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高温下番茄对黄曲叶病毒的 -- 基于抗性的分解。

Breakdown of --Based Resistance to Tomato Yellow Leaf Curl Virus in Tomato Plants at High Temperatures.

机构信息

Graduate School of Agriculture, Kindai University, 3327-204 Nara, Japan.

出版信息

Phytopathology. 2024 Jan;114(1):294-303. doi: 10.1094/PHYTO-04-23-0119-R. Epub 2024 Feb 12.

DOI:10.1094/PHYTO-04-23-0119-R
PMID:37321561
Abstract

The global dissemination of the Israel (IL) and mild (Mld) strains of tomato yellow leaf curl virus (TYLCV) (family , genus ) is a major threat to tomato production in many regions worldwide. The use of resistant hybrid cultivars bearing the dominant resistance genes , , and has become a common practice for controlling tomato yellow leaf curl disease (TYLCD) caused by TYLCV. However, TYLCD symptoms have been sporadically observed in resistant cultivars grown in seasons when temperatures are high. In this study, we used TYLCV-resistant cultivars with confirmed presence of , which were determined using newly developed allele-specific markers based on polymorphisms within the locus. These -bearing resistant tomato plants and susceptible plants were infected with TYLCV and grown at moderate or high temperatures. Under high-temperature conditions, the -bearing tomato cultivar Momotaro Hope (MH) infected with TYLCV-IL had severe TYLCD symptoms, which were almost equivalent to those of the susceptible cultivar. However, MH plants infected with TYLCV-Mld were symptomless or had slight symptoms under the same temperature condition. The quantitative analysis of the TYLCV-IL viral DNA content revealed a correlation between symptom development and viral DNA accumulation. Furthermore, under high-temperature conditions, TYLCV-IL caused severe symptoms in multiple commercial tomato cultivars with different genetic backgrounds. Our study provided the scientific evidence for the experientially known phenomenon by tomato growers, and it is anticipated that global warming, associated with climate change, could potentially disrupt the management of TYLCV in tomato plants mediated by the gene.

摘要

番茄黄曲叶病毒(TYLCV)(家族,属)的以色列(IL)和温和(Mld)株系在全球范围内的传播是世界许多地区番茄生产的主要威胁。使用具有显性抗性基因、和的抗性杂交品种已成为控制由 TYLCV 引起的番茄黄曲叶病(TYLCD)的常见做法。然而,在高温季节,抗性品种中偶尔会观察到 TYLCD 症状。在这项研究中,我们使用了经新开发的基于基因座内多态性的等位基因特异性标记物确认存在和的 TYLCV 抗性品种。这些携带的抗性番茄植物和易感植物被 TYLCV 感染并在中等或高温下生长。在高温条件下,感染 TYLCV-IL 的携带番茄品种 Momotaro Hope(MH)表现出严重的 TYLCD 症状,几乎与易感品种相同。然而,在相同温度条件下,感染 TYLCV-Mld 的 MH 植物无症状或仅有轻微症状。对 TYLCV-IL 病毒 DNA 含量的定量分析表明,症状发展与病毒 DNA 积累之间存在相关性。此外,在高温条件下,TYLCV-IL 导致具有不同遗传背景的多个商业番茄品种出现严重症状。我们的研究为番茄种植者经验上已知的现象提供了科学证据,预计与气候变化相关的全球变暖可能会破坏由基因介导的番茄中 TYLCV 的管理。

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