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GIPC 糖基转移酶基因 OsGMT1 的过表达抑制了水稻的植物免疫并延迟了抽穗时间。

Overexpression of a GIPC glycosyltransferase gene, OsGMT1, suppresses plant immunity and delays heading time in rice.

机构信息

College of Agronomy, Fujian Agriculture and Forestry University, Fuzhou 350002, China; Rice Research Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350019, China; State Key Laboratory for Ecological Control of Crop Pests between Fujian and Taiwan/National Engineering Laboratory of Rice/South China Research Base of State Key Laboratory of Hybrid Rice/Incubating Base of State Key Laboratory of Crop Germplasm Innovation and Molecular Breeding between Fujian and Ministry of Science and Technology/Fuzhou Branch of National Rice Improvement Center/Key Laboratory of Hybrid Rice Germplasm Innovation and Molecular Breeding of Ministry of Agriculture and Rural Areas for South China/Fujian Engineering Laboratory of Crop Molecular Breeding/Fujian Key Laboratory of Rice Molecular Breeding, Fuzhou 350003, Fujian, China.

Rice Research Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350019, China; State Key Laboratory for Ecological Control of Crop Pests between Fujian and Taiwan/National Engineering Laboratory of Rice/South China Research Base of State Key Laboratory of Hybrid Rice/Incubating Base of State Key Laboratory of Crop Germplasm Innovation and Molecular Breeding between Fujian and Ministry of Science and Technology/Fuzhou Branch of National Rice Improvement Center/Key Laboratory of Hybrid Rice Germplasm Innovation and Molecular Breeding of Ministry of Agriculture and Rural Areas for South China/Fujian Engineering Laboratory of Crop Molecular Breeding/Fujian Key Laboratory of Rice Molecular Breeding, Fuzhou 350003, Fujian, China.

出版信息

Plant Sci. 2023 Jun;331:111674. doi: 10.1016/j.plantsci.2023.111674. Epub 2023 Mar 21.

Abstract

Glycosylinositol phosphorylceramides (GIPCs) are the major sphingolipids in the plant plasma membrane. In Arabidopsis, mutations of genes involved in the synthesis of GIPCs affect many physiological aspects of plants, including growth, pollen fertility, defense, and stress signaling. Loss of function of the GIPC MANNOSYL-TRANSFERASE1 (AtGMT1) results in GIPC misglycosylation and induces plant immune responses accompanied by a severely dwarfed phenotype, thus indicating that GIPCs play important roles in plant immunity. Here, we investigated the enzymatic activity and phenotypes of transgenic lines of OsGMT1, the ortholog of AtGMT1. Sphingolipidomic analysis indicated that OsGMT1 retained the enzymatic activity of GIPC hexose (Hex) glycosylation, but the knockout lines did not accumulate HO. In contrast, the OsGMT1 overexpression lines showed significant down-regulation of several defense-associated or cell wall synthesis-associated genes, and enhanced sensitivity to rice blast. Furthermore, we first demonstrated the sensitivity of rice cells to MoNLP1 protein through calcein AM release assays using rice protoplasts, thus legitimizing the presence of MoNLPs in rice blast fungus. In addition, yeast two-hybrid screens using OsGMT1 as bait revealed that OsGMT1 may regulate heading time through the OsHAP5C signaling pathway. Together, our findings suggested clear physiological functional differentiation of GMT1 orthologs between rice and Arabidopsis.

摘要

糖基肌醇磷酸神经酰胺(GIPCs)是植物质膜中的主要鞘脂。在拟南芥中,参与 GIPC 合成的基因突变会影响植物的许多生理方面,包括生长、花粉育性、防御和应激信号转导。GIPC 甘露糖基转移酶 1(AtGMT1)的功能丧失导致 GIPC 糖基化错误,并诱导植物免疫反应,同时伴有严重的矮化表型,这表明 GIPCs 在植物免疫中发挥重要作用。在这里,我们研究了 AtGMT1 同源物 OsGMT1 的转基因系的酶活性和表型。鞘脂组学分析表明,OsGMT1 保留了 GIPC 己糖(Hex)糖基化的酶活性,但敲除系没有积累 HO。相比之下,OsGMT1 过表达系表现出几个与防御相关或细胞壁合成相关基因的显著下调,并对稻瘟病表现出更高的敏感性。此外,我们首次通过使用水稻原生质体的 calcein AM 释放测定法,证明了水稻细胞对 MoNLP1 蛋白的敏感性,从而证明了 MoNLPs 在稻瘟病菌中的存在。此外,使用 OsGMT1 作为诱饵的酵母双杂交筛选揭示了 OsGMT1 可能通过 OsHAP5C 信号通路调节抽穗时间。总之,我们的研究结果表明,GMT1 同源物在水稻和拟南芥之间具有明显的生理功能分化。

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