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首页> 外文期刊>Eukaryotic cell >Defects in Mitochondrial and Peroxisomal β-Oxidation Influence Virulence in the Maize Pathogen Ustilago maydis
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Defects in Mitochondrial and Peroxisomal β-Oxidation Influence Virulence in the Maize Pathogen Ustilago maydis

机译:玉米病原体Ustilago maydis中线粒体和过氧化物酶体β-氧化缺陷影响毒力。

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An understanding of metabolic adaptation during the colonization of plants by phytopathogenic fungi is critical for developing strategies to protect crops. Lipids are abundant in plant tissues, and fungal phytopathogens in the phylum basidiomycota possess both peroxisomal and mitochondrial β-oxidation pathways to utilize this potential carbon source. Previously, we demonstrated a role for the peroxisomal β-oxidation enzyme Mfe2 in the filamentous growth, virulence, and sporulation of the maize pathogen Ustilago maydis. However, mfe2 mutants still caused disease symptoms, thus prompting a more detailed investigation of β-oxidation. We now demonstrate that a defect in the had1 gene encoding hydroxyacyl coenzyme A dehydrogenase for mitochondrial β-oxidation also influences virulence, although its paralog, had2, makes only a minor contribution. Additionally, we identified a gene encoding a polypeptide with similarity to the C terminus of Mfe2 and designated it Mfe2b; this gene makes a contribution to virulence only in the background of an mfe2Δ mutant. We also show that short-chain fatty acids induce cell death in U. maydis and that a block in β-oxidation leads to toxicity, likely because of the accumulation of toxic intermediates. Overall, this study reveals that β-oxidation has a complex influence on the formation of disease symptoms by U. maydis that includes potential metabolic contributions to proliferation in planta and an effect on virulence-related morphogenesis.
机译:了解植物致病真菌在植物定殖过程中的代谢适应性对于制定保护作物的策略至关重要。脂质在植物组织中丰富,基底担子菌门中的真菌性植物病原体同时具有过氧化物酶体和线粒体β-氧化途径来利用这种潜在的碳源。以前,我们证明了过氧化物酶体β-氧化酶Mfe2在玉米病原菌UStilago maydis的丝状生长,毒力和孢子形成中起作用。然而, mfe2 突变体仍然引起疾病症状,因此促使人们对β-氧化进行更详细的研究。我们现在证明,编码线粒体β-氧化的羟酰基辅酶A脱氢酶的 had1 基因中的缺陷也影响毒力,尽管其旁系同源物 had2 仅贡献很小。另外,我们鉴定了编码与Mfe2的C末端相似的多肽的基因,并将其命名为Mfe2b;该基因仅在 mfe2 Δ突变体的背景下对毒力做出贡献。我们还表明,短链脂肪酸可诱导U. maydis细胞死亡,β-氧化的阻断会导致毒性,这可能是由于毒性中间体的积累所致。总体而言,这项研究表明,β-氧化对玉米may的疾病症状形成具有复杂的影响,包括对植物中增殖的潜在代谢贡献以及对与毒力有关的形态发生的影响。

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