressed transcripts (DETs) associated with jasmonic acid and abscisic acid biosynthesis and signaling. DETs associated with stress mitigation mechanisms and reduction in plant primary metabolic processes were also observed. In contrast, the susceptible genotype had DETs associated with opposing phytohormones like salicylic acid and auxin. Moreover, this genotype exhibited an upregulation in DETs involved in volatile organic compounds (VOCs) production and increased primary plant metabolic processes.

Conclusions: These results provide novel insight into the opposing transcriptional responses underlying BCTV resistance and susceptibility in sugar beet. Understanding and classifying the mechanisms of resistance or susceptibility to BCTV infection in sugar beet is beneficial to researchers and plant breeders as it provides a basis for further exploration of the host plant-virus-vector interactions.

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转录组学分析揭示了抗性和易感甜菜基因型对甜菜卷曲顶病毒(BCTV)感染的不同反应。
背景:甜菜(Beta vulgaris L.)在世界范围内广泛种植,每年因甜菜卷顶病毒(BCTV)引起的卷顶病而遭受经济损失。这种病毒是由甜菜叶蝉(BLH)传播的。目前的管理策略依赖于化学控制和种植抗bctv的甜菜基因型。然而,甜菜抗BCTV的遗传机制尚不清楚。本研究旨在通过比较抗性(EL10)和易感(FC709-2)甜菜基因型,利用寄主植物适应性(无选择)、寄主偏好(选择)测定和转录组学分析来确定这些机制。结果:寄主植物适宜性分析显示,在任何一种基因型上,有病毒和无病毒BLH的成虫存活率和若虫产量都没有显著差异,这表明对BCTV的抗性与甜菜叶蝉适应度的降低没有直接关系。然而,宿主偏好试验表明,与抗性基因型EL10相比,毒力型BLH更倾向于在易感基因型FC709-2上定居,而非毒力型BLH则没有这种偏好。接种后第1天、第7天或第14天,接种bctv(含毒blh)和模拟接种(无毒blh)植株的rna测序分析突出了两种基因型之间的动态和对比反应。抗性基因型具有与茉莉酸和脱落酸生物合成和信号传导相关的差异表达转录物(DETs)。还观察到与应激缓解机制和植物初级代谢过程减少相关的DETs。相比之下,易感基因型的DETs与水杨酸和生长素等相反的植物激素相关。此外,该基因型还表现出参与挥发性有机化合物(VOCs)产生的DETs的上调和植物初级代谢过程的增加。结论:这些结果为甜菜BCTV抗性和易感性背后的相反转录反应提供了新的见解。了解甜菜对BCTV感染的抗性或敏感性机制,并对其进行分类,有利于研究人员和植物育种人员进一步探索寄主植物-病毒-载体相互作用的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Genomics
BMC Genomics 生物-生物工程与应用微生物
CiteScore
7.40
自引率
4.50%
发文量
769
审稿时长
6.4 months
期刊介绍: BMC Genomics is an open access, peer-reviewed journal that considers articles on all aspects of genome-scale analysis, functional genomics, and proteomics. BMC Genomics is part of the BMC series which publishes subject-specific journals focused on the needs of individual research communities across all areas of biology and medicine. We offer an efficient, fair and friendly peer review service, and are committed to publishing all sound science, provided that there is some advance in knowledge presented by the work.
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