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多寐相关 MADS-box 基因的特性、表达及功能分析。

Characterization, expression and function of DORMANCY ASSOCIATED MADS-BOX genes from leafy spurge.

机构信息

Biosciences Research Laboratory, USDA-ARS, Fargo, ND, USA.

出版信息

Plant Mol Biol. 2010 May;73(1-2):169-79. doi: 10.1007/s11103-009-9596-5. Epub 2010 Jan 13.

Abstract

DORMANCY ASSOCIATED MADS-BOX (DAM) genes are related to AGAMOUS-LIKE 24 and SHORT VEGETATIVE PHASE genes of arabidopsis and are differentially regulated coordinately with endodormancy induction and release in buds of several perennial plant species. DAM genes were first shown to directly impact endodormancy in peach where a deletion of a series of DAM resulted in loss of endodormancy induction. We have cloned and characterized several MADS box genes from the model perennial weed leafy spurge. Leafy spurge DAM genes are preferentially expressed in shoot tips and buds in response to cold temperatures and day length in a manner that is relative to the level of endodormancy induced by various environmental conditions. Over-expression of one DAM gene in arabidopsis delays flowering. Additionally, we show that at least one DAM gene is differentially regulated by chromatin remodeling. Comparisons of the DAM gene promoters between poplar and leafy spurge have identified several conserved sequences that may be important for their expression patterns in response to dormancy-inducing stimuli.

摘要

休眠相关 MADS 盒(DAM)基因与拟南芥的 AGAMOUS-LIKE 24 和短营养生长期基因有关,并且在几个多年生植物物种的芽中与内休眠的诱导和释放协同地进行差异调控。DAM 基因最初被证明直接影响桃的内休眠,其中一系列 DAM 的缺失导致内休眠诱导的丧失。我们已经从模式多年生杂草多叶豚草中克隆和表征了几个 MADS 盒基因。多叶豚草 DAM 基因在应对低温和长日照时,优先在茎尖和芽中表达,其方式与各种环境条件下诱导的内休眠水平有关。在拟南芥中过表达一个 DAM 基因会延迟开花。此外,我们还表明,至少一个 DAM 基因受染色质重塑的差异调控。杨树和多叶豚草之间的 DAM 基因启动子比较已经确定了几个保守序列,这些序列可能对它们对休眠诱导刺激的表达模式很重要。

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