A Glutathione S-Transferase from Thinopyrum ponticum Confers Fhb7 Resistance to Fusarium Head Blight in Wheat.

IF 2.6 2区 农林科学 Q2 PLANT SCIENCES Phytopathology Pub Date : 2024-07-01 Epub Date: 2024-07-11 DOI:10.1094/PHYTO-03-24-0106-SC
Lanfei Zhao, Amy Bernardo, Fanmei Kong, Wei Zhao, Yanhong Dong, Hyeonju Lee, Harold N Trick, Jessica Rupp Noller, Guihua Bai
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Abstract

Fusarium head blight (FHB), mainly incited by Fusarium graminearum, has caused great losses in grain yield and quality of wheat globally. Fhb7, a major gene from 7E chromosome of Thinopyrum ponticum, confers broad resistance to multiple Fusarium species in wheat and has recently been cloned and identified as encoding a glutathione S-transferase (GST). However, some recent reports raised doubt about whether GST is the causal gene of Fhb7. To resolve the discrepancy and validate the gene function of GST in wheat, we phenotyped Fhb7 near-isogenic lines (Jimai22-Fhb7 versus Jimai22) and GST overexpressed lines for FHB resistance. Jimai22-Fhb7 showed significantly higher FHB resistance with a lower percentage of symptomatic spikelets, Fusarium-damaged kernels, and deoxynivalenol content than susceptible Jimai22 in three experiments. All the positive GST transgenic lines driven by either the maize ubiquitin promoter or its native promoter with high gene expression in the wheat cultivar 'Fielder' showed high FHB resistance. Only one maize ubiquitin promoter-driven transgenic line showed low GST expression and similar susceptibility to Fielder, suggesting that high GST expression confers Fhb7 resistance to FHB. Knockout of GST in the Jimai22-Fhb7 line using CRISPR-Cas9-based gene editing showed significantly higher FHB susceptibility compared with the nonedited control plants. Therefore, we confirmed GST as the causal gene of Fhb7 for FHB resistance. Considering its major effect on FHB resistance, pyramiding Fhb7 with other quantitative trait loci has a great potential to create highly FHB-resistant wheat cultivars.

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来自 Thinopyrum ponticum 的谷胱甘肽 S 转移酶能使 Fhb7 对小麦头孢镰刀菌枯萎病产生抗性。
镰刀菌头枯病(FHB)主要由禾谷镰刀菌(Fusarium graminearum Schwabe)引起,给全球小麦的产量和品质造成了巨大损失。Fhb7 是来自 Thinopyrum ponticum 7E 染色体的一个主要基因,可赋予小麦对多种镰刀菌的广泛抗性,最近被克隆并鉴定为谷胱甘肽 S 转移酶(GST)的编码基因。然而,最近的一些报道对 GST 是否是 Fhb7 的致病基因提出了质疑。为了解决这一分歧并验证 GST 在小麦中的基因功能,我们对 Fhb7 近等基因系(Jimai22-Fhb7 与 Jimai22)和 GST 过表达系进行了 FHB 抗性表型分析。在三次实验中,Jimai22-Fhb7 对 FHB 的抗性明显高于易感的 Jimai22,症状小穗(PSS)百分比、镰刀菌损伤的种仁(FDK)和脱氧雪腐镰刀菌烯醇(DON)含量均低于易感的 Jimai22。在小麦栽培品种 "Fielder "中,所有由玉米泛素启动子(MubiP)或其原生启动子(NP)驱动、基因表达量高的阳性 GST 转基因品系都表现出较高的 FHB 抗性。只有一个 MubiP 驱动的转基因品系表现出低 GST 表达和与 Fielder 相似的易感性,这表明高 GST 表达赋予了 Fhb7 对 FHB 的抗性。利用基于 CRISPR-Cas9 的基因编辑技术敲除 Jimai22-Fhb7 株系中的 GST,结果显示其对 FHB 的敏感性明显高于未编辑的对照植株。因此,我们确认 GST 是 Fhb7 抗 FHB 的致病基因。考虑到 Fhb7 对 FHB 抗性的主要影响,将 Fhb7 与其他 QTLs 结合在一起具有创造高 FHB 抗性小麦栽培品种的巨大潜力。
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来源期刊
Phytopathology
Phytopathology 生物-植物科学
CiteScore
5.90
自引率
9.40%
发文量
505
审稿时长
4-8 weeks
期刊介绍: Phytopathology publishes articles on fundamental research that advances understanding of the nature of plant diseases, the agents that cause them, their spread, the losses they cause, and measures that can be used to control them. Phytopathology considers manuscripts covering all aspects of plant diseases including bacteriology, host-parasite biochemistry and cell biology, biological control, disease control and pest management, description of new pathogen species description of new pathogen species, ecology and population biology, epidemiology, disease etiology, host genetics and resistance, mycology, nematology, plant stress and abiotic disorders, postharvest pathology and mycotoxins, and virology. Papers dealing mainly with taxonomy, such as descriptions of new plant pathogen taxa are acceptable if they include plant disease research results such as pathogenicity, host range, etc. Taxonomic papers that focus on classification, identification, and nomenclature below the subspecies level may also be submitted to Phytopathology.
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