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首页> 外文期刊>Physiologia plantarum >Quantitative ROS bioreporters: A robust toolkit for studying biological roles of ROS in response to abiotic and biotic stresses
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Quantitative ROS bioreporters: A robust toolkit for studying biological roles of ROS in response to abiotic and biotic stresses

机译:定量ROS BIOREPORTERS:一种用于研究ROS响应非生物和生物应激的生物学作用的强大工具包

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摘要

While the accumulation of reactive oxygen species (ROS) through spontaneous generation or as the by-products of aerobic metabolism can be toxic to plants, recent findings demonstrate that ROS act as signaling molecules that play a critical role in adapting to various stress conditions. Tight regulation of ROS homeostasis is required to adapt to stress and survive, yet in vivo spatiotemporal information of ROS dynamics are still largely undefined. In order to understand the dynamics of ROS changes and their biological function in adapting to stresses, two quantitative ROS transcription-based bioreporters were developed. These reporters use ROS-responsive promoters from RBOHD or ZAT12 to drive green fluorescent protein (GFP) expression. The resulting GFP expression is compared to a constitutively expressed mCherry that is contained on the same cassette with the ROS-responsive promoter: This allows for the generation of ratiometric images comparing ROS changes (GFP) to the constitutively expressed mCherry. Both reporters were used to assess ROS levels to oxidative stress, salt stress, and the pathogen defense elicitor flg22. These bioreporters showed increases in the ratio values of GFP to mCherry signals between 10 and 30min poststress application. Such stress-associated ROS signals correlated with the induction of abiotic/biotic stress responsive markers such as RbohD, ZAT12, SOS2 and PR5 suggesting these ROS bioreporters provide a robust indicator of increased ROS related to stress responses. Based upon the spatiotemporal response patterns of signal increase, ZAT12 promoter-dependent ROS (Zat12p-ROS) bioreporter appears to be suitable for cellular mapping of ROS changes in response to abiotic and biotic stresses.
机译:虽然通过自发产生或随着有氧代谢的副产物积累反应性氧物质(ROS)可能对植物有毒,但最近的发现表明ROS充当发挥着关键作用的信号分子在适应各种压力条件下起到关键作用。 ROS稳态的紧张规定需要适应压力和生存,但在Vivo时尚信息仍然很大程度上是未定义的。为了了解ROS变化的动态及其在适应应力方面的生物学功能,开发了两种数量的基于ROS转录的生物投手。这些记者使用来自RBOHD或Zat12的ROS响应促进剂来驱动绿色荧光蛋白(GFP)表达。将得到的GFP表达与包含在与ROS响应促进剂相同的盒上的组成型表达的蛋白质进行比较:这允许将ROS变化(GFP)与组成表达的MCHERRY进行比较的比较。两个记者都用于评估ROS水平以氧化应激,盐胁迫和病原体防御Elicitor FLG22。这些生物投手显示GFP与MCHERRY信号的比率值增加10到30min后施用。这种应力相关的ROS信号与非生物/生物应激响应性标记的诱导相关,例如RBOHD,ZAT12,SOS2和PR5,表明这些ROS BIOREPORERS提供了一种与应力反应相关的RO的稳健指标。基于信号增加的时空反应模式,Zat12启动子依赖性ROS(ZAT12P-ROS)生物供电者似乎适用于ROS对非生物和生物应力的响应响应变化的细胞映射。

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