首页> 外文期刊>Proteomics >Proteomic analysis of the maize rachis: potential roles of constitutive and induced proteins in resistance to Aspergillus flavus infection and aflatoxin accumulation.
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Proteomic analysis of the maize rachis: potential roles of constitutive and induced proteins in resistance to Aspergillus flavus infection and aflatoxin accumulation.

机译:玉米轴的蛋白质组学分析:组成型和诱导型蛋白在抗黄曲霉感染和黄曲霉毒素积累中的潜在作用。

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Infection of the maize (Zea mays L.) with aflatoxigenic fungus Aspergillus flavus and consequent contamination with carcinogenic aflatoxin is a persistent and serious agricultural problem causing disease and significant crop losses worldwide. The rachis (cob) is an important structure of maize ear that delivers essential nutrients to the developing kernels and A. flavus spreads through the rachis to infect kernels within the ear. Therefore, rachis plays an important role in fungal proliferation and subsequent kernel contamination. We used proteomic approaches and investigated the rachis tissue from aflatoxin accumulation resistant (Mp313E and Mp420) and susceptible (B73 and SC212m) maize inbred lines. First, we compared rachis proteins from resistant and susceptible inbred lines, which revealed that the young resistant rachis contains higher levels of abiotic stress-related proteins and proteins from phenylpropanoid metabolism, whereas susceptible young rachis contains pathogenesis-related proteins, which are generally inducible upon biotic stress. Second, we identified A. flavus-responsive proteins in rachis of both resistant and susceptible genotypes after 10- and 35-day infection. Differential expression of many stress/defense proteins during rachis juvenility, maturation and after A. flavus challenge demonstrates that resistant rachis relies on constitutive defenses, while susceptible rachis is more dependent on inducible defenses.
机译:黄曲霉毒素真菌黄曲霉感染玉米(Zea mays L.),致癌的黄曲霉毒素污染是一个持续存在的严重农业问题,在世界范围内引起疾病和大量农作物损失。玉米穗是玉米穗的重要结构,它为发育中的玉米粒提供必需的营养,而黄曲霉则通过玉米穗传播,从而感染穗内的玉米粒。因此,轴在真菌增殖和随后的籽粒污染中起重要作用。我们使用蛋白质组学方法,调查了抗黄曲霉毒素累积(Mp313E和Mp420)和易感玉米(B73和SC212m)玉米近交系的寄主组织。首先,我们比较了抗性和易感近交系的Rachis蛋白,这表明年轻的抗性Rachis含有较高水平的非生物胁迫相关蛋白和苯丙氨酸代谢的蛋白,而易感的年轻rachis含有致病性相关蛋白,通常在致病性相关生物应激。其次,我们在感染10天和35天后,在耐药和易感基因型的轮轴中鉴定了黄曲霉反应蛋白。在轮轴幼年,成熟和黄曲霉攻击后,许多应激/防御蛋白的差异表达表明抗性轮轴依赖于本构防御,而易感轴则更依赖于诱导防御。

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