首页> 美国卫生研究院文献>Journal of Radiation Research >Gene expression profiles in promoted-growth rice seedlings that germinated from the seeds implanted by low-energy N+ beam
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Gene expression profiles in promoted-growth rice seedlings that germinated from the seeds implanted by low-energy N+ beam

机译:低能N +束注入种子萌发的促生水稻幼苗中的基因表达特征。

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摘要

The stimulation effect that some beneficial agronomic qualities have exhibited in present-generation plants have also been observed due to ion implantation on plants. However, there is relatively little knowledge regarding the molecular mechanism of the stimulation effects of ion-beam implantation. In order to extend our current knowledge about the functional genes related to this stimulation effect, we have reported a comprehensive microarray analysis of the transcriptome features of the promoted-growth rice seedlings germinating from seeds implanted by a low-energy N+ beam. The results showed that 351 up-regulated transcripts and 470 down-regulated transcripts, including signaling proteins, kinases, plant hormones, transposable elements, transcription factors, non-coding protein RNA (including miRNA), secondary metabolites, resistance proteins, peroxidase and chromatin modification, are all involved in the stimulating effects of ion-beam implantation. The divergences of the functional catalog between the vacuum and ion implantation suggest that ion implantation is the principle cause of the ion-beam implantation biological effects, and revealed the complex molecular networks required to adapt to ion-beam implantation stress in plants, including enhanced transposition of transposable elements, promoted ABA biosynthesis and changes in chromatin modification. Our data will extend the current understanding of the molecular mechanisms and gene regulation of stimulation effects. Further research on the candidates reported in this study should provide new insights into the molecular mechanisms of biological effects induced by ion-beam implantation.
机译:由于植物上的离子注入,还观察到了一些有益的农艺品质在当代植物中表现出的刺激作用。但是,关于离子束注入的刺激作用的分子机理的知识相对较少。为了扩展我们目前关于与这种刺激作用有关的功能基因的知识,我们已经报道了通过低能N + <植入的种子萌发的促生长水稻幼苗发芽的转录组特征的综合微阵列分析。 / sup>光束。结果表明,信号蛋白,激酶,植物激素,转座因子,转录因子,非编码蛋白RNA(包括miRNA),次级代谢产物,抗性蛋白,过氧化物酶和染色质包括351个上调的转录本和470个下调的转录本。修饰都参与离子束注入的刺激作用。真空和离子注入之间的功能目录差异表明,离子注入是离子束注入生物学效应的主要原因,并揭示了适应植物离子束注入胁迫(包括增强的转座)所需的复杂分子网络。转座因子的表达,促进ABA的生物合成和染色质修饰的变化。我们的数据将扩展对刺激作用的分子机制和基因调控的当前理解。对本研究报告的候选药物的进一步研究应提供对离子束植入诱导的生物效应的分子机制的新见解。

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