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EXO70 和 MLO 蛋白的相互作用调节了毛状体细胞壁的组成和对白粉病的易感性。

Interplay of EXO70 and MLO proteins modulates trichome cell wall composition and susceptibility to powdery mildew.

机构信息

Unit of Plant Molecular Cell Biology, Institute for Biology I, RWTH Aachen University, Worringerweg 1, 52056 Aachen, Germany.

Department of Experimental Plant Biology, Faculty of Science, Charles University, Viničná 5, 128 44 Prague, Czech Republic.

出版信息

Plant Cell. 2024 Mar 29;36(4):1007-1035. doi: 10.1093/plcell/koad319.

Abstract

Exocyst component of 70-kDa (EXO70) proteins are constituents of the exocyst complex implicated in vesicle tethering during exocytosis. MILDEW RESISTANCE LOCUS O (MLO) proteins are plant-specific calcium channels and some MLO isoforms enable fungal powdery mildew pathogenesis. We here detected an unexpected phenotypic overlap of Arabidopsis thaliana exo70H4 and mlo2 mlo6 mlo12 triple mutant plants regarding the biogenesis of leaf trichome secondary cell walls. Biochemical and Fourier transform infrared spectroscopic analyses corroborated deficiencies in the composition of trichome cell walls in these mutants. Transgenic lines expressing fluorophore-tagged EXO70H4 and MLO exhibited extensive colocalization of these proteins. Furthermore, mCherry-EXO70H4 mislocalized in trichomes of the mlo triple mutant and, vice versa, MLO6-GFP mislocalized in trichomes of the exo70H4 mutant. Expression of GFP-marked PMR4 callose synthase, a known cargo of EXO70H4-dependent exocytosis, revealed reduced cell wall delivery of GFP-PMR4 in trichomes of mlo triple mutant plants. In vivo protein-protein interaction assays in plant and yeast cells uncovered isoform-preferential interactions between EXO70.2 subfamily members and MLO proteins. Finally, exo70H4 and mlo6 mutants, when combined, showed synergistically enhanced resistance to powdery mildew attack. Taken together, our data point to an isoform-specific interplay of EXO70 and MLO proteins in the modulation of trichome cell wall biogenesis and powdery mildew susceptibility.

摘要

70-kDa(EXO70)蛋白的外泌体成分是外泌体复合物的组成部分,该复合物参与胞吐作用期间囊泡的锚定。MILDEW RESISTANCE LOCUS O(MLO)蛋白是植物特异性钙通道,一些 MLO 同工型使真菌白粉病发病。我们在这里检测到拟南芥 exo70H4 和 mlo2 mlo6 mlo12 三重突变体植物在叶毛状体次生细胞壁生物发生方面的表型重叠,这令人意外。生化和傅里叶变换红外光谱分析证实了这些突变体中毛状体细胞壁组成的缺陷。表达荧光标记 EXO70H4 和 MLO 的转基因系表现出这些蛋白的广泛共定位。此外,mCherry-EXO70H4 在 mlo 三重突变体的毛状体中发生错误定位,反之亦然,MLO6-GFP 在 exo70H4 突变体的毛状体中发生错误定位。GFP 标记的 PMR4 几丁质合酶的表达显示,在 mlo 三重突变体植物的毛状体中 GFP-PMR4 的细胞壁输送减少。在植物和酵母细胞中的体内蛋白-蛋白相互作用测定揭示了 EXO70.2 亚家族成员和 MLO 蛋白之间的同工型偏好相互作用。最后,exo70H4 和 mlo6 突变体组合时,对白粉病攻击表现出协同增强的抗性。总之,我们的数据表明 EXO70 和 MLO 蛋白在调节毛状体细胞壁生物发生和白粉病易感性方面存在同工型特异性相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3cc/10980356/2e78b6bfb3b1/koad319f1.jpg

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