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首页> 外文期刊>Nucleic Acids Research >Different gene-specific mechanisms determine the 'revised-response' memory transcription patterns of a subset of A-thaliana dehydration stress responding genes
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Different gene-specific mechanisms determine the 'revised-response' memory transcription patterns of a subset of A-thaliana dehydration stress responding genes

机译:不同的基因特异性机制决定了α-型脱水应激响应基因的子集的“修订响应”记忆转录模式

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摘要

Plants that have experienced several exposures to dehydration stress show increased resistance to future exposures by producing faster and/or stronger reactions, while many dehydration stress responding genes in Arabidopsis thaliana super-induce their transcription as a 'memory' from the previous encounter. A previously unknown, rather unusual, memory response pattern is displayed by a subset of the dehydration stress response genes. Despite robustly responding to a first stress, these genes return to their initial, pre-stressed, transcript levels during the watered recovery; surprisingly, they do not respond further to subsequent stresses of similar magnitude and duration. This transcriptional behavior defines the 'revised-response' memory genes. Here, we investigate the molecular mechanisms regulating this transcription memory behavior. Potential roles of abscisic acid (ABA), of transcription factors (TFs) from the ABA signaling pathways (ABF2/3/4 and MYC2), and of histone modifications (H3K4me3 and H3K27me3) as factors in the revised-response transcription memory patterns are elucidated. We identify the TF MYC2 as the critical component for the memory behavior of a specific subset of MYC2-dependent genes.C1 Avramova, Zoya; Univ Nebraska, Sch Biol Sci, 1901 Vine St, Lincoln, NE 68588 USASC Genetics & Heredity; Physiology
机译:经历了几种暴露于脱水应力的植物,通过产生更快和/或更强的反应来显示对未来曝光的抗性增加,而拟南芥的许多脱水应激响应基因超级诱导他们的转录作为从之前遭遇的“记忆”。先前未知,相当不寻常的存储器响应模式由脱水应力响应基因的子集显示。尽管强烈响应了第一次应力,但这些基因在浇水回收期间恢复到它们的初始,预应力的转录水平;令人惊讶的是,它们不会进一步回应随后的相似幅度和持续时间的压力。该转录行为定义了“修改响应”的内存基因。在这里,我们研究了调节该转录记忆行为的分子机制。来自ABA信令途径(ABF2 / 3/4和MYC2)的转录因子(TFS)和组蛋白修饰(H3K4ME3和H3K27ME3)作为修订后响应转录记忆模式中的因素的潜在作用犹豫了。我们将TF MyC2标识为Myc2依赖基因的特定子集的重要组成部分.C1 Avramova,Zoya; Univ Nebraska,Sch Biol Sci,1901年Vine St,林肯,NE 68588 USASC遗传学及遗传;生理

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  • 来源
    《Nucleic Acids Research》 |2014年第9期|共11页
  • 作者单位

    University of Nebraska School of Biological Sciences 1901 Vine Street Lincoln NE 68588 USA;

    School of Life Sciences University of Science &

    Technology of China 443 Huangshang Road Hefei Anhui 230027 China;

    University of Nebraska Center for Biotechnology and Center for Plant Science Innovation 1901 Vine Street Lincoln NE 68588 USA;

    University of Nebraska School of Biological Sciences 1901 Vine Street Lincoln NE 68588 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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