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首页> 外文期刊>OMICS: A journal of integrative biology >Dissecting Out the Crosstalk Between Salinity and Hormones in Roots of Arabidopsis
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Dissecting Out the Crosstalk Between Salinity and Hormones in Roots of Arabidopsis

机译:解剖和盐度之间的串扰激素在拟南芥的根

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Phytohormones are chemical messengers that play a leading role in regulating the vital activity of plants, including transcription, posttranscriptional pre-mRNA splicing, translation, and posttranslational modifications by interacting with specific protein receptors. Plant hormones are synthesized in one tissue and act on specific target sites in other tissues at vanishingly low concentrations. High salinity is one of the main factors limiting Arabidopsis growth and productivity. In this study, phytohormones including abscisic acid, auxin, ethylene, and cytokinin responsive genes regulating salinity stress in Arabidopsis roots were monitored using microarray data. We identified phytohormone responsive genes on the basis of their expression pattern at genomic level at various time points. Using publicly available microarray data, we analyzed the effect of salt stress on the transcription of phytohormone responsive genes. Gene ontology (GO) analysis of phytohormone responsive genes showed their role in important biological processes such as signal transduction, hormone metabolism, biosynthetic process, and gene expression. Gene enrichment terms also reveal that transcription regulator activity is the main class of ABA responsive genes under salinity stress. We conclude that expression of ABA responsive genes involves induction of several transcription factors under salt stress treatment in Arabidopsis roots.
机译:激素是扮演的化学信使主角在调节的重要活动植物,包括转录,转录后的pre-mRNA拼接,翻译,翻译后的修改通过与特定的蛋白质受体交互。在一个组织和植物激素合成作用于特定的目标网站在其他组织低浓度到可以忽略不计。限制拟南芥的一个主要因素经济增长和生产率。植物激素脱落酸、生长素、乙烯,细胞分裂素反应的基因调节盐度在拟南芥根压力使用微阵列数据监控。植物激素响应基因的识别在基因表达模式的基础在不同的时间点。可用的微阵列数据,我们分析了影响盐胁迫的转录植物激素敏感的基因。分析植物激素响应基因显示等重要的生物过程的作用信号转导、激素代谢、生物合成的过程,和基因表达。浓缩方面也显示,转录监管机构活动是阿坝的主类盐度胁迫响应基因。得出结论:ABA反应基因的表达涉及到几个转录的感应在盐胁迫处理下的因素拟南芥根。

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