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首页> 外文期刊>Phytopathology >Lipoxygenase Activation in Peanut Seed Cultivars Resistant and Susceptible to Aspergillus parasiticus Colonization
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Lipoxygenase Activation in Peanut Seed Cultivars Resistant and Susceptible to Aspergillus parasiticus Colonization

机译:抗和易受寄生虫曲霉侵染的花生种子品种中的脂氧合酶激活

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摘要

Accumulative evidence indicates that the lipoxygenase (LOX) pathway plays a significant role in the Aspergillus-seed interaction, such as interfering with activities of endogenous fungal oxylipins or producing antimicrobial compounds and signaling molecules. In this study, we characterized the LOX pathway in peanut seed during Aspergillus parasiticus colonization in a model of two cultivars distinguished as resistant ('PI337394') and susceptible ('Florman INTA') to Aspergillus spp. infection and aflatoxin contamination. The LOX activity together with the content of LOX substrate and LOX products demonstrated the presence of a differential response mechanism to A. parasiticus infection between cultivars. Our findings suggest that this mechanism is under transcriptional control of previously identified (LOX 2 and LOX 3) and novel (LOX 4 and LOX 5) LOX genes. The results of this study support the role of these enzymes in defense during fungus infection in peanut seed.
机译:累积证据表明,脂氧合酶(LOX)途径在曲霉种子的相互作用中起着重要作用,例如干扰内源性真菌羟脂的活性或产生抗菌化合物和信号分子。在这项研究中,我们表征了花生种子中的LOX途径,在寄生曲霉定殖过程中,以两个对白曲霉具有抗性('PI337394')和易感('Florman INTA')的品种进行了模型鉴定。感染和黄曲霉毒素污染。 LOX活性以及LOX底物和LOX产物的含量证明了在品种之间存在对寄生虫曲霉感染的不同应答机制。我们的发现表明,该机制受先前鉴定的(LOX 2和LOX 3)和新型(LOX 4和LOX 5)LOX基因的转录控制。这项研究的结果支持了这些酶在花生种子真菌感染过程中的防御作用。

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