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本文引用的文献

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The physiology of circadian rhythms in plants.植物昼夜节律的生理学
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2
Alterations in Growth, Photosynthesis, and Respiration in a Starchless Mutant of Arabidopsis thaliana (L.) Deficient in Chloroplast Phosphoglucomutase Activity.叶绿体磷酸葡萄糖变位酶活性缺失的拟南芥淀粉缺陷突变体生长、光合作用和呼吸作用的改变。
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Diurnal changes in allocation of newly fixed carbon in exporting sugar beet leaves.甜菜叶片输出新固定碳分配的日变化
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4
Daylength and circadian effects on starch degradation and maltose metabolism.日照长度和昼夜节律对淀粉降解及麦芽糖代谢的影响。
Plant Physiol. 2005 Aug;138(4):2280-91. doi: 10.1104/pp.105.061903. Epub 2005 Jul 29.
5
Plant circadian clocks increase photosynthesis, growth, survival, and competitive advantage.植物生物钟可增强光合作用、促进生长、提高生存能力并赋予竞争优势。
Science. 2005 Jul 22;309(5734):630-3. doi: 10.1126/science.1115581.
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Extension of the visualization tool MapMan to allow statistical analysis of arrays, display of corresponding genes, and comparison with known responses.可视化工具MapMan的扩展,用于对阵列进行统计分析、显示相应基因并与已知反应进行比较。
Plant Physiol. 2005 Jul;138(3):1195-204. doi: 10.1104/pp.105.060459.
7
Autophagic recycling: lessons from yeast help define the process in plants.自噬循环利用:来自酵母的经验有助于界定植物中的这一过程。
Curr Opin Plant Biol. 2005 Apr;8(2):165-73. doi: 10.1016/j.pbi.2005.01.013.
8
Cullins 3a and 3b assemble with members of the broad complex/tramtrack/bric-a-brac (BTB) protein family to form essential ubiquitin-protein ligases (E3s) in Arabidopsis.在拟南芥中,Cullins 3a和3b与泛素连接酶复合体/Tramtrack/Bric-a-brac(BTB)蛋白家族成员组装,形成必需的泛素蛋白连接酶(E3)。
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9
Sugar sensing and signalling networks in plants.植物中的糖感知与信号传导网络
Biochem Soc Trans. 2005 Feb;33(Pt 1):269-71. doi: 10.1042/BST0330269.
10
Control of plant development and gene expression by sugar signaling.糖信号对植物发育和基因表达的调控
Curr Opin Plant Biol. 2005 Feb;8(1):93-102. doi: 10.1016/j.pbi.2004.11.003.

糖类与昼夜节律调控对拟南芥昼夜基因表达的全局调控起着重要作用。

Sugars and circadian regulation make major contributions to the global regulation of diurnal gene expression in Arabidopsis.

作者信息

Bläsing Oliver E, Gibon Yves, Günther Manuela, Höhne Melanie, Morcuende Rosa, Osuna Daniel, Thimm Oliver, Usadel Björn, Scheible Wolf-Rüdiger, Stitt Mark

机构信息

Max Planck Institute of Molecular Plant Physiology, Potsdam-Golm, Germany.

出版信息

Plant Cell. 2005 Dec;17(12):3257-81. doi: 10.1105/tpc.105.035261. Epub 2005 Nov 18.

DOI:10.1105/tpc.105.035261
PMID:16299223
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1315368/
Abstract

The diurnal cycle strongly influences many plant metabolic and physiological processes. Arabidopsis thaliana rosettes were harvested six times during 12-h-light/12-h-dark treatments to investigate changes in gene expression using ATH1 arrays. Diagnostic gene sets were identified from published or in-house expression profiles of the response to light, sugar, nitrogen, and water deficit in seedlings and 4 h of darkness or illumination at ambient or compensation point [CO(2)]. Many sugar-responsive genes showed large diurnal expression changes, whose timing matched that of the diurnal changes of sugars. A set of circadian-regulated genes also showed large diurnal changes in expression. Comparison of published results from a free-running cycle with the diurnal changes in Columbia-0 (Col-0) and the starchless phosphoglucomutase (pgm) mutant indicated that sugars modify the expression of up to half of the clock-regulated genes. Principle component analysis identified genes that make large contributions to diurnal changes and confirmed that sugar and circadian regulation are the major inputs in Col-0 but that sugars dominate the response in pgm. Most of the changes in pgm are triggered by low sugar levels during the night rather than high levels in the light, highlighting the importance of responses to low sugar in diurnal gene regulation. We identified a set of candidate regulatory genes that show robust responses to alterations in sugar levels and change markedly during the diurnal cycle.

摘要

昼夜循环强烈影响许多植物的代谢和生理过程。在12小时光照/12小时黑暗处理期间,对拟南芥莲座叶进行了六次收获,以使用ATH1芯片研究基因表达的变化。从已发表的或内部的幼苗对光、糖、氮和水分亏缺的反应以及在环境或补偿点[CO₂]下4小时黑暗或光照的表达谱中鉴定出诊断基因集。许多糖响应基因表现出较大的昼夜表达变化,其时间与糖的昼夜变化时间相匹配。一组昼夜节律调节基因也表现出较大的昼夜表达变化。将自由运行周期的已发表结果与哥伦比亚-0(Col-0)和无淀粉磷酸葡萄糖变位酶(pgm)突变体的昼夜变化进行比较表明,糖可改变多达一半的生物钟调节基因的表达。主成分分析确定了对昼夜变化有重大贡献的基因,并证实糖和昼夜节律调节是Col-0中的主要输入因素,但在pgm中糖起主导作用。pgm中的大多数变化是由夜间低糖水平而非白天的高糖水平触发的,这突出了对昼夜基因调节中低糖反应的重要性。我们鉴定出一组候选调节基因,它们对糖水平的变化表现出强烈反应,并在昼夜循环中显著变化。