首页> 外文期刊>Plant physiology >Three genes that affect sugar sensing (Abscisic Acid Insensitive 4, Abscisic Acid Insensitive 5, and Constitutive Triple Response 1) are differentially regulated by glucose in arabidopsis
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Three genes that affect sugar sensing (Abscisic Acid Insensitive 4, Abscisic Acid Insensitive 5, and Constitutive Triple Response 1) are differentially regulated by glucose in arabidopsis

机译:影响糖感应的三个基因(脱落酸不敏感4,脱落酸不敏感5和组成性三联反应1)在拟南芥中受葡萄糖的差异调节。

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Mutant characterization has demonstrated that ABI4 (Abscisic Acid [ABA] Insensitive 4), ABI5 (ABA Insensitive 5), and CTR1 (Constitutive Triple Response 1) genes play an important role in the sugar signaling response in plants. The present study shows that the transcripts of these three genes are modulated by glucose (Glc) independently of the developmental arrest caused by high Glc concentrations. ABI4 and ABI5 transcripts accumulate in response to sugars, whereas the CTR1 transcript is transiently reduced followed by a rapid recovery. The results of our kinetic studies on gene expression indicate that ABI4, ABI5, and CTR1 are regulated by multiple signals including Glc, osmotic stress, and ABA. However, the differential expression profiles caused by these treatments suggest that distinct signaling pathways are used for each signal. ABI4 and ABI5 response to the Glc analog 2-deoxy-Glc supports this conclusion. Glc regulation of ABI4 and CTR1 transcripts is dependent on the developmental stage. Finally, the Glc-mediated regulation of ABI4 and ABI5 is affected in mutants displaying Glc-insensitive phenotypes such as gins, abas, abi4, abi5, and ctr1 but not in abi1-1, abi2-1, and abi3-1, which do not show a Glc-insensitive phenotype. The capacity of transcription factors, like the ones analyzed in this work, to be regulated by a variety of signals might contribute to the ability of plants to respond in a flexible and integral way to continuous changes in the internal and external environment. [References: 64]
机译:突变特征表明,ABI4(脱落酸[ABA]不敏感4),ABI5(ABA不敏感5)和CTR1(组成型三重响应1)基因在植物的糖信号响应中起重要作用。本研究表明这三个基因的转录本受葡萄糖(Glc)的调节,与高Glc浓度引起的发育停滞无关。 ABI4和ABI5转录物会响应糖分而积累,而CTR1转录物会暂时减少,然后迅速恢复。我们对基因表达进行动力学研究的结果表明,ABI4,ABI5和CTR1受多种信号调节,包括Glc,渗透压和ABA。然而,由这些治疗引起的差异表达谱表明对于每个信号使用不同的信号传导途径。对Glc类似物2-deoxy-Glc的ABI4和ABI5响应支持这一结论。 ABI4和CTR1转录本的Glc调控取决于发育阶段。最后,Glc介导的对ABI4和ABI5的调控在显示Glc不敏感表型的突变体中受到影响,例如金酒,abas,abi4,abi5和ctr1,但在abi1-1,abi2-1和abi3-1中不受影响。不显示Glc不敏感表型。转录因子的能力(如本研究中分析的那样)受多种信号调节的能力,可能有助于植物以灵活而完整的方式对内部和外部环境的持续变化做出反应的能力。 [参考:64]

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