BIONANO-MSCA4U. Impact of Bio-AgNPs on tomato growth and gene expression under drought conditions
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This dataset includes transcriptome analysis data aimed at identifying differences in gene expression in tomato plants treated with biosynthesized AgNP from Pseudomonas N5.12 under drought stress conditions. Plants were treated with either bacterial filtrate (ML) or 60 ppm nanoparticles (NP60), and their gene expression profiles were compared to those of untreated control plants (Cont) under drought stress conditions. It was found that AgNPs may play a key role in stimulating the defense mechanisms of tomatoes, enhancing their drought tolerance and helping them maintain normal functioning under stress conditions. The data was collected as part of the MSCA4Ukraine project (ID: 101101923), which is funded by the European Union.
本数据集包含转录组分析数据,旨在探究干旱胁迫条件下,经假单胞菌Pseudomonas N5.12生物合成的银纳米颗粒(AgNP)处理后的番茄植株的基因表达差异。 实验中分别以细菌滤液(ML)、60 ppm浓度的纳米颗粒(NP60)处理番茄植株,并将干旱胁迫下各处理组的基因表达谱与未处理对照组(Cont)进行对比。 研究发现,银纳米颗粒(AgNP)或可通过激活番茄的防御机制,增强其耐旱性,帮助植株在胁迫环境下维持正常生理功能。 本数据集采集自欧盟资助的MSCA4Ukraine项目(项目编号:101101923)。



