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利用农杆菌介导的烟草瞬时表达优化免疫受体相关过敏细胞死亡反应检测

Optimization of immune receptor-related hypersensitive cell death response assay using agrobacterium-mediated transient expression in tobacco plants.

作者信息

Huh Sung Un

机构信息

Department of Biological Science, Kunsan National University, Gunsan, 54150, Republic of Korea.

出版信息

Plant Methods. 2022 May 2;18(1):57. doi: 10.1186/s13007-022-00893-z.

Abstract

BACKGROUND

The study of the regulatory mechanisms of evolutionarily conserved Nucleotide-binding leucine-rich repeat (NLR) resistance (R) proteins in animals and plants is of increasing importance due to understanding basic immunity and the value of various crop engineering applications of NLR immune receptors. The importance of temperature is also emerging when applying NLR to crops responding to global climate change. In particular, studies of pathogen effector recognition and autoimmune activity of NLRs in plants can quickly and easily determine their function in tobacco using agro-mediated transient assay. However, there are conditions that should not be overlooked in these cell death-related assays in tobacco.

RESULTS

Environmental conditions play an important role in the immune response of plants. The system used in this study was to establish conditions for optimal hypertensive response (HR) cell death analysis by using the paired NLR RPS4/RRS1 autoimmune and AvrRps4 effector recognition system. The most suitable greenhouse temperature for growing plants was fixed at 22 °C. In this study, RPS4/RRS1-mediated autoimmune activity, RPS4 TIR domain-dependent cell death, and RPS4/RRS1-mediated HR cell death upon AvrRps4 perception significantly inhibited under conditions of 65% humidity. The HR is strongly activated when the humidity is below 10%. Besides, the leaf position of tobacco is important for HR cell death. Position #4 of the leaf from the top in 4-5 weeks old tobacco plants showed the most effective HR cell death.

CONCLUSIONS

As whole genome sequencing (WGS) or resistance gene enrichment sequencing (RenSeq) of various crops continues, different types of NLRs and their functions will be studied. At this time, if we optimize the conditions for evaluating NLR-mediated HR cell death, it will help to more accurately identify the function of NLRs. In addition, it will be possible to contribute to crop development in response to global climate change through NLR engineering.

摘要

背景

由于对基本免疫以及NLR免疫受体在各种作物工程应用中的价值的理解,对动植物中进化保守的核苷酸结合富含亮氨酸重复序列(NLR)抗性(R)蛋白的调控机制的研究变得越来越重要。在将NLR应用于应对全球气候变化的作物时,温度的重要性也日益凸显。特别是,利用农杆菌介导的瞬时试验,可以快速轻松地确定植物中NLR的病原体效应子识别和自身免疫活性在烟草中的功能。然而,在烟草中这些与细胞死亡相关的试验中,有一些条件不容忽视。

结果

环境条件在植物的免疫反应中起着重要作用。本研究中使用的系统是通过使用配对的NLR RPS4/RRS1自身免疫和AvrRps4效应子识别系统,建立最佳过敏反应(HR)细胞死亡分析的条件。种植植物最适宜的温室温度固定在22°C。在本研究中,在湿度为65%的条件下,RPS4/RRS1介导的自身免疫活性、RPS4 TIR结构域依赖性细胞死亡以及RPS4/RRS1在感知AvrRps4时介导的HR细胞死亡均受到显著抑制。当湿度低于10%时,HR被强烈激活。此外,烟草的叶位对HR细胞死亡很重要。在4-5周龄烟草植株中,从顶部数第4片叶的位置显示出最有效的HR细胞死亡。

结论

随着各种作物的全基因组测序(WGS)或抗性基因富集测序(RenSeq)的持续进行,将研究不同类型的NLR及其功能。此时,如果我们优化评估NLR介导的HR细胞死亡的条件,将有助于更准确地鉴定NLR的功能。此外,通过NLR工程,有可能为应对全球气候变化的作物开发做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c60c/9063123/7f7a14a1e8a0/13007_2022_893_Fig1_HTML.jpg

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