Centro de Biotecnología y Genómica de Plantas (UPM-INIA), Universidad Politécnica de Madrid- Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), 28223. Pozuelo de Alarcón (Madrid), Spain.
Paul Scherrer Institute, Swiss Light Source, microXAS Beamline Project, CH-5232 Villigen, Switzerland.
J Exp Bot. 2022 Jan 5;73(1):339-350. doi: 10.1093/jxb/erab400.
Zinc is an essential nutrient at low concentrations, but toxic at slightly higher ones. It has been proposed that hyperaccumulator plants may use the excess zinc to fend off pathogens and herbivores. However, there is little evidence of a similar response in other plants. Here we show that Arabidopsis thaliana leaves inoculated with the necrotrophic fungus Plectosphaerella cucumerina BMM (PcBMM) accumulate zinc and manganese at the infection site. Zinc accumulation did not occur in a double mutant in the zinc transporters HEAVY METAL ATPASE2 and HEAVY METAL ATPASE4 (HMA2 and HMA4), which has reduced zinc translocation from roots to shoots. Consistent with a role in plant immunity, expression of HMA2 and HMA4 was up-regulated upon PcBMM inoculation, and hma2hma4 mutants were more susceptible to PcBMM infection. This phenotype was rescued upon zinc supplementation. The increased susceptibility to PcBMM infection was not due to the diminished expression of genes involved in the salicylic acid, ethylene, or jasmonate pathways since they were constitutively up-regulated in hma2hma4 plants. Our data indicate a role of zinc in resistance to PcBMM in plants containing ordinary levels of zinc. This layer of immunity runs in parallel to the already characterized defence pathways, and its removal has a direct effect on resistance to pathogens.
锌在低浓度下是一种必需的营养物质,但在稍高浓度下则具有毒性。有人提出,超积累植物可能会利用多余的锌来抵御病原体和食草动物。然而,其他植物中几乎没有类似反应的证据。在这里,我们表明拟南芥叶片在接种坏死真菌 Plectosphaerella cucumerina BMM(PcBMM)后会在感染部位积累锌和锰。在锌转运蛋白 HEAVY METAL ATPASE2 和 HEAVY METAL ATPASE4(HMA2 和 HMA4)的双突变体中,锌的积累并没有发生,因为这减少了锌从根部向地上部的转运。与植物免疫的作用一致,PcBMM 接种后 HMA2 和 HMA4 的表达上调,而 hma2hma4 突变体对 PcBMM 的感染更为敏感。锌的补充挽救了这种表型。PcBMM 感染增加的敏感性并不是由于参与水杨酸、乙烯或茉莉酸途径的基因表达减少所致,因为它们在 hma2hma4 植物中持续上调。我们的数据表明,在含有普通锌水平的植物中,锌在抵抗 PcBMM 方面起着作用。这种免疫层与已经表征的防御途径平行运行,其去除对病原体的抗性有直接影响。