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甜樱桃(L.)品种‘拉宾斯’感染……pv. ……后的转录组分析

Transcriptome Analysis of Sweet Cherry ( L.) Cultivar 'Lapins' upon Infection of pv. .

作者信息

Cui Weier, Fiore Nicola, Figueroa Franco, Rubilar Carlos, Pizarro Lorena, Pinto Manuel, Pérez Set, Beltrán María Francisca, Carreras Claudia, Pimentel Paula, Zamorano Alan

机构信息

Laboratorio de Fitovirología, Departamento de Sanidad Vegetal, Facultad de Ciencias Agronómicas, Universidad de Chile, Santiago 8820808, Chile.

Laboratorio de Inmunidad Vegetal, Instituto de Ciencias Agroalimentarias, Universidad de O'Higgins, San Fernando 3070000, Chile.

出版信息

Plants (Basel). 2023 Oct 29;12(21):3718. doi: 10.3390/plants12213718.

Abstract

Bacterial canker caused by pv. (Pss) is responsible for substantial loss to the production of sweet cherry in Chile. To date, the molecular mechanisms of the Pss-sweet cherry interaction and the disease-related genes in the plant are poorly understood. In order to gain insight into these aspects, a transcriptomic analysis of the sweet cherry cultivar 'Lapins' for differentially expressed genes (DEGs) in response to Pss inoculation was conducted. Three Pss strains, A1M3, A1M197, and 11116_b1, were inoculated in young twigs, and RNA was extracted from tissue samples at the inoculation site and distal sections. RNA sequencing and transcriptomic expression analysis revealed that the three strains induced different patterns of responses in local and distal tissues. In the local tissues, A1M3 triggered a much more extensive response than the other two strains, enriching DEGs especially involved in photosynthesis. In the distal tissues, the three strains triggered a comparable extent of responses, among which 11116_b1 induced a group of DEGs involved in defense responses. Furthermore, tissues from various inoculations exhibited an enrichment of DEGs related to carbohydrate metabolism, terpene metabolism, and cell wall biogenesis. This study opened doors to future research on the Pss-sweet cherry interaction, immunity responses, and disease control.

摘要

由丁香假单胞菌致病变种(Pss)引起的细菌性溃疡病给智利甜樱桃生产造成了巨大损失。迄今为止,人们对Pss与甜樱桃相互作用的分子机制以及植物中与疾病相关的基因了解甚少。为了深入了解这些方面,对甜樱桃品种‘拉宾斯’接种Pss后进行了差异表达基因(DEG)的转录组分析。将三株Pss菌株A1M3、A1M197和11116_b1接种到嫩枝上,并从接种部位和远端组织的样本中提取RNA。RNA测序和转录组表达分析表明,这三株菌株在局部和远端组织中诱导了不同的反应模式。在局部组织中,A1M3引发的反应比其他两株菌株更为广泛,富集了尤其与光合作用相关的DEG。在远端组织中,这三株菌株引发的反应程度相当,其中11116_b1诱导了一组与防御反应相关的DEG。此外,来自各种接种的组织均表现出与碳水化合物代谢、萜类代谢和细胞壁生物合成相关的DEG富集。本研究为未来关于Pss与甜樱桃相互作用、免疫反应和疾病控制的研究打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4108/10647540/60ceb7224399/plants-12-03718-g001.jpg

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