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首页> 外文期刊>BMC Plant Biology >Production of reactive oxygen species and wound-induced resistance in Arabidopsis thaliana against Botrytis cinerea are preceded and depend on a burst of calcium
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Production of reactive oxygen species and wound-induced resistance in Arabidopsis thaliana against Botrytis cinerea are preceded and depend on a burst of calcium

机译:拟南芥中活性氧的产生和伤口诱导的对灰葡萄孢的抗性是先发的,并取决于钙的爆发

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Background Wounded leaves of Arabidopsis thaliana produce reactive oxygen species (ROS) within minutes after wounding and become resistant to the pathogenic fungus Botrytis cinerea at a local level. This fast response of the plants to the wound is called wound-induced resistance (WIR). However the molecular mechanisms of this response and the signal cascade between the wound and ROS production are still largely unknown. Calcium is a conserved signal and it is involved in many abiotic stress responses in plants, furthermore, calcium pathways act very fast. Results The results of this study show that leaves treated with calcium channels inhibitors (verapamil) or calcium chelators (oxalate and EGTA) are impaired in ROS production. Moreover, leaves treated with verapamil, EGTA or oxalate were more susceptible to B. cinerea after wounding. The intracellular measurements of calcium changes indicated quick but transient calcium dynamics taking place few seconds after wounding in cells neighbouring the wound site. This change in the cytosolic calcium was followed in the same region by a more stable ROS burst. Conclusions These data further extend our knowledge on the connection between wounding, calcium influx and ROS production. Moreover they provide for the first time the evidence that, following wounding, calcium changes precede a burst in ROS in the same location.
机译:背景拟南芥受伤的伤口在受伤后数分钟内产生活性氧(ROS),并在局部水平上对病原性真菌灰葡萄孢产生抗性。植物对伤口的这种快速反应称为伤口诱导抗性(WIR)。但是,这种反应的分子机制以及伤口和ROS产生之间的信号级联仍然非常未知。钙是一种保守的信号,它参与植物中许多非生物胁迫的反应,此外,钙途径的作用非常快。结果这项研究的结果表明,用钙通道抑制剂(维拉帕米)或钙螯合剂(草酸盐和EGTA)处理过的叶片的ROS产生受到损害。而且,用维拉帕米,EGTA或草酸盐处理过的叶子在受伤后更容易受到灰葡萄芽孢杆菌的侵害。钙变化的细胞内测量表明,在伤口部位附近的细胞受伤后数秒内发生了快速但短暂的钙动力学。在相同区域中,胞质钙的这种变化之后是更稳定的ROS爆发。结论这些数据进一步扩展了我们对伤口,钙内流与ROS产生之间联系的认识。而且,它们首次提供了证据,证明受伤后钙的变化先于同一位置的ROS爆发。

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