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BASIDIN 作为一种新的蛋白效应子,作用于引起可可疫病的植物病原菌。

BASIDIN as a New Protein Effector of the Phytopathogen Causing Witche's Broom Disease in Cocoa.

机构信息

Centro de Biotecnologia e Genética, Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz, Rodovia Ilhéus-Itabuna, km 16, Ilhéus 45662-900, Bahia, Brazil.

Fisiologia Vegetal, Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz, Rodovia Ilhéus-Itabuna, km 16, Ilhéus 45662-900, Bahia, Brazil.

出版信息

Int J Mol Sci. 2023 Jul 20;24(14):11714. doi: 10.3390/ijms241411714.

Abstract

The fungus secretes protein effectors that manipulate the physiology of the host plant, but few effectors of this fungus have had their functions confirmed. We performed functional characterization of a promising candidate effector of . The inoculation of rBASIDIN at 4 µmol L in the mesophyll of leaflets of caused symptoms of shriveling within 6 h without the presence of necrosis. However, when sprayed on the plant at a concentration of 11 µmol L, it caused wilting symptoms only 2 h after application, followed by necrosis and cell death at 48 h. rBASIDIN applied to leaves at the same concentration caused milder symptoms. rBASIDIN caused hydrogen peroxide production in leaf tissue, damaging the leaf membrane and negatively affecting the photosynthetic rate of plants. Phylogenetic analysis indicated that BASIDIN has orthologs in other phytopathogenic basidiomycetes. Analysis of the transcripts revealed that BASIDIN and its orthologs are expressed in different fungal species, suggesting that this protein is differentially regulated in these basidiomycetes. Therefore, the results of applying BASIDIN allow the inference that it is an effector of the fungus , with a strong potential to interfere in the defense system of the host plant.

摘要

该真菌分泌的蛋白效应子可以操纵宿主植物的生理机能,但这种真菌的少数效应子的功能尚未得到证实。我们对一种有前途的 效应子候选物 rBASIDIN 进行了功能表征。在叶片小叶的叶肉中接种 4 μmol L 的 rBASIDIN 会在 6 小时内引起萎蔫症状,而不会出现坏死。然而,当以 11 μmol L 的浓度喷洒在植物上时,它会在施用后 2 小时引起萎蔫症状,随后在 48 小时时出现坏死和细胞死亡。在相同浓度下施加到 叶子上会引起更温和的症状。rBASIDIN 在叶片组织中引起过氧化氢的产生,破坏叶片膜并对 植物的光合速率产生负面影响。系统发育分析表明 BASIDIN 在其他植物病原担子菌中有直系同源物。转录本分析表明 BASIDIN 及其直系同源物在不同的真菌物种中表达,表明该蛋白在这些担子菌中受到不同的调控。因此,应用 BASIDIN 的结果推断它是该真菌的一种效应子,具有强烈干扰宿主植物防御系统的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bb6/10380501/63aaffbf6d9d/ijms-24-11714-g001.jpg

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