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采前紫外线-C 刺激诱导接种了(某种病菌)生菜中与稳态、生长和防御相关的关键基因。 (注:原文中“pv.”后面内容缺失)

Preharvest UV-C Hormesis Induces Key Genes Associated With Homeostasis, Growth and Defense in Lettuce Inoculated With pv. .

作者信息

Sidibé Amadou, Charles Marie Thérèse, Lucier Jean-François, Xu Yanqun, Beaulieu Carole

机构信息

Department of Biology, Université de Sherbrooke, Sherbrooke, QC, Canada.

Saint-Jean-sur-Richelieu Research and Development Centre, Agriculture and Agri-Food Canada, Saint-Jean-sur-Richelieu, QC, Canada.

出版信息

Front Plant Sci. 2022 Jan 17;12:793989. doi: 10.3389/fpls.2021.793989. eCollection 2021.

Abstract

Preharvest application of hormetic doses of ultraviolet-C (UV-C) generates beneficial effects in plants. In this study, within 1 week, four UV-C treatments of 0.4 kJ/m2 were applied to 3-week-old lettuce seedlings. The leaves were inoculated with a virulent strain of pv. () 48 h after the last UV-C application. The extent of the disease was tracked over time and a transcriptomic analysis was performed on lettuce leaf samples. Samples of lettuce leaves, from both control and treated groups, were taken at two different times corresponding to T2, 48 h after the last UV-C treatment and T3, 24 h after inoculation (i.e., 72 h after the last UV-C treatment). A significant decrease in disease severity between the UV-C treated lettuce and the control was observed on days 4, 8, and 14 after pathogen inoculation. Data from the transcriptomic study revealed, that in response to the effect of UV-C alone and/or UV-C + Xcv, a total of 3828 genes were differentially regulated with fold change (|log2-FC|) > 1.5 and false discovery rate (FDR) < 0.05. Among these, of the 2270 genes of known function 1556 were upregulated and 714 were downregulated. A total of 10 candidate genes were verified by qPCR and were generally consistent with the transcriptomic results. The differentially expressed genes observed in lettuce under the conditions of the present study were associated with 14 different biological processes in the plant. These genes are involved in a series of metabolic pathways associated with the ability of lettuce treated with hormetic doses of UV-C to resume normal growth and to defend themselves against potential stressors. The results indicate that the hormetic dose of UV-C applied preharvest on lettuce in this study, can be considered as an eustress that does not interfere with the ability of the treated plants to carry on a set of key physiological processes namely: homeostasis, growth and defense.

摘要

收获前施加低剂量紫外线-C(UV-C)对植物具有有益影响。在本研究中,在1周内,对3周龄的生菜幼苗进行了4次剂量为0.4 kJ/m²的UV-C处理。在最后一次UV-C处理后48小时,用致病力强的 pv. ()菌株接种叶片。随时间追踪病害程度,并对生菜叶片样本进行转录组分析。在与T2(最后一次UV-C处理后48小时)和T3(接种后24小时,即最后一次UV-C处理后72小时)相对应的两个不同时间,采集对照组和处理组的生菜叶片样本。在病原菌接种后第4、8和14天,观察到UV-C处理的生菜与对照组相比,病害严重程度显著降低。转录组研究数据显示,响应单独UV-C和/或UV-C + Xcv的作用,共有3828个基因差异表达,变化倍数(|log2-FC|)> 1.5且错误发现率(FDR)< 0.05。其中,在2270个已知功能的基因中,1556个上调,714个下调。通过qPCR验证了总共10个候选基因,结果与转录组结果总体一致。在本研究条件下,生菜中观察到的差异表达基因与植物中的14种不同生物学过程相关。这些基因参与了一系列代谢途径,这些途径与经低剂量UV-C处理的生菜恢复正常生长并抵御潜在应激源的能力有关。结果表明,本研究中收获前对生菜施加的低剂量UV-C可被视为一种良性应激,不会干扰处理后植物进行一系列关键生理过程的能力,即:内稳态、生长和防御。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2688/8801786/227847824a46/fpls-12-793989-g001.jpg

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