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Chlorogenic Acid and Maize Ear Rot Resistance: A Dynamic Study Investigating Fusarium graminearum Development, Deoxynivalenol Production, and Phenolic Acid Accumulation

机译:绿原酸和玉米耳腐蚀:一种动态研究调查镰刀菌肉类发育,脱氧酚产量和酚酸积累

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摘要

Fusarium graminearum is the causal agent of Gibberella ear rot and produces trichothecene mycotoxins. Basic questions remain unanswered regarding the kernel stages associated with trichothecene biosynthesis and the kernel metabolites potentially involved in the regulation of trichothecene production in planta. In a two-year field study, F. graminearum growth, trichothecene accumulation, and phenolic acid composition were monitored in developing maize kernels of a susceptible and a moderately resistant variety using quantitative polymerase chain reaction and liquid chromatography coupled with photodiode array or mass spectrometry detection. Infection started as early as the blister stage and proceeded slowly until the dough stage. Then, a peak of trichothecene accumulation occurred and infection progressed exponentially until the final harvest time. Both F. graminearum growth and trichothecene production were drastically reduced in the moderately resistant variety. We found that chlorogenic acid is more abundant in the moderately resistant variety, with levels spiking in the earliest kernel stages induced by Fusarium infection. This is the first report that precisely describes the kernel stage associated with the initiation of trichothecene production and provides in planta evidence that chlorogenic acid may play a role in maize resistance to Gibberella ear rot and trichothecene accumulation.
机译:Fusarium Graminearum是吉伯拉耳腐蚀的因果剂,并产生Trichothecene霉菌毒素。关于与Trichothecene生物合成相关的内核阶段的基本问题和可能参与植物中三胞内烯生产调节的核代谢物。在两年的田间研究中,使用定量聚合酶链式反应和与光电二极管阵列或质谱检测耦合的液相色谱法监测麦片核,在显影致敏和中度抗性多样化的玉米核中,在玉米核中进行麦克风生长,三胞内癸烯积累和酚醛酸组合物。感染早期开始作为泡罩阶段,并慢慢前进,直到面团阶段。然后,发生三胞内核积累的峰值并且感染呈指数级直到最终的收获时间。 F. Graminearum生长和三胞骨烯生产在适度抗性多样性上急剧下降。我们发现绿原酸在中度抗性繁殖中更丰富,具有镰刀菌感染诱导的最早核阶段的水平。这是第一份报告,精确描述与三硫脲产量引发相关的内核阶段,并在植物中提供的,即绿原酸可能在玉米抗性对吉伯拉耳鼻腐蚀和三胞胞核积累中发挥作用。

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