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The Dent Stage of Maize Kernels Is the Most Conducive for Fumonisin Biosynthesis under Field Conditions ▿

机译:田间条件下玉米籽粒的凹入期最有利于伏马菌素的生物合成s

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摘要

The fungal pathogen Fusarium verticillioides infects maize ears and produces fumonisins, known for their adverse effects on human and animal health. Basic questions remain unanswered regarding the kernel stage(s) associated with fumonisin biosynthesis and the kernel components involved in fumonisin regulation during F. verticillioides-maize interaction under field conditions. In this 2-year field study, the time course of F. verticillioides growth and fumonisin accumulation in developing maize kernels, along with the variations in kernel pH and amylopectin content, were monitored using relevant and accurate analytical tools. In all experiments, the most significant increase in fumonisin accumulation or in fumonisin productivity (i.e., fumonisin production per unit of fungus) was shown to occur within a very short period of time, between 22/32 and 42 days after inoculation and corresponding to the dent stage. This stage was also characterized by acidification in the kernel pH and a maximum level of amylopectin content. Our data clearly support published results based on in vitro experiments suggesting that the physiological stages of the maize kernel play a major role in regulating fumonisin production. Here we have validated this result for in planta and field conditions, and we demonstrate that under such conditions the dent stage is the most conducive for fumonisin accumulation.
机译:真菌病原菌Fusarium v​​erticillioides感染玉米穗并产生伏马菌素,以其对人类和动物健康的不利影响而闻名。关于与伏马菌素生物合成相关的核心阶段以及在田间条件下网状镰刀菌-玉米相互作用期间涉及伏马毒素的调控的核心成分的基本问题仍未得到解答。在这项为期2年的田间研究中,使用相关且准确的分析工具监测了正在发育的玉米粒中F. verticillioides生长和伏马菌素积累的时间过程,以及籽粒pH和支链淀粉含量的变化。在所有实验中,伏马菌素积累或伏马菌素生产率(即每单位真菌的伏马菌素产量)的最显着增加显示在接种后的22/32至42天之间的极短时间内发生,与凹痕阶段。该阶段的特征还在于籽粒pH酸化和支链淀粉含量的最大水平。我们的数据清楚地支持了基于体外实验的公开结果,表明玉米籽粒的生理阶段在调节伏马毒素的生产中起着重要作用。在这里,我们已经在植物和田间条件下验证了该结果,并且我们证明了在这种条件下,凹痕阶段最有利于伏马菌素的积累。

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